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CHARACTERIZATION OF THE THERMODYNAMIC WORKING CYCLE IN A MEMS-BASED MICRO HEAT ENGINE

机译:基于MEMS的微热机中热力学工作循环的表征

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摘要

This work examines the conversion of thermal to mechanical energy in a micro heat engine by characterizing the heat engine's working cycle. Results are given for dynamic measurements of pressure, volume, and temperature throughout the working cycle of the engine. Engine pressure is determined from the deformation of the two membranes in contact with the working fluid. A Michelson interferometer is used to measure the center deflection and displacement profile of both of these membranes. Pressure is determined from the membrane deflection using experimental static pressure-deflection curves. Engine temperature is measured using electrical resistance thermometry, via a micro resistance thermometer fabricated on the surface of a silicon membrane exposed to the working fluid in the engine cavity.
机译:这项工作通过表征热机的工作周期,研究了微热机中热能到机械能的转换。给出了整个发动机工作循环中压力,体积和温度的动态测量结果。发动机压力由与工作流体接触的两个膜的变形确定。迈克尔逊干涉仪用于测量这两种膜的中心偏转和位移曲线。使用实验静态压力-挠度曲线从膜的挠度确定压力。使用电阻测温仪,通过在暴露于发动机腔中工作流体的硅膜表面上制造的微电阻温度计来测量发动机温度。

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