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. Quantify flow-induced radial and axial forces under design and off-design operating conditions. Identify and model dominant loss mechanisms and their thermal and mechanical interactions. Assess the influence
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: Develop and validate physics-based, data-driven, or hybrid digital twins of Electrolysis systems, capturing their electrochemical, thermal, flow, and system-level behaviour for system monitoring, state
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industrial partners. In particular, you will: Develop and validate physics-based, data-driven, or hybrid digital twins of Electrolysis systems, capturing their electrochemical, thermal, flow, and system-level
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on modelling and controlling electrified industrial thermal systems under real-world conditions. The work is embedded in a collaborative research project with industrial partners, providing access to realistic
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Autonomous Building Operation. By monitoring actual buildings, understanding their dynamic behavior through high-resolution real-life data and sophisticated thermal system modeling, you will develop actionable
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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
installation, solid mechanics, fluid mechanics, materials technology, manufacturing engineering, engineering design and thermal energy systems. DTU – For the benefit of society since 1829 DTU is one of Europe's
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thermal energy systems. DTU – For the benefit of society since 1829 DTU is one of Europe's leading elite technical universities. Through research and education at an international top level, we create
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industrial partners. AAU Energy offers access to modern experimental and computational facilities supporting research in sustainable energy systems. At Campus Esbjerg, these include facilities for thermal and
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sustainable energy systems. At Campus Esbjerg, these include facilities for thermal and fluid processes, electrical engineering, power electronics, renewable-energy control, offshore energy systems, and Power
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to the development of clean and sustainable energy systems. Our activities cover electrical, thermal and mechatronic energy technologies, and we work closely with industrial partners and other academic environments