Offer Description
We are looking for a PhD student with a strong background in the philosophy and/or social studies of science and technology. The position is part of the Horizon MSCA Doctoral Network “Towards sustainable computational fluid dynamics” coordinated by the Institut National Polytechnique de Toulouse (INPT). The PhD student will be part of a group of largely modelling PhD students all trying to make computational fluid dynamics modelling more sustainable in a comprehensive sense. This will involve a…
collaborative approach to working with modellers analysing modelling practices within their multiple institutional, social, and epistemic contexts and identifying opportunities for and barriers against more sustainable approaches. The successful candidate will have strong empirical and analytical skills in the study of science and technology while also having an interest in and ability to engage fluid dynamics modelling as a heterogeneous set of practices.
About us
This opportunity is offered by the Chair for Anthropology of Science & Technology (Professor Niewoehner) at the TUM School of Social Sciences and Technology (SOT), in collaboration with the Chair for the Philosophy and History of Science and Technology (Professor Leonelli). The PhD student will be carrying out research as part of the FairCFD Horizon project, starting preferably in November 2026 or soon thereafter with funding for 3 years (65% of E13 salary scale). The chairs comprise interdisciplinary, public-interest-minded, international and impact-oriented teams based at the TUM SOT. We have world-leading expertise in the social studies, philosophy, and history of science, particularly modelling, data-intensive research and the governance of data and AI. Both chairs are located within the Department of Science, Technology and Society, which is dedicated to understanding the larger social, political, ethical and legal dimensions of science and technology. Embedded in TUM’s unique innovation ecosystem, we are committed to enabling a more responsible and sustainable engagement with science and innovation through social science research, teaching and public dialogue – often in collaboration with partners from technical fields. The TUM STS community strives to provide new intellectual and practical resources for dealing with the challenges of highly technologised societies, and to train future leaders with a unique sensibility for the critical interface between science, technology and society. As one of Europe’s largest hubs for STS, we are a lively intellectual community of 70+ researchers from numerous disciplines and fields of specialization. As a department, we deliver 2 Master’s programs and design STS content for the School’s PhD program. We offer regular public lectures and symposia, weekly discussion groups, and visiting researcher programs. We maintain close collaborative ties to other parts of TUM as well as to leading HPS and STS centres in Germany and around the world.
We invite the researcher taking on this position to become a core contributor to the Horizon project “Towards Sustainable Computational Fluid Dynamics” (FairCFD), a training programme focused on the development of novel modelling tools where the PhD candidate will have the opportunity to study and contribute to these technical developments from the viewpoint of the social and philosophical studies of science.
About the FairCFD project
Over the past seven decades, Computational Fluid Dynamics (CFD) has enabled increasingly efficient industrial processes achieving both economic and environmental gains through the reduction of testing, prototype development and creation of more efficient end-products. For instance, the usage of CFD in Boeing allowed a reduction of wind-tunnel experiments by 87% between the late 1970’s and the late 1990’s, corresponding to a reduction of energy consumption which can be estimated as 8.7 107 kWh while reducing the fuel and consumables requirements for these services. Up to the end of the 20th century, “traditional CFD” was driven by a “paradigm of three pillars”, as sketched in the left side of figure 1. The first is fidelity, defined as the ability to accurately reproduce all details of the flow. The second is the requirement for acceptable performance, defined by end-users as the ability to obtain reliable results in reasonable wall-clock time on available hardware. Thirdly, the quest of generality, namely the ability to simulate a variety of flows within a single software package has been a target in the development of commercial solvers which are the main tools used by industry. In the past 2 decades, the development and use of CFD underwent four major pivots. Firstly, the appearance of a new generation of open-source software has accelerated the usage of CFD in many areas of engineering, especially among SMEs. Secondly, the development of High-Performance Computing (HPC), largely driven by ever-growing demand for larger CFD simulations, led to a shift from performance towards efficiency, defined more precisely as minimisation of computer resources required for a given simulation. Concomitantly, the objective of fidelity has been progressively replaced by accuracy, defined as the ability to accurately predict global results of practical importance, such as drag, regardless of a precise description of fine flow details. The third major pivot is the appearance of Artificial Intelligence (AI), currently a major revolution in all sectors of Information Technologies. In the field of CFD, usage of AI aims at replacing or complementing traditional physics-based approaches by data-driven ones, using Machine-Learning (ML). Such approaches allow enormous gains of time, in a way that can be related to the astonishing efficiency of an artificial intelligence like ChatGPT compared to a human translator for text translation tasks. However, the cost of this efficiency is the training phases of the AI, which are time-consuming, and require a large amount of data which must be previously generated, again with a cost. The fourth major pivot, which is only in its infancy, is the recognition that usage of CFD has a cost: energetical, environmental, and social-ethical, meaning the wider societal implications of new simulation practices. Despite its importance in view of current sustainability concerns, only very few studies have considered these aspects. The ambition of the FairCFD network is to work towards the establishment of sustainable CFD as a new paradigm within the community of academic, industrial and educational actors, advancing efficiency, measuring and promoting frugality without compromising accuracy.
Requirements
Research Fields: Philosophy » Philosophy of science; Anthropology » Cultural anthropology; Sociology » Social shaping of technology
Education Level: Master Degree or equivalent
The successful applicant will be expected to conduct research leading to the award of a PhD degree, by examining the activities of the FairCFD Network and particularly the ways in which qualitative methods can contribute towards the scientific goals of the project. The applicant will be expected to use ethnographic fieldwork and interviewing techniques to explore the idea of ‘frugality’ as conceptualized and implemented by members of the FairCFD network, thereby producing a study of the social and epistemological foundations of scientific modelling in CFD, with critical reflection of findings in the wider contexts of knowledge production in CFD and sustainability writ large. This doctoral research will be situated in the context of a wider subproject looking into the epistemic practices and cultures of the 14 fluid dynamics PhD projects and their respective institutions and wider intellectual and technological environments with a particular focus on the development and use of sustainability metrics. This will also include the industrial partners in the consortium as the sustainability of new simulation techniques does not only hinge on their conception under lab conditions but also their actual deployment in real-world contexts of industrial practices. Through systematic literature reviews, rapid ethnographic assessment of the institutions and key labs, participant observation within the working practices and training events of the network, and interviewing of key researchers, the subproject will gather an empirically saturated understanding of notions of sustainability that are being inscribed into innovative simulation practices. This comprises ecological dimensions but also wider aspects of social order, equity and moral concerns. Potential deployment and application of the new techniques in industry will be analysed through interviews with key personnel at the industrial partners.
We are excited to collaborate with a highly motivated PhD candidate who shares our deep interest in exploring conceptual, educational, social, and governance issues that emerge in the context of scientific modelling. The candidate also brings the following qualifications:
- Masters-level studies or equivalent qualification/experience in the philosophy, history and/or social studies of science or a related field of study.
- Demonstrated interest in scientific models and/or data-intensive methods in the natural (and preferably the physical) sciences.
- Demonstrated interest in the philosophy of science in practice and STS qualitative methods.
- Excellent written and verbal communication skills.
- Able to communicate complex and conceptual ideas to a range of groups.
- Able to balance the pressures of research, administrative demands and competing deadlines.
- An understanding of the importance of equality and diversity within an organisation and a commitment to helping create an inclusive culture.
- Interest and ability to engage in organizational tasks supporting the FairCFD project, such as developing events and training to engage project members and associates
- Interest and ability to develop funding applications both nationally and internationally in collaboration with the STS Department and the FairCFD team
- Intellectual curiosity and an open mindset, and the ability and motivation to work both independently and as member of the team
- Organizational skills and excitement to work in a fast-paced, cross-cultural, and interdisciplinary environment
- Very good English skills, with knowledge of the German and French language as a plus (but not necessary).
Specific Requirements: This is a project that will deliver a social science / humanities analysis of the technical field and practice of modelling. An ability and willingness within the given time frame to engage successfully and generatively with such a technical field from within a social science / humanities background is paramount. This need not be reflected in a double qualification. Yet we need to feel confident that the successful candidate will not be overwhelmed by the empirical engagement.
Languages: English — Level: Excellent
Tasks
- Conduct research for FairCFD on research inequity and epistemic injustice, resulting in internationally leading publications
- Participate in weekly project meetings and in conferences and events relating to the project, and present outputs as required
- Support the project through administrative and organizational tasks as necessary
- Contribute to the intellectual life and community of the STS Department and the Chairs of Anthropology and of Philosophy and History of Science and Technology
Our offer
We offer exciting opportunities to participate in cutting-edge research, education, and outreach in a highly collaborative, interdisciplinary, and internationally networked environment, tackling some of the hardest problems in the field of science studies and philosophy/history of science with a commitment to the public good. We as well offer the opportunity to build your own research agenda around relevant topics. We invite you to join us on the inner-city campus of TUM.
What to expect
- The possibility of successfully acquiring a PhD degree by carrying out research and developing high-level publications in this domain
- Working in a cutting-edge research, training, policy and outreach effort funded by Horizon Europe, thereby acquiring skills in interdisciplinary research and teaching
- Working in a highly collaborative team of researchers from science studies, philosophy and history of science, data studies, agricultural/health/data science
- The opportunity to participate in collaborative academic publishing and engage with the broader scientific community through workshop and/or conference visits.
- Mentorship and continuous support in building an independent academic and professional profile.
- Remuneration according to EU MSCA grant conditions comprising living and mobility allowance adding up to an estimated €3800 gross monthly salary plus a family allowance of €600 per month in case of a married candidate or children. The actual salary depends on the specific person.
The chosen candidate will be employed at the TUM Chair of Anthropology of Science and Technology. The employment contract is limited to 36 months.
Where to apply
Website: https://faircfd.eu
Additional Information
Benefits
The successful candidates will receive an attractive salary in accordance with the MSCA regulations for Doctoral Researchers. The exact (net) salary will be confirmed upon appointment and is dependent on local tax regulations and on the country correction factor (to allow for the difference in cost of living in different EU Member States). The salary includes a living allowance, a mobility allowance, and a family allowance (if applicable). The guaranteed PhD funding is for 36 months (i.e., EC funding, additional funding is possible, depending on the local Supervisor, and in accordance with the regular PhD time in the country of origin).
Eligibility criteria
According to the international mobility rules of the MSCA-DN program, the candidates must not have spent more than 12 months in the hosting country (Germany), during the 36 months preceding the starting of the PhD. Apart from this rule, worldwide applications are expected and encouraged.
Selection process
Please consult the job advert on the project website: https://faircfd.eu/open-positions/
The recruitment process will adhere to the principles of equal opportunities, transparency and non-discrimination, in line with the European Charter for Researchers, and will actively promote diversity and gender balance. In particular, applications from female candidates are strongly encouraged, as women remain underrepresented in engineering disciplines.
Website for additional job details
Work Location(s)
Number of offers available: 1
Company/Institute: TU Munich
Country: Germany
State/Province: Bavaria
City: Munich
Postal Code: 80333
Street: Augustenstr. 40
Contact
State/Province: Bavaria
City: Munich
Website: https://www.tum.de
Street: Arcisstr. 21
Postal Code: 80333
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