TU Delft

Pós-doutoramento: Validação de um gêmeo digital para avaliação de estratégias de redução de emissões na navegação interior

Junte-se à TU Delft nos Países Baixos como Postdoc para validar um gêmeo digital que avalia estratégias de redução de emissões na navegação interior. A função exige modelação baseada em agentes e análise de big data. Beneficie de horário flexível, excelente pensão e apoio à relocação.
TU Delft
TU Delft
Delft, Países Baixos Presencial Tempo inteiro UTC+01:00

TU Delft

Visão Geral da Empresa

Nome

TU Delft (Universidade Técnica de Delft)

Sede

Delft, Países Baixos

Fundada

1842

Tamanho

Aproximadamente 19.000 estudantes e mais de 3.300 pesquisadores (fonte: linkedin.com).

O Que Eles Fazem

A TU Delft é a maior e mais antiga universidade técnica pública dos Países Baixos, focando em ensino e pesquisa em diversas áreas tecnológicas. A universidade tem uma forte ênfase em pesquisa de energia, especialmente em energias renováveis. O Laboratório de Energia Elétrica Sustentável (ESP) atua como um centro para pesquisa multidisciplinar sobre futuros sistemas de energia digital com alta participação de energia renovável (fonte: tudelft.nl). As áreas de pesquisa incluem, entre outras, a integração de fontes de energia renovável na rede elétrica, armazenamento de energia e o desenvolvimento de tecnologias inovadoras como conversão de hidrogênio e sistemas geotérmicos.

Projetos & Histórico

A TU Delft possui inúmeras iniciativas de pesquisa e projetos relevantes para energia renovável. Exemplos incluem o projeto RELEASE, que se concentra no armazenamento de energia em larga escala por meio de conversão eletroquímica, e o projeto TradeRES, que investiga designs de mercado para sistemas de energia 100% renováveis (fonte: tudelft.nl). Além disso, o Instituto de Energia Eólica (DUWIND) coordena pesquisas sobre vento em seis faculdades, com foco em aerodinâmica, materiais e otimização de turbinas.

Desenvolvimentos Recentes

Recentemente, a TU Delft lançou várias iniciativas, incluindo o Laboratório de Energia 24/7, que investiga sistemas de energia livres de carbono para o ambiente construído, e o Laboratório de Renováveis Flutuantes, que se concentra na implementação de energia renovável offshore (fonte: tudelft.nl). Esses laboratórios fazem parte dos esforços mais amplos da universidade para contribuir com a transição energética e o desenvolvimento sustentável.

Trabalhar na TU Delft

Na TU Delft, existem diversas funções e departamentos, variando de pessoal acadêmico a pessoal de apoio. A universidade oferece um ambiente de trabalho estimulante com forte foco em pesquisa e inovação. Os colaboradores se beneficiam de uma cultura que promove a colaboração e a pesquisa interdisciplinar, além de oportunidades de desenvolvimento profissional por meio de sua plataforma Learning for Life, que oferece cursos sobre sistemas de energia integrados e tecnologias de energia renovável (fonte: tudelft.nl).


Última atualização em fev 23, 2026 | Relatar um problema

Job Description

The postdoctoral research is part of the NWO project "PAving THe way towards Zero-Emission and RObust inland shipping (PATH2ZERO)", which aims to develop breakthrough action perspectives and sustainable business models for all parties in the inland shipping chain, contributing to the transition to emission-free inland shipping. The main objective of the project is the evaluation of zero-emission strategies, the effectiveness of policies and technologies, and the assessment of the consequences of their implementation on the inland shipping system.

One aim of the PATH2ZERO project is to translate research outcomes into practice, so that end users can make better-informed decisions. For this purpose, PATH2ZERO aims to develop a digital twin. The main goal of this data-driven virtual representation of the inland waterway transport system is to assess the efficiency of proposed solutions for emissions reduction in inland waterway transport. Three main aspects are regarded as vital components of the digital twin: the individual vessels, fleet and its operations, and the infrastructure.

As these components require a detailed representation within a large-scale transport system, a meso-scale agent-based approach has been selected as a suitable basis for the digital twin. This enables the assessment of potential interventions, ranging from the application of new technologies to individual vessels to policy measures that are implemented for an entire shipping corridor, or various bunker infrastructure strategies in the network. In addition, the impact of the feasible interventions can be evaluated, ranging from the individual ship level and its emissions to the network level and the aggregated emissions in an entire area, or the impact on the logistics chain.

For validating the digital twin, real-world data sources (AIS data, hydrodynamic data, infrastructure data, etc.) will be used in combination with already existing tools for maritime traffic simulation (e.g., OpenTNSim, which is being developed at TU Delft), energy consumption estimates, and emission algorithms. The relevant processes at the individual vessel level can be modelled in detail, and their performance can be tracked in time and space. Corridor scale effects will be simulated by aggregating the results of multiple vessels that together represent the corridor's traffic.

Three regions will be modelled as areas of interest: the Rotterdam - Basel corridor (an open waterway, that is vulnerable to high and low discharge events), the Rotterdam - Antwerp / Gent corridor (a closed waterway that includes various locks and short-sea shipping), and the larger Port of Rotterdam region (a region that includes both sea-going and inland vessels in an area subject to currents and tides).

While the scope of this research focuses on validating a digital twin using operational data from inland vessels, it is expected to involve close collaboration with project stakeholders and researchers within the project. This collaboration will contribute to the quantitative assessment of emission reduction strategies, paving the way toward zero-emission inland shipping.

Job Requirements

We are looking for a candidate with an interdisciplinary track record who is able to integrate engineering, environmental, and social science knowledge into a new framework for zero-emission inland shipping. This position requires outstanding skills in modelling and working with big datasets. In addition, the applicants should have:

  • PhD diploma in Transportation, Logistics, Civil Engineering, Mechanical Engineering, Maritime Engineering, or any other related field.
  • Experience with agent-based modelling is essential.
  • Experience with big data analytics, Python, and an affinity for acquiring new skills in this area.
  • Ability to collaborate with both scientific and industrial partners.

Conditions of Employment

  • Duration of contract is 2 years. Temporary external finance.
  • A job of 38 hours per week.
  • Salary and benefits are in accordance with the Collective Labour Agreement for Dutch Universities.
  • An excellent pension scheme via the ABP.
  • The possibility to compile an individual employment package every year.
  • Discount with health insurers on supplemental packages.
  • Flexible working week.
  • Every year, 232 leave hours (at 38 hours). You can also sell or buy additional leave hours via the individual choice budget.
  • Plenty of opportunities for education, training and courses.
  • Partially paid parental leave.
  • Attention for working healthy and energetically with the vitality program.

Will you need to relocate to the Netherlands for this job? TU Delft is committed to make your move as smooth as possible! The HR unit, Coming to Delft Service, offers information on their website to help you prepare your relocation. In addition, Coming to Delft Service organises events to help you settle in the Netherlands, and expand your (social) network in Delft. A Dual Career Programme is available, to support your accompanying partner with their job search in the Netherlands.

Additional Information

The supervisory team consists of Prof. Mark van Koningsveld and Dr. Alex Kirichek. For more information about this vacancy, please contact Dr. Alex Kirichek (Associate Professor at the Faculty of Civil Engineering and Geoscience, at TU Delft) [email protected]

Application Procedure

Are you interested in this vacancy? Please apply no later than 17 August 2026 via the application button and upload the following documents:

  • CV
  • Motivational letter

You can address your application to Alex Kirichek.

Please note:

  • You can apply online. We will not process applications sent by email and/or post.
  • As part of knowledge security, TU Delft conducts a risk assessment during the recruitment of personnel. We do this, among other things, to prevent the unwanted transfer of sensitive knowledge and technology. The assessment is based on information provided by the candidates themselves, such as their motivation letter and CV, and takes place at the final stages of the selection process. When the outcome of the assessment is negative, the candidate will be informed. The processing of personal data in the context of the risk assessment is carried out on the legal basis of the GDPR: performing a public task in the public interest. You can find more information about this assessment on our website about knowledge security.
  • Please do not contact us for unsolicited services.

Candidate-se agora

O emprego expirou?

Por favor, informe a TU Delft que encontrou este emprego no Rejobs. Ajuda-nos a crescer e a levar mais pessoas a trabalhar em energias renováveis.

Sobre a função

13 agosto 2026

13 agosto 2026

Tempo inteiro

Presencial

Escola

Energia hidroelétrica, Hidrogénio

TU Delft

tudelft.nl

  •  Delft, Países Baixos

Postdoctoral level with a PhD

UTC+01:00