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-The objectives of the thesis are: --------------------------------------------- - To understand fluid flows through inter-shaft seals - To quantify leakages at the piston ring/bore and piston ring/rotor interfaces
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applicant must have (or be close to obtaining) a relevant PhD in Fluid Mechanics from an Engineering, Mathematics or Physics Department, a strong background in theoretical and computational fluid mechanics
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methods in fluid dynamics and heat transfer to study multiphase flow phenomena. The goal is to integrate theoretical and experimental fluid dynamics with modern computational tools to analyze and predict
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-edge sloshing research. Offer Requirements Education Level: Master’s degree (or equivalent) in Mechanical Engineering, Aerospace Engineering, Applied Physics, or a related field. Research Field: Fluid
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field. Research Field: Fluid dynamics, control engineering, or dynamical systems. Required Skills/Qualifications: Experience with experimental methods (laboratory setups, sensors, data acquisition
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model of high-pressure mechanical seals. Apply Computational Fluid Dynamics (CFD): Simulate gas film flow within the microscopic seal gap. Couple CFD with Structural Models: Study the fluid-structure
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performance in fuel cell (biogas) and co-electrolysis applications. To achieve this, you will employ computational fluid dynamics (CFD) and machine learning (ML) to investigate degradation mechanisms under
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laser physics and/or plasma and fluid mechanics is an asset, especially if combined with strong hands-on laboratory skills Programming experience, particularly in Python, is welcomed Strong verbal and
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Research Assistant Professor - Robertson Lab Mechanical Engineering and Materials Science - Pennsylvania-Pittsburgh - (25004707) Responsibilities: We are seeking to hire a Research Assistant
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applications. To achieve this, you will employ computational fluid dynamics (CFD) and machine learning (ML) to investigate degradation mechanisms under various operating conditions and develop strategies