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Three-point MEMS heat flux sensor for turbulent heat transfer measurement in internal combustion engines

机译:内燃机湍流传热测量的三点MEMS热通量传感器

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摘要

A heat flux sensor was developed with micro-electro-mechanical systems (MEMS) technologies for investigating turbulent heat transfer characteristics in engines. The sensor has three thin-film resistance temperature detectors (RTDs) of a square 315 mu m on a side on a 900 mu m diameter circle in rotational symmetry. The performances of the MEMS systems sensor were tested in an open combustion chamber and a laboratory engine. In the open chamber tests, it was revealed that the MEMS sensor can measure the wall heat fluxes reflecting flow states of gas phase. In addition, the noise was evaluated as 3.8 kW/m(2) with the standard deviation against the wall heat flux of a few hundred kW/m(2). From these results, it was proved that the MEMS sensor has the potential to observe turbulent heat transfer on the order over 10 kW/m(2) in the engine. In the laboratory engine test, the wall heat flux for continuous 200 cycles was measured with a good signal-to-noise ratio. The noise was evaluated as 13.4 kW/m(2) with the standard deviation despite the noisy environment. Furthermore, it was proved that the MEMS sensor has the comparable scale with the turbulence in the engine because the three adjacent detectors measured similar but different phase oscillations in the local instantaneous heat fluxes. In addition, a heat flux vector reflecting the state of the local instantaneous heat transfer was visualized by the adjacent three-point measurement. It is expected that the three-point MEMS sensor will be a useful tool for the engine heat transfer research.
机译:热通量传感器是用微电机械系统(MEMS)技术开发的,用于研究发动机中的湍流传热特性。传感器在旋转对称的900μm直径圆上的一侧具有三个薄膜电阻温度探测器(RTDS),在900μm直径圆上。在开放式燃烧​​室和实验室发动机中测试MEMS系统传感器的性能。在开放式腔室测试中,揭示了MEMS传感器可以测量反射气相流动状态的壁热通量。此外,噪声评价为3.8kW / m(2),标准偏差抵抗几百kW / m(2)的壁热通量。从这些结果中,证明了MEMS传感器具有在发动机中超过10kW / m(2)的湍流传热。在实验室发动机测试中,以良好的信噪比测量连续200个循环的壁热通量。尽管有嘈杂的环境,但噪音评价为13.4 kW / m(2),标准差。此外,证明了MEMS传感器具有与发动机中的湍流具有相当的刻度,因为三个相邻的探测器在局部瞬时热通量中测量了相似但不同的相位振荡。另外,通过相邻的三点测量可视化反射局部瞬时传热状态的热通量载体。预计三点MEMS传感器将成为发动机传热研究的有用工具。

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