Ports and Waterways: Navigating the changing world

Authors

Mark van Koningsveld, Delft University of Technology, Faculty of Civil Engineering and Geosciences | Royal Van Oord; Henk Verheij, Delft University of Technology, Faculty of Civil Engineering and Geosciences; Poonam Taneja, Delft University of Technology, Faculty of Civil Engineering and Geosciences; Huib de Vriend, Delft University of Technology, Faculty of Civil Engineering and Geosciences
Keywords: system performance, waterborne supply chains, port development, port planning, container terminals, waterway transport

Synopsis

Before you lies the book ‘Ports and Waterways - Navigating the changing world’, written by the Ports and Waterways team, part of the Civil Engineering and Geosciences faculty at Delft University of Technology. It integrates the content of a number of separate lecture notes we used in our teaching activities and updates this information where relevant. The integration reflects our vision that ports and waterways should be viewed as parts of a coherent system that supports waterborne supply chains, and that their integral design and operation is essential.

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Author Biographies

Mark van Koningsveld, Delft University of Technology, Faculty of Civil Engineering and Geosciences | Royal Van Oord

Mark van Koningsveld is professor Ports and Waterways at TU Delft, Faculty of Civil Engineering and Geosciences. He is furthermore affiliated with Royal Van Oord as Manager Innovation in the Engineering and Estimating Department. He specialises in science based decision making and has strong affinity with data science and sustainability.

Henk Verheij, Delft University of Technology, Faculty of Civil Engineering and Geosciences

Henk Verheij has 15 years of experience as senior lecturer Ports and Waterways at TU Delft, Faculty of Civil Engineering and Geosciences. He specialises in the interaction between vessels and vessel-induced water motions and their impact on hydraulic structures. He gained his expertise in the field of Inland Waterways during his more than 35 years affiliation as senior researcher with Deltares.

Poonam Taneja, Delft University of Technology, Faculty of Civil Engineering and Geosciences

Poonam Taneja has been a lecturer Ports and Waterways at TU Delft, Faculty of Civil Engineering and Geosciences for several years. She furthermore teaches at IHE Delft, Institute for Water Education and the foundation for post academic education PAO. She holds a PhD in flexible port planning and adaptive design.

Huib de Vriend, Delft University of Technology, Faculty of Civil Engineering and Geosciences

Huib de Vriend is emeritus professor River Engineering at Delft University of Technology. He developed an extensive trackrecord in academic research and innovation, also as scientific director of Delft Hydraulics and Deltares. In his role as director of the EcoShape foundation, he worked at the forefront of the Building with Nature innovation program, promoting a sustainable approach to hydraulic infrastructure development.

References

Bibliography

Abrahamse, N. 2021. Hydrogen Import Supply Chains: A study on the influence of various supply chain configurations

on the cost price of hydrogen for different hydrogen carriers, considering the entire supply chain from export

terminal to end-user. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports andWaterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

a9a474-bed3-42ea-84f1-70423b627d9e. 397, 414

Akyar, D. A. 2018. The Effects of Global Economic Growth on Dry Bulk Shipping Markets and Freight Rates.

Master’s thesis, Dokuz Eylul University, Maritime Faculty, Department of Maritime Business Administration.

Izmir, Turkey. 366, 496

Albertson, M. L., Y. B. Dai, R. A. Jensen and H. Rouse. 1950. Diffusion of submerged jets. Transactions of the

American Society of Civil Engineers 115, pp. 639–664. 321, 322

Almansoori, A. and N. Shah. 2006. Design and operation of a future hydrogen supply chain: snapshot model.

Chemical Engineering Research and Design 84(6), pp. 423–438. https://doi.org/10.1205/cherd.05193. 411

APM-Terminals. 2012. The netherlands: Apm terminals presents innovative

terminal design. URL https://www.dredgingtoday.com/2012/03/19/

the-netherlands-apm-terminals-presents-innovative-terminal-design/. 156

Balanin, V. V. and L. S. Bykov. 1965. Selection of leading dimensions of navigation canal sections and modern

methods of bank protection. In: Proc. XXIth International Navigation Congress PIANC, Stockholm, Section I

Subject 4. 310

Baldasso, E., M. Elg, F. Haglind and F. Baldi. 2019. Comparative analysis of linear and non-linear programming

techniques for the optimization of ship-machinery systems. Journal of Marine Science and Engineering 7(11),

pp. 403–421. https://doi.org/10.3390/jmse7110403. 443, 497

Barber, H. F. 1992. Developing Strategic Leadership: The US Army War College Experience. Journal of Management

Development 11(6), pp. 4–12. https://doi.org/10.1108/02621719210018208. 50

Bartosek, A. and O. Marek. 2013. Quay cranes in container terminals. Transaction on Transport Sciences 6(1),

pp. 9–18. https://doi.org/10.2478/v10158-012-0027-y. 128, 493

BAW. 2011. Principles for the design of bank and bottom protection for inland waterways. Tech. Rep., Bundesanstalt

f¨ur Wasserbau, Karlsruhe. 302

Becker, J., E. Van Eekelen, J. Van Wiechen, W. De Lange, T. Damsma, T. Smolders and M. Van Koningsveld.

Estimating source terms for far field dredge plume modelling. Journal of Environmental Management

(C), pp. 282–293. https://doi.org/10.1016/j.jenvman.2014.10.022. 46

Bertram, V. and H. Schneekluth. 1998. Ship design for efficiency and economy (2nd edition). Butterworth-

Heinemann. URL https://www.elsevier.com/books/ship-design-for-efficiency-and-economy/

bertram/978-0-7506-4133-3. 438

Blaauw, H. G. and E. J. Van de Kaa. 1978. Erosion of bottom and sloping banks caused by the screw

race of manoeuvring ships. In: Publ. no. 202, Delft Hydraulics Laboratory, The Netherlands. URL http:

//publications.deltares.nl/Pub202.pdf. 321, 322

Bloemen, H. J. Th., W. Uiterwijk, E. M. Van Putten and J. H. Verboom. 2006. Local influence of shipping emissions

– LISE. Tech. Rep., RIVM report 680280001/2006. URL https://www.rivm.nl/bibliotheek/rapporten/

pdf. 48

Ports and Waterways

Blokland, T. 1997. Bodembeschermingen belast door schroefstralen; huidige ontwerpmethodiek. Tech. Rep.,

Gemeentewerken Rotterdam, Ingenieursbureau Havenwerken. Rapport 61.00-R94.038. 323

Bolt, E. 2003. Schatting energieverbruik binnenvaartschepen. Tech. Rep., Rijkswaterstaat, Adviesdienst Verkeer

en Vervoer, Rotterdam. 310, 436

B¨ose, J. W. 2011. Handbook of Terminal Planning. Springer. 137, 146, 493

Bouwmeester, J. 1977. Calculation return flow and water level depressions; new method. In: XXIVth International

Navigation Congress, Leningrad 1977, vol. SI-3, pp. 148–151. 302

Bouwmeester, J., E. J. Van der Kaa, H. A. Nuhoff and R. G. J. Van Orden. 1977. Recent studies on pushtowing

as a base for dimensioning waterways. Tech. Rep., Delft Hydraulics Laboratory, Publ. no. 194. URL

http://publications.deltares.nl/Pub194.pdf. 311, 312, 496

Brolsma, J. U. 1988. Six-barge pushtow trials. Tech. Rep., PIANC Bulletin. 329

Brolsma, J. U., N. Koedam and M. Fouraschen. 2008. Richtlijnen Scheepvaarttekens (RST 2008). Tech. Rep.,

Ministerie van Verkeer en Waterstaat, Rijkswaterstaat, Dienst Verkeer en Scheepvaart (RWS, DVS), Delft, the

Netherlands, Report: RWS, DVS12-2008. 349, 350, 351, 496

Brynolf, S., M. Taljegard, M. Grahn and J. Hansson. 2018. Electrofuels for the transportsector: A review of

production costs. Renewable and Sustainable Energy Reviews 81, pp. 1887–1905. https://doi.org/10.1016/

j.rser.2017.05.288. 412

Buck Consultants International. 2008. Een goede toekomst voor het kleine schip - visie en actieplan. Tech. Rep.,

Buck Consultants International. 215

Bureau Voorlichting Binnenvaart. 2006. The Power of Inland Navigation, The social relevance of freight transport

and inland shipping 2004-2005. Tech. Rep., Bureau Voorlichting Binnenvaart (BVB). 210, 216, 494

Bureau Voorlichting Binnenvaart. 2017. Waardevol Transport. De toekomst van het goederenvervoer en de binnenvaart

in Europa: 2016-2017. Tech. Rep., Bureau Voorlichting Binnenvaart (BVB). 211

Bureau Voorlichting Binnenvaart. 2020. Feiten mts vorstenbosch. URL https://www.

bureauvoorlichtingbinnenvaart.nl/downloads/binnenvaart-posters/vorstenbosch. 215

CBS. 2021a. Binnenvaart emissies. URL https://www.cbs.nl/nl-nl/cijfers/detail/37221?q=

binnenvaartemissions. 436

CBS. 2021b. Hoeveel broeikasgas stoot de stransport sector uit. URL https://www.cbs.nl/nl-nl/dossier/

dossier-broeikasgassen/hoofdcategorieen/hoeveel-broeikasgas-stoot-de-transportsector-uit-.

CCR. 2002. Schepen van de toekomst. Eindrapport aan de Centrale Commissie voor de Rijnvaart. Tech. Rep.,

Centrale Commissie voor de Rijnvaart/werkgroep schepen van de toekomst. 214

CEMT. 1992. New Classification of Inland Waterways. CEMT/CM(92)6/Final, European Conference of Ministers

of Transport ECMT, Paris. 10

Charlier, R. H. 2013. Life cycle of ports. International Journal of Environmental Studies 70(4), pp. 594–602.

https://doi.org//10.1080/00207233.2013.823049. 60, 492

CIRIA; CUR; CETMEF. 2007. The Rock Manual. The use of rock in hydraulic engineering (2nd edition). C683,

CIRIA, London. URL https://www.kennisbank-waterbouw.nl/DesignCodes/rockmanual/. 79, 302, 312,

, 330

Cywi´nski, Z. and J. Grabe. 2005. Recommendations of the Committee for Waterfront Structures - Harbours and

Waterways (EAU 2004). Tech. Rep. 8th revised edition, ISBN 978-3-433-01666-4. 189

d’ Angremond, K. and F. Van Roode. 2004. Breakwater and Closure dams. CRC Press. 100

BIBLIOGRAPHY

De Jong, A. K. W. 2020. Assessing maintained bed levels in ports. Considering vessel characteristics, local conditions

and admission policy, to quantify accessibility percentages as a function of the maintained bed level in

a port-network: applied to a Port of Rotterdam case study. Master’s thesis, Delft University of Technology,

Civil Engineering and Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the Netherlands. URL

http://resolver.tudelft.nl/uuid:679c7f05-162c-478a-9e6a-0c0ab4da8b21. 76, 256

De Jong, M. P. C. and J. A. Battjes. 2004. Analysis and prediction of seiches in rotterdam harbour basins. In: J.

McKee Smith (ed.): Proc. 29th Int. Conf. Coastal Engineering, ASCE, New York, pp. 1238–1250. 83

De Vos, P. and R. Van Gils. 2011. Walstroom versus generatorstroom. Tech. Rep., Delft University of Technology.

De Vriend, H. J. and M. Van Koningsveld. 2012. Building with Nature: Thinking, acting and interacting differently.

EcoShape, Building with Nature, Dordrecht, the Netherlands. 61

De Vriend, H. J., M. Van Koningsveld, S. G. J. Aarninkhof, M. B. De Vries and M. J. Baptist. 2015. Sustainable

hydraulic engineering through Building with Nature. Journal of Hydro-environment Research 9(2), pp. 159–171.

https://doi.org/10.1016/j.jher.2014.06.004. 61

De Vries, M. B., M. Van Koningsveld, S. G. J. Aarninkhof and H. J. De Vriend. 2021a. Objectifying building

with nature strategies: Towards scale-resolving policies. Research in Urbanism Series 7, pp. 51–72. https:

//doi.org/10.47982/rius.7.128. 360

De Vries, M. B., M. Van Koningsveld, S. G. J. Aarninkhof and H. J. De Vriend. 2021b. A systematic design

approach for objectifying building with nature solutions. Research in Urbanism Series 7, pp. 29–50. https:

//doi.org/10.47982/rius.7.124. 360

Delft Hydraulics. 1953. Verschijnselen bij de vaart van een of twee schepen in een kanaal. Tech. Rep., Waterloopkundig

Laboratorium, Delft, the Netherlands. Report: M415. 308

Delft Hydraulics. 1984. Aantasting van dwarsprofielen in vaarwegen; prototypemetingen in het Hartelkanaal naar

de aantasting van oeververdedigingen door duweenheden. Tech. Rep., Waterloopkundig Laboratorium, Delft, the

Netherlands. Report: M1115 deel XI. 312

Delft Hydraulics. 1985. Aantasting van dwarsprofielen in vaarwegen; voorspelling van waterspiegeldaling, inzinking

en vertrimming bij schepen op beperkt water. Tech. Rep., Waterloopkundig Laboratorium, Delft, the Netherlands.

Report: M1115 deel Va. 312

Delft Hydraulics. 1988. Aantasting van dwarsprofielen in vaarwegen; technische aanbevelingen voor oeververdedigingen

van losgestorte en gezette steen. Tech. Rep., Waterloopkundig Laboratorium, Delft, the Netherlands.

Report: M1115 deel XIX. 302, 312, 326

Delft Hydraulics. 1994. Toelaatbaarheid snelle passagiersschepen op Nederlandse binnenwateren. Tech. Rep., Waterloopkundig

Laboratorium, Delft, the Netherlands. Report: Q1947. 319

Delft Hydraulics. 1998. Snelle schepen in relatie tot overage vaarweggebruikers. Tech. Rep., WL—Delft Hydraulics,

Delft, the Netherlands. Report: Q2387. 319

Deltares. 2012. Haalgolf Maeslantkering. Tech. Rep., Rep. nr. 1206911, Deltares, Delft, The Netherlands. 345, 496

Den Uijl, J. 2018. Integrating engineering knowledge in logistical optimisation: development of a concept evaluation

tool. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports and Waterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

d82b44c-59e3-4307-a0af-03a20f1a931e. 396

Doorn, N., J. Groeneweg, O. Weiler and M. Borsboom. 2002. Numerical modelling of ship-induced wave propagation.

In: J. McKee Smith (ed.): Coastal Engineering 2002, pp. 689–701. 316

Dorst, K., D. J. Meys, M. Schroevers and H. J. Verheij. 2016. Prototype measurements of erosion and currents

under the keel of a sailing ship in a canal. In: Proceedings ICSE Conference, London. 328

Ports and Waterways

Drewry. 2010. Global Container Terminal Operators. Annual Review and Forecast 2010. Tech. Rep., Drewry. 367

Ecorys. 2011. Effecten hoogwaterbeschermingsmaatregelen op scheepvaart en havens Rijnmond-Drechtsteden –

Voorstel voor plan van aanpak. Tech. Rep., Ecorys, Rotterdam, The Netherlands. 421

Erlang, A. K. 1909. The theory of probabilities and telephone conversations. Nyt Tidsskrift for Matematik B,

Vol. 20, p. 33. 374

European Commission. 2021. Paris agreement. URL https://ec.europa.eu/clima/policies/international/

negotiations/paris_en. 435

Fan, Q., H. Zhu and J. Geng. 2015. Monitoring result analyses of high slope of five-step ship lock in the Three

Gorges Project. Journal of Rock Mechanics and Geotechnical Engineering 7, pp. 199–206. https://doi.org/

1016/j.jrmge.2015.02.007. 17, 492

Gasunie. 2018. Survey 2050, discussion paper. , pp. 1–30. 412

Geerlings, H., B. Kuipers and R. Zuidwijk. 2018. Ports and Networks: Strategies, Operations and Perspectives.

Routledge, Taylor & Francis Group, Londen and New York. 65, 67

Glerum, A. and A. Vrijburcht. 2000. Design of locks 1. Tech. Rep., Rijkswaterstaat. URL http://resolver.

tudelft.nl/uuid:afda7af7-ab32-4131-bf05-faa715fca55a. 427, 429, 497

Govender, T., M. Brooks and C. Bemont. 2017. The effect of multi-trailer systems on the efficiency of container

movements between the ship and the stacks at the durban container terminal. South African Journal of Industrial

Engineering 28(4). https://doi.org/10.7166/28-4-1771. 130, 493

Graewe, H. 1967. Der Zweckm¨assige Querschnitt von Binnenschiffartskan¨alen der Wasserstrassenklasse. Ph.D.

thesis, TH Aken, Aken, Germany. 342

Green Deal. 2019. Green deal zeevaart, binnenvaart en havens. URL https://www.greendeals.nl/green-deals/

green-deal-zeevaart-binnenvaart-en-havens. 435, 450

Groen, P. R. 2020. A method for studying the effects of infrastructure maintenance on inland waterways

transport systems. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports andWaterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

fd1988-c626-47d6-8351-94b4af6b6917. 395

Groenveld, R. 2001. Service systems in ports and inland waterways. Tech. Rep., Delft University of Technology,

Lecture notes CIE4330/CIE5306. 109, 365

Groenveld, R., H. J. Verheij and C. Stolker. 2006. Capacities of Inland Waterways. Tech. Rep., Delft University

of Technology, Lecture notes CIE5306. 271, 301

Haarsma, R. J., W. Hazeleger, C. Severijns, H. De Vries, A. Sterl, R. Bintanja, G. J. Van Oldenborg and H. W.

Van den Brink. 2013. More hurricanes to hit western europe due to global warming. Geophysical Research

Letters 40(9), pp. 1783–1788. https://doi.org/10.1002/grl.50360. 32

Hader, A. 2018. The river cruise fleet: handbook 2017/2018. Hader Arnulf. 215, 494

Hawkswood, M., G. Evans and G. Hawkswood. 2013. Berth scour protection for fast ferry jets. In: ICE Coasts,

Marine Structures and Breakwaters, Edinburgh. URL https://www-icevirtuallibrary-com.tudelft.idm.

oclc.org/doi/pdf/10.1680/fsts.59757.028. 346, 496

Hekkenberg, R. G. 2012. Inland ships for efficient transport chains. Ph.D. thesis, Delft University of Technology,

Delft, The Netherlands. 436, 439

Hensen, H. 2003. Tug use in port: a practical guide (2nd Edition). The Nautical Institute. 91

Herrera Dappe, M. and A. Su´arez-Alem´an. 2016. Competitiveness of South Asia’s Container Ports: A Comprehensive

Assessment of Performance, Drivers and Costs. Tech. Rep., International Bank for Reconstruction and

Development / The World Bank. 66, 492

BIBLIOGRAPHY

Holthuijsen, L. H. 2010. Waves in oceanic and coastal waters. Cambridge university press. 83

Holtrop, J. and G. G. J. Mennen. 1982. An approximate power prediction method. International Shipbuilding

Progress 29(335), pp. 166–170. 437, 438, 439, 440, 441

Hulskotte, J. H. J. and E. Bolt. 2012. EMS-protocol Emissies door binnenvaart: verbrandingsmotoren, Version 4,

December. Tech. Rep., Taakgroep Verkeer en Vervoer. 447

IALA. 2018. NAVGUIDE 2018 Marine Aids to Navigation Manual.8th ed.Saint Germain en Laye, France:IALA.

Tech. Rep. 347

Ijzermans, W. 2019. Terminal design optimization. Adaptive agribulk terminal planning in light of an uncertain

future. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports and Waterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

ad9be30-7d0a-4ece-a7dc-eb861ae5df24. 396

IMO. 2018. Revised guidelines for Formal Safety Assessment (FSA) for use in the IMO rule-making process. Tech.

Rep., International Maritime Organisation. 269, 495

IPCC. 2007. Climate Change 2007: Synthesis Report. Contribution of Working Groups I, II and III to the Fourth

Assessment Report of the Intergovernmental Panel on Climate Change. IPCC, Geneva, Switzerland. 31

IPCC. 2014. Climate Change 2014: Synthesis Report. Contribution of Working Groups I, II and III to the Fifth

Assessment Report of the Intergovernmental Panel on Climate Change. IPCC, Geneva, Switzerland. 31

IPCC. 2021. Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth

Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press. URL

https://www.ipcc.ch/report/ar6/wg1/. 462

ISSMGE. 2005. Geotechnical and geophysical investigations for offshore and nearshore developments. Tech.

Rep., Report of Technical Committee 1. URL https://www.kivi.nl/uploads/media/58a3570951450/

Investigationsfordevelopments.pdf. 85

ITTC. 1957. Skin friction and turbulence stimulation. In: 8th International Towing Tank Conference, Madrid,

Spain. 438

ITTC. 2002. ITTC - Recommended Procedures. Resistance Uncertainty Analysis, Example for Resistance Test.

Tech. Rep., ITTC. 7.5-02-02-02, Rev. 01. 438

Jansen, P. Ph., L. Van Bendegom, J. Van den Berg, M. De Vries and A. Zanen. 1979. Principles of river engineering:

the non-tidal alluvial river. Pitman Ltd., London. 249, 495

Janssen, P. Ph. and J. B. Schijf. 1953. Dutch paper. In: XVIIIth International Navigation Congress Rome, vol.

Section 1 – Volume 1, pp. 175–197. 302, 332

Jimenez, D. R. G. and M. Rem´ac. 2016. Recognition and modernisation of professional qualifications in inland navigation.

Tech. Rep. Briefing Implementation Appraisal, PE 573.288, European Parliamentary Research Service

(EPRS), Policy Cycle Unit. URL https://www.europarl.europa.eu/RegData/etudes/BRIE/2016/573288/

EPRS_BRI(2016)573288_EN.pdf. 206, 494

Jonkeren, O. 2009. Adaptation to Climate Change in Inland Waterway Transport. Ph.D. thesis,

Tinbergen Institute Research Series. URL https://research.vu.nl/ws/portalfiles/portal/42182528/

completedissertation.pdf. 33

Katsui, T., H. Asai, Y. Himeno and Y. Tahara. 2005. The proposal of a new friction line. In: Fifth Osaka colloquium

on advanced CFD applications to ship flow and hull form design, Osaka, Japan. 438

Kelvin, W. T. 1886. Stationary waves in floating water. Philosophical Magazine, London . 313

Kelvin, W. T. 1887. On ship waves. Proceedings Institute of Mechanical Engineers, London . 313

Ports and Waterways

Kelvin, W. T. 1904. Deep water ship waves. Proceedings Royal Society of Edinburgh, Scotland . 313

Kendall, D. G. 1953. Stochastic Processes Occurring in the Theory of Queues and their Analysis by the Method

of the Imbedded Markov Chain. The Annals of Mathematical Statistics 24(3), pp. 338–354. 375

Kievits, S. 2019. A framework for the impact assessment of low discharges on the performance of inland waterway

transport. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports andWaterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

b457c9c3-922e-4016-9580-f79a2549128d. 396

Kim, M., O. Hizirb, O. Turana, S. Daya and A. Incecika. 2017. Estimation of added resistance and ship speed

loss in a seaway. Ocean Engineering 141, pp. 465–476. https://doi.org/10.1016/j.oceaneng.2017.06.051.

, 419, 497

KNMI. 2014. Scientific report KNMI’14 climate scenarios. Tech. Rep., Royal Dutch Meteorological Institute

(KNMI). 31, 33, 492

KNMI. 2015. KNMI’14 climate scenarios. A guide for professionals in climate adaptation. Tech. Rep., Royal

Dutch Meteorological Institute (KNMI), De Bilt, The Netherlands. 32

Kok, N. 2021. A method to develop bunker networks for alternative energy sources. Master’s thesis, Delft University

of Technology, Civil Engineering and Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the

Netherlands. 395

Kolkman, J. 2009. Binnenvaart en containerlogistiek. Leerervaringen uit het buitenland en van andere modaliteiten

voor afhandelingsproblematiek in de zeehaven. Tech. Rep., Kennisinstituut voor Mobiliteitsbeleid. 208

Kooman, C. 1973. Navigation locks for push tows. Tech. Rep., Rijkswaterstaat Communications nr 16. 278, 338,

Kooman, C. and P. A. De Bruijn. 1975. Lock capacity and traffic resistance of locks. Tech. Rep., Rijkswaterstaat.

, 279, 365, 373, 391, 496

Kopustinskas, V. and S. Arsenis. 2012. Risk Analysis Approaches to Rank Outliers in Trade Data. Springer, Berlin,

Heidelberg., pp. 137–144. 365, 496

Korteweg, A. and B. Kuipers. 2004. Functiebepaling Nederlandse binnenhavens, Deelrapport van ‘Economisch

belang Nederlandse Binnenhavens’. Tech. Rep., A&S Management and TNO. (in Dutch), URL https://havens.

binnenvaart.nl/component/docman/doc_view/21-functiebepaling-nederlandse-binnenhavens. 206

Koster, P. 2019. Optimisation of concept level container terminal design. Accelerate the generation and visualisation

of the terminal design to reduce the probability of a sub-optimal solution. Master’s thesis, Delft University

of Technology, Civil Engineering and Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the

Netherlands. URL http://resolver.tudelft.nl/uuid:131133bf-9021-4d67-afcb-233bd8302ce0. 397

Kox, S. 2017. A Tool for Estimating Marine Terminal Dimensions and Costs in a Project’s Feasibility Phase:

Taking into account uncertainties. Master’s thesis, Delft University of Technology, Civil Engineering and

Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the Netherlands. URL http://resolver.

tudelft.nl/uuid:cab027b6-fe58-4be5-a97d-21d88e7fb0ec. 367

Kramer, N., M. Mens, J. Beersma and N. Kielen. 2019. Hoe extreem was de droogte van 2018? H2O URL

https://www.h2owaternetwerk.nl/vakartikelen/hoe-extreem-was-de-droogte-van-2018. 421

Krey, H. 1913. Fahrt der Schiffe auf beschranktem Wasser. Berlin, Schiffbau no. 12, 13, 16, 17. 302

Kwik, K. H. 1992. A system analysis for optimal management of canal ship traffic. In: PIANC Bulletin, vol. 76,

pp. 105–113. 229

Laboyrie, H. P., M. Van Koningsveld, S. G. J. Aarninkhof, M. Van Parys, M. Lee, A. Jensen, A. Csiti and

R. Kolman. 2018. Dredging for Sustainable Infrastructure. CEDA / IADC, The Hague, the Netherlands. 37,

, 44, 45, 46, 47, 49

BIBLIOGRAPHY

Lambert, A. 2018. Seapower States: Maritime Culture, Continental Empires and the Conflict That Made the

Modern World. Yale University Press. 57

Lanphen, S. 2019. Hydrogen import terminal. Elaborating the supply chains of a hydrogen import terminal, and

its corresponding investment decisions. Master’s thesis, Delft University of Technology, Civil Engineering and

Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the Netherlands. URL http://resolver.

tudelft.nl/uuid:d2429b05-1881-4e42-9bb3-ed604bc15255. 171, 172, 359, 360, 396, 412, 413, 493, 496

Lee, P. T. W. and J. S. L. Lam. 2016. Dynamic shipping and port development in the globalized economy. chap.

Developing the Fifth Generation Ports Model., Palgrave Publishers. 59

Li, L., H. Manier and M. A. Manier. 2019. Hydrogen supply chain network design: An optimization-oriented

review. Renewable and Sustainable Energy Reviews 103, pp. 342–360. https://doi.org/10.1016/j.rser.

12.060. 412

Ligteringen, H. 2017. Ports and Terminals. Delft Academic Press, 2nd edn. 65, 70, 99, 100, 101, 112, 113, 161,

, 168, 169, 171, 180, 183, 184, 251, 253, 262, 263, 366, 367, 414, 493, 495

Ligterink, N. E., R. N. Van Gijlswijk, G. Kadijk, R. J. Vermeulen, A. P. Indrajuana, M. Elstgeest, P. Van Mensch,

J. M. De Ruiter, R. P. Verbeek, J. H. J. Hulskotte, G. Geilenkirchen and M. Traa. 2019. Emissiefactoren

wegverkeer - Actualisatie 2019. Tech. Rep., TNO. 447, 448

MA. 2005. Millennium ecosystem assessment. URL https://www.millenniumassessment.org/en/About.html.

Marchand, M. 2010. Framework for coastal erosion management. Deliverable D7, Concepts and Science for Coastal

Erosion (Conscience). 37, 492

MARIN. 2008. New inventory of ship manoeuvring devices. Tech. Rep., Report 22788.600/3, Wageningen, the

Netherlands. (in Dutch). 220

Marine Insight. 2020. How the power requirement of a ship is estimated? URL https://www.marineinsight.

com/naval-architecture/power-requirement-ship-estimated/. 445, 446

Medina, R., I. Marino-Tapia, A. Osorio, M. Davidson and F. L. Martin. 2007. Management of dynamic navigational

channels using video techniques. Coastal Engineering 54, pp. 523–537. https://doi.org/10.1016/j.

coastaleng.2007.01.008. 38

Merk, O. 2018. Container ship size and port relocation. In: OECD / ITF 2018 – Discussion Paper, International

Transport Forum, Paris. 124, 493

Meyer, H. and E. Schaele. 1985. Investigation of the effect of cross flow in the vicinity of weirs and inlet structures

on passing inland vessels. In: PIANC, 26th International Navigation Congress, June 1985. 234

Min. EZK. 2019. Klimaatakkoord. Tech. Rep., Ministerie van Economische Zaken en Klimaat. 435

Min V&W. 2004. Nota Mobiliteit : naar een betrouwbare en voorspelbare bereikbaarheid. Tech. Rep., Ministerie

van Verkeer en Waterstaat. 203, 494

Min V&W (RWS-AVV). 2002. Classificatie en kenmerken van de Europese vloot en de Actieve vloot in Nederland.

Tech. Rep., Ministerie van Verkeer en Waterstaat, Directoraat Generaal Rijkswaterstaat, Adviesdienst Verkeer

en Vervoer. 212

Min V&W (RWS-AVV) and CBS. 2003. Nederland en de scheepvaart op de binnenwateren 2002. Tech. Rep.,

Ministerie van Verkeer en Waterstaat, Rijkswaterstaat, Adviesdienst Verkeer en Vervoer (RWS, AVV) and

Centraal Bureau voor de Statistiek (CBS). 204, 212, 494

Mirovic, M., M. Milicevic and I. Obradovic. 2018. Big data in the maritime industry. Nase More , pp. 56–

https://doi.org/10.17818/NM/2018/1.8. 29

Ports and Waterways

Molland, A. F. and S. R. Turnock. 2007. Marine rudders and control surfaces: principles, data, design and

applications. Butterworth-Heinemann. 222

Mulder, J. P. M., S. Hommes and E. M. Horstman. 2011. Implementation of coastal erosion management in the

Netherlands. Ocean & Coastal Management 54(12), pp. 888–897. https://doi.org/10.1016/j.ocecoaman.

06.009. 38

NeRF-Maritime. 2004. Isps-code international code for the security of ships and of port facilities (msc.196(80).

URL https://puc.overheid.nl/nsi/doc/PUC_2396_14/2/. 159

Notteboom, T. and P. Carriou. 2009. Fuel surcharge practices of container shipping lines: Is it about cost recovery

or revenue making? In: Proceedings of the 2009 International Association of Maritime Economists (IAME)

Conference, June, Copenhagen, Denmark. 419, 497

OCIMF. 2018. Mooring Equipment Guidelines (MEG4) – 4th edition. Tech. Rep., Oil Companies International

Marine Forum (OCIMF). 164, 165, 493

PIANC. 1987. Guidelines for the Design and Construction of Flexible Revetments Incorporating Geotextiles for

Inland Waterways. InCom – Report 4, PIANC. 228

PIANC. 2008a. Considerations to reduce environmental impacts of vessels. InCom – Report 99, PIANC. 220

PIANC. 2008b. Waterborne Transport, Ports and Waterways: A Review of Climate Change Drivers, Impacts,

Responses and Mitigation. EnviCom – Report 3, PIANC. 33

PIANC. 2009. Innovations in navigation lock design. InCom – Report 106, PIANC. 271, 289

PIANC. 2010. Mitigation of Tsunami Disasters in Ports. MarCom – Report 112, PIANC. 81

PIANC. 2012a. Safety Aspects Affecting the Berthing Operations of Tankers to Oil and Gas Terminals. MarCom

– Report 116, PIANC. 165, 169

PIANC. 2012b. Use of Hydro/Meteo Information for Port Access and Operations. MarCom – Report 117, PIANC.

PIANC. 2014a. Countries in Transition (CiT): Coastal Erosion Mitigation Guidelines. CoCom – Report 123,

PIANC. 87, 101, 496

PIANC. 2014b. Design Principles for Small and Medium Marine Container Terminals. MarCom – Report 135,

PIANC. 109, 121, 134, 137, 140, 493

PIANC. 2014c. Harbour approach channels design guidelines. MarCom – Report 121, PIANC. 227, 251, 252, 255

PIANC. 2014d. Master plans for the development of existing ports. MarCom – Report 158, PIANC. 67, 70, 74,

, 90, 92, 93, 110, 399, 400, 401, 403, 406

PIANC. 2014e. Ship Behaviour in Locks and Lock Approaches. InCom – Report 155, PIANC. 271

PIANC. 2015. Guidelines for Protecting Berthing Structures From Scour Caused by Ships, MarCom WG 180.

Tech. Rep., PIANC. 189, 320, 322

PIANC. 2016a. Classification of Soils and Rocks for the Maritime Dredging Process. MarCom – Report 144,

PIANC. 85

PIANC. 2016b. Design of small to mid-scale marine LNG terminals including bunkering. MarCom – Report 172,

PIANC. 169

PIANC. 2016c. Guidelines for Cruise Terminals. MarCom – Report 152, PIANC. 183

PIANC. 2016d. Recommendations for the design and assessment of marine Marine Oil and Petrochemical terminals.

MarCom – Report 153, PIANC. 165

BIBLIOGRAPHY

PIANC. 2019a. Design guidelines for inland waterway dimensions. InCom – Report 141, PIANC. 10, 84, 238,

, 289

PIANC. 2019b. Design principles for dry bulk marine terminals. MarCom – Report 184, PIANC. 13, 173, 176,

, 178, 179, 180, 181, 491

PIANC. 2019c. Ports on greenfield sites Guidelines for site selection and masterplanning. MarCom – Report 185,

PIANC. 70, 77, 84, 103, 492, 493

Policy Research. 2007. Beleidsstrategie Binnenvaart -Een landelijke markt- en capaciteitsanalyse. Tech. Rep.,

Policy Research. 214

Pomp´ee, P. J. 2015. About modelling inland vessels resistance and propulsion and interaction vessel - waterway;

key parameters driving restricted/shallow water effects. In: Proceedings Smart Rivers Conference, Buenos Aires.

Puertos del Estado. 2007. ROM 3.1-99 Recommendations for the Design of the Maritime Configuration of Ports,

Approach Channels and Harbour Basins. Madrid: Spanish National Ports & Harbours Authority. URL http:

//www.puertos.es/es-es/BibliotecaV2/ROM3.1-99(EN).pdf. 74, 75, 93, 94, 167

Quist, P. 2019. Liquid Bulk Terminals. Essential elements in the liquid bulk supply chain. Tech. Rep., Delft

University of Technology, Lecture slides CIE5306. 161

Quist, P. and B. Wijdeven. 2014. Ports & Terminals. Hand-out Chapter 7: Container Terminals. Tech. Rep.,

Delft University of Technology, Lecture notes CIE4330/CIE5306. 115, 125, 493

Rabelo, L., M. Marin, P. Xanthopoulos, C. A. Lennox, P. Coiduras, B. Campos, L. Andrade, R. Collins, E. Atencio

and D. Pitty. 2012. Preliminary hybrid modeling of the panama canal: Operations and salinity diffusion.

Modelling and Simulation in Engineering , p. 9https://doi.org/10.1155/2012/806139. 17, 492

Rademaker, W. C. A. 2007. Container terminal automation: feasibility of terminal automation for midsized

terminals. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Coastal Engineering. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

a8cc2962-c6c1-4695-bc24-2f2a7f27a2dd. 156

Rajaratnam, N. 1976. Turbulent Jets, Volume 5, 1st Edition. Elsevier Science Ltd. 323

Ramsar Convention on Wetlands. 2018. Global Wetland Outlook: state of the world’s wetlands and

their services to people. Tech. Rep., Ramsar Convention Secretariat, Gland, Switzerland. URL https://

global-wetland-outlook.squarespace.com/outlook. 49

RHDHV. 2015. Market study: demand for port facilities in the Mandalay region. Tech. Rep., Royal HaskoningDHV.

Rijkswaterstaat. 2021. BIVAS applicatie: emissies. URL https://bivas.chartasoftware.com/Home/

BIVASApplicatie/Documentatie/Emissies/. 436

Roubos, A. A. 2019. Enhancing reliability-based assessments of quay walls. Ph.D. thesis, Delft University of

Technology, Delft, The Netherlands. 62

RVW. 2020. Richtlijnen Vaarwegen 2020. Rijkswaterstaat, Ministerie van Infrastructuur en Waterstaat. https:

//puc.overheid.nl/rijkswaterstaat/doc/PUC_632307_31/1/. 10, 46, 189, 190, 212, 213, 223, 227, 234, 238,

, 242, 261, 266, 267, 271, 289, 290, 291, 292, 294, 295, 296, 297, 298, 299, 302, 368, 495

RWS. 1973. Entry and exit times of vessels as part of the locking process. Tech. Rep., Rijkswaterstaat,

Report no. 70.12.6. (in Dutch), URL https://repository.tudelft.nl/islandora/object/uuid:

f8ef9-67aa-4b96-83de-36d35498d01c. 273, 277

RWS. 1976. De virtuele lengte- en breedtematen van de scheepvaart op de Waal bij Nijmegen. Tech. Rep., Nota

nr. S74.14.3. Dienst Verkeerkunde, Hoofdafdeling Scheepvaart. 370

Ports and Waterways

RWS. 2016a. Rapportage Monitoring Nautische Veiligheid op de Nederlandse Binnenwateren 2015. Tech. Rep.,

RWS-WVL (for more information: wvl-loket@rws.nl). 355

RWS. 2016b. Requirement Specification General: National and uniform replacement of the radar target tracking

system as part of Vessel Traffic Services (VTS) systems in the management area of Rijkswaterstaat. Tech. Rep.,

Rijkswaterstaat. 354, 496

Sch¨ale, E. 1968a. Einige Studien ¨uber das Verhalten von Schubverb¨anden auf dem Main im Berg- und Talverkehr.

Mitteilungsblatt der Bundesanstalt f¨ur Wasserbau (27), pp. 31–38. URL https://hdl.handle.net/20.500.

/103067. 231

Sch¨ale, E. 1968b. Man¨ovrierversuche auf gerader und gekr¨ummter Strecke des neuen Main-Donau-Kanals. Mitteilungsblatt

der Bundesanstalt f¨ur Wasserbau 27, pp. 23–30. URL https://hdl.handle.net/20.500.11970/

231

Sch¨ale, E. 1968c. Propulsionsversuche in einem Stillwasserkanal trapezf¨ormigen Querschnitts. Mitteilungsblatt der

Bundesanstalt f¨ur Wasserbau 27, pp. 7–22. URL https://hdl.handle.net/20.500.11970/103064. 231

Sch¨ale, E. 1968d. Str¨omungsmessungen in einem Stillwasserkanal trapezf¨ormigen Querschnitts. Mitteilungsblatt

der Bundesanstalt f¨ur Wasserbau 27, pp. 15–22. URL https://hdl.handle.net/20.500.11970/103065. 231

Schijf, J. B. 1949. Protection de la cunette (berges et plafond) des voies navigables, intrieures et maritimes,

ainsi que des caneaux d’vacuation. In: PIANC congres XVIII - Lissabon, Brussel, “sec I, subject 2”. URL

http://resolver.tudelft.nl/uuid:e0a52ec1-b6d3-475d-b50c-80e6c6e2fe0e. 225, 302, 439

Segers, L. 2021. Influencing the source emission contours caused by inland shipping on the Rotterdam-

Antwerp corridor. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports andWaterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

a260bc48-c6ce-4f7c-b14a-e681d2e528e3. 395, 435, 436, 437, 439, 440, 441, 442, 444, 445, 447, 448, 449, 450,

, 452, 453, 454, 455, 497

Sharif Mohseni, N. 2014. Developing a Tool for Designing a Container Terminal Yard. Master’s thesis, Delft University

of Technology, Civil Engineering and Geosciences, Hydraulic Engineering – Ports and Waterways. Delft,

the Netherlands. URL http://resolver.tudelft.nl/uuid:020efc36-c130-4429-a1b6-7028235400ab. 402,

, 407, 496

Sharp, B. B. and J. D. Fenton. 1968. A model investigation of squat. Tech. Rep. November, Dock and Harbour

Authority. 312

Shu, Y. 2019. Vessel route choice model and operational model based on optimal control. Ph.D. thesis, Delft

University of Technology, Delft, The Netherlands. TRAIL Thesis Series no. T2019/11, the Netherlands Research

School TRAIL. 270

SIGTTO. 1997. Site Selection and Design for LNG Ports and Jetties . Tech. Rep., Society of International

GasTanker and Terminal Operators Ltd. Information Paper No. 14. 169

SpernaWeiland, F., M. Hegnauer, L. Bouaziz and J. Beersma. 2015. Implications of the KNMI14 climate scenarios

for the discharge of the Rhine and Meuse. Tech. Rep., KNMI. 32, 492

Stam, H. W. B. 2020. Offshore-Onshore Port Systems: a framework for the cost evaluation of container port systems.

Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic Engineering

– Ports and Waterways. Delft, the Netherlands. URL https://repository.tudelft.nl/islandora/object/

uuid:78b317cc-23c4-4f21-a2bf-ed53c87050e1. 397, 416, 417, 418, 497

Stolker, C. and H. Verheij. 2006. Ship-induced water motions beneath the ship’s hull. In: 31st PIANC conference,

Estoril, 2006. 328

Stopford, M. 2008. Maritime Economics, 3rd edition. Routledge. 64, 65, 76, 492

BIBLIOGRAPHY

Taneja, P. 2013. The Flexible Port. Ph.D. thesis, Delft University of Technology, Delft, The Netherlands. 50, 51,

, 61, 492

Taneja, P., H. Ligteringen and M. van Schuylenburg. 2008. Dealing with uncertainty in design of port infrastructure

systems. In: First International Conference on Infrastructure Systems and Services: Building Networks for a

Brighter Future (INFRA). 61

Termes, A. A. P., M. Van der Wal and H. J. Verheij. 1991. Waterbeweging door scheepvaart op rivieren en in

kribvakken. Tech. Rep., Waterloopkundig Laboratorium, rapport Q1046, Delft. 330

Thiele, A. 1901. Schiffswiderstand auf Canalen. Centralblatt der Bauverwaltung 54. 302

Thoresen, C. A. 2018. Port Designer’s Handbook, Fourth edition. ICE Publishing. URL https://www.

icevirtuallibrary.com/doi/abs/10.1680/pdhbfe.63075. 70, 92, 163, 493

Toxopeus, S. l. and K. Bhawsinka. 2016. Calculation of hydrodynamic interaction forces on a ship entering a lock

using CFD. In: Uliczka et al. (eds.), Proceedings 4th MASHCON, Hamburg. 426, 497

UNCTAD. 1976. Port performance indicators. Tech. Rep. TD/B/C.4/131/Supp.1/Rev.1, United Nations Conference

on Trade and Development (UNCTAD). 96, 493

UNCTAD. 1985. Port development. A handbook for planners in developing countries. United Nations Conference

on Trade and Development (UNCTAD), 2nd edn. TD/B/C.4/175/Rev.1. 111, 141, 142, 493

UNCTAD. 1999. The fourth generation port. UNCTAD Ports Newsletter 19, pp. 9–12. 59

UNCTAD. 2020. Review of Maritime Transport 2020. Tech. Rep., United Nations Conference on Trade and

Development (UNCTAD). 118, 493

Van Adrichem, W. T. C. 2020. LOSCO A Ship Lock Scheduling Model. Master’s thesis, Delft University of Technology,

Civil Engineering and Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the Netherlands.

URL http://resolver.tudelft.nl/uuid:ed6b3620-1e73-47b0-9600-4a71a73de670. 269, 394

Van Beemen, J. 2008. Container Terminal Planning Course. Tech. Rep., Royal HaskoningDHV. 115, 116, 119

Van Blaaderen, E. A. 2006. Modelling bow thruster induced flow near a quay wall. Master’s thesis, Delft University

of Technology, Civil Engineering and Geosciences, Hydraulic Engineering. Delft, the Netherlands. URL https:

//doi.org/10.4121/uuid:47c3dee1-6267-4fb4-9b89-800f75e9fda1. 346, 496

Van de Kaa, E. J. 1978. Power and speed of push-tow units in canals. In: Proc. Symposium on Aspects of Navigability

of Constraint Waterways including Harbour Entrances, The Hague. Also: Delft Hydraulics publication

URL http://publications.deltares.nl/Pub216.pdf. 340, 341, 342

Van de Ven, G. P. 2008. De Nieuwe Waterweg en het Noordzeekanaal. Een waagstuk. Tech. Rep. Onderzoek in

opdracht van de Deltacommissie. 200

Van der Bilt, V. 2019. Assessing emission performance of dredging projects. Master’s thesis, Delft University

of Technology, Civil Engineering and Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the

Netherlands. URL http://resolver.tudelft.nl/uuid:ab6d12ea-34fe-4577-b72c-6aa688e0d1bf. 396

Van der Does de Willebois, J. 2019. Assessing the impact of quay-wall renovations on the nautical traffic in Amsterdam:

A simulation study. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports andWaterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

eddd89-21a2-4819-ba1f-ee905a829364. 395

Van Dorsser, C. and H. J. Verheij. 2016. Advice on the beam of inland vessels and width of locks

related to efficient continental container transport. Tech. Rep., Delft University of Technology, Delft,

the Netherlands. Contribution to PIANC InCom WG 179, URL http://resolver.tudelft.nl/uuid:

ba3c00-8643-4ec4-9c57-65049ffcd6c0. 216

Ports and Waterways

Van Dorsser, C., F. Vinke, R. Hekkenberg and M. Van Koningsveld. 2020. Effect of low water on loading capacity

of inland ships. European Journal of Transport and Infrastructure Research 20(3), pp. 47–70. https://doi.

org/10.18757/ejtir.2020.20.3.3981. 29, 33, 185

Van Dorsser, J. C. M. 2015. Very Long Term Development of the Dutch Inland Waterway Transport System -

Extended Summary Report. Tech. Rep., Rijkswaterstaat. 33

Van Duin, J. H. R., P. M. J. Warffemius, P. C. J. Verschoor, A. De Leeuw and K. M. R. Alons-

Hoen. 2019. Synchromodal transport: from theory to practice; case study port of rotterdam: identifying

the success/fail factors. In: Proc. 98th Annual Meeting Transportation Research Board, Washington

DC, p. 11. URL https://www.researchgate.net/publication/330579559_SYNCHROMODAL_TRANSPORT_FROM_

THEORY_TO_PRACTICE_CASE_STUDY_PORT_OF_ROTTERDAM_IDENTIFYING_THE_SUCCESSFAIL_FACTORS. 210

Van Eekelen, E. and M. Bouw. 2020. Building with Nature – Creating, implementing and upscaling Nature-based

Solutions. Rotterdam: EcoShape, One Architecture and nai010 publishers. 47

Van Halem, J. P. 2019. Route optimization in dynamic flow fields: avigation system for the North Sea and

Wadden Sea. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports and Waterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

d34d333-34fe-4181-95b6-d8d82f72d979. 396

Van Koningsveld, M. 2020a. OpenTISim (Version 0.6.2). https://doi.org/10.5281/zenodo.3341605, URL

https://github.com/TUDelft-CITG/OpenTISim. 396

Van Koningsveld, M. 2020b. Queueing theory. Tech. Rep., Delft University of Technology, Lecture slides CIE4330.

Van Koningsveld, M. and J. Den Uijl. 2020a. OpenQTSim (Version 0.5.0). https://doi.org/10.5281/zenodo.

, URL https://github.com/TUDelft-CITG/OpenQTSim. 394

Van Koningsveld, M. and J. Den Uijl. 2020b. OpenTNSim (Version 1.0.0). https://doi.org/10.5281/zenodo.

, URL https://github.com/TUDelft-CITG/OpenTNSim. 395

Van Koningsveld, M. and J. P. M. Mulder. 2004. Sustainable Coastal Policy Developments in the Netherlands. A

Systematic Approach Revealed. Journal of Coastal Research 20(2), pp. 375–385. https://doi.org/10.2112/

-5036(2004)020[0375:SCPDIT]2.0.CO;2. 37, 38

Van Koningsveld, M., J. Den Uijl, F. Baart and A. Hommelberg. 2021. OpenCLSim (Version 1.4.2). https:

//doi.org/10.5281/zenodo.4529112, URL https://github.com/TUDelft-CITG/OpenCLSim. 396

Van Loon, O. D. M. 2017. Improving the filling jet schematisation through a lock door by taking into account

the presence of a ship. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences,

Hydraulic Engineering – Ports and Waterways. Delft, the Netherlands. URL https://repository.tudelft.

nl/islandora/object/uuid:ff7dbfaa-a38c-4a2b-968d-97823034122a?collection=education. 427, 428,

Van Maren, D. S., J. Vroom, M. Fettweis and J. Vanlede. 2020. Formation of the zeebrugge coastal turbidity

maximum: the role of uncertainty in near-bed exchange processes. Marine Geology 425. https://doi.org/10.

/j.margeo.2020.106186. 86, 492

Van Terwisga, T. 1989. Weerstand en voortstuwing van bakken, een literatuurstudie. Tech. Rep., Maritime Research

Institute Netherlands (MARIN), Wageningen, The Netherlands. (in Dutch). 439, 445

Van Vianen, T., J. Ottjes and G. lodewijks. 2011. Dry bulk terminal characteristics. Bulk Solids India , pp. 1–10.

Van Vledder, G. P. and M. Zijlema. 2014. Non-hydrostatic wave modelling in partly sheltered areas. In: Coastal

Engineering Proceedings, vol. 1(34), p. 11. 260, 495

BIBLIOGRAPHY

Vantorre, M., G. Delefortrie, M. Candries and F. Mostaert. 2012. Behaviour of ships approaching and leaving

locks. Open model test data for validation purposes. Tech. Rep., Flandres Hydraulics Institute. WL Reports

08. 430, 497

Vehmeijer, L. 2019. Measures for the reduction of CO2 emissions, by the inland shipping fleet, on the Rotterdam-

Antwerp corridor. Master’s thesis, Delft University of Technology, Civil Engineering and Geosciences, Hydraulic

Engineering – Ports andWaterways. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

abd88e0-9ab6-47fd-a503-2f19ba13bbff. 395, 436, 455

Veldman, S. 2011. On the ongoing increase of containership size, chap. 10. World Scientific Publishing Co. Pte.

Ltd., pp. 201–228. 123

Verheij, H. J. 1983. The stability of bottom and banks subjected to the velocities in the propeller jets behind

ships. In: Publication No. 303, 8th International Harbour Congress, Delft Hydraulics Laboratory, Delft, The

Netherlands. URL http://publications.deltares.nl/Pub303.pdf. 322, 323

Verheij, H. J. 2010. Comparison of water jets and conventional propeller jets. In: Port Infrastructure Seminar

322

Verheij, H. J. and M. P. Bogaerts. 1989. Ship Waves and the Stability of Armour Layers Protecting Slopes. Tech.

Rep., Delft Hydraulics, Publication No. 428. 315

Verheij, H. J. and C. Stolker. 2007. Hydro jets of fast ferries require proper designed quay walls. In: 2nd International

Maritime-Port Technology and Development Conference, Singapore. 323

Verheij, H. J., H. Raven, N. Doorn and 2001. Borsboom, M. 2001. Numerical modelling of ship-induced water

motions – feasibility study. Tech. Rep., Delft Hydraulics, Delft, Report Q2576. 345, 496

Verheij, H. J., C. Stolker and R. Groenveld. 2008. Inland Waterways. Ports, Waterways and Inland Navigation.

Tech. Rep., Delft University of Technology, Lecture notes CIE4330. 223, 301

Verschuren, D. J. J. 2020. Effects of drought on the traffic capacity of the river Waal and

the occurrence of congestion. Master’s thesis, Delft University of Technology, Civil Engineering

and Geosciences, Hydraulic Engineering – Ports and Waterways. Delft, the Netherlands. Related

dataset 4TU.ResearchData: https://doi.org/10.4121/12982232, URL http://resolver.tudelft.nl/uuid:

a09cb68-b8e5-4278-84fd-97b5286a4b8e. 269, 394, 423, 497

Vinke, F., C. Van Dorsser and T. Vellinga. 2019. Assessment of climate change effects on navigable

conditions on the river branches of the rhine in the netherlands. In: Proceedings PIANC

Smart Rivers Conference, Lyon, p. 4. URL https://repository.tudelft.nl/islandora/object/uuid:

dbf6c621-d0b1-4d33-a0e7-1e5aea88e447?collection=research. 396

Vinke, F., M. Van Koningsveld, C. Van Dorsser, F. Baart, P. Van Gelder and T. Vellinga. 2022. Cascading effects

of sustained low water on inland shipping. Climate Risk Management . 396, 421, 422

Vreeburg, A. C. M. 2015. ShoreTension as cargo handling system: Controlling the relative horizontal motions

between the HTV and the cargo during offshore loading and discharge. Master’s thesis, Delft University

of Technology, Mechanical, Maritime and Materials Engineering, Marine & Transport Technology

– Offshore and Dredging Engineering. Delft, the Netherlands. URL http://resolver.tudelft.nl/uuid:

f704a79-7543-41f0-8ce4-076358885cfd. 432, 497

Watson, D. G. M. 1998. Practical ship design, vol. 1. Elsevier. 439

World Bank. 2007. Port Reform Toolkit (2nd Edition). Washington DC: World

Bank. URL https://ppp.worldbank.org/public-private-partnership/library/

port-reform-toolkit-ppiaf-world-bank-2nd-edition. 66, 67

Xiao, F. 2014. Ships in an artificial force field: A multi-agent system for nautical traffic and safety. Ph.D. thesis,

Delft University of Technology, Delft, The Netherlands. 270

Ports and Waterways

Zeng, Q., C. Thill, R. Hekkenberg and E. Rotteveel. 2018. A modification of the ITTC57 correlation line for

shallow water. Journal of Marine Science and Technology 24(2), pp. 642–657. https://doi.org/10.1007/

s00773-018-0578-7. 437, 439

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