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The transformative potential of machine learning for experiments in fluid mechanics

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arxiv 2303.15832 v2 pith:ELOGCZCJ submitted 2023-03-28 physics.flu-dyn cs.AI

The transformative potential of machine learning for experiments in fluid mechanics

classification physics.flu-dyn cs.AI
keywords experimentalfluidlearningmachinemechanicsincludingpotentialadvanced
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The field of machine learning has rapidly advanced the state of the art in many fields of science and engineering, including experimental fluid dynamics, which is one of the original big-data disciplines. This perspective will highlight several aspects of experimental fluid mechanics that stand to benefit from progress advances in machine learning, including: 1) augmenting the fidelity and quality of measurement techniques, 2) improving experimental design and surrogate digital-twin models and 3) enabling real-time estimation and control. In each case, we discuss recent success stories and ongoing challenges, along with caveats and limitations, and outline the potential for new avenues of ML-augmented and ML-enabled experimental fluid mechanics.

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