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FEM-Analysis of 2D Micromachined Flow Transduers based on aGe-Thermistor Arrays and a Double Bridge Readout

机译:基于aGe热敏电阻阵列和双桥读数的2D微机械流量传感器的FEM分析

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摘要

This paper reports on a design and simulation study aiming at high-accuracy 2D micromachined thermal flow transducers. The scope is restricted to micromachined devices featuring a square-shaped membrane incorporating central symmetric thin-film devices. A microthermistor array probed spatial excess temperature variations while the main heat supply was alternatively established by optional heating resistors or by pronounced self-heating of the thermistor devices. Proper device designs enable leading edge transducer performance without sophisticated signal conditioning schemes. We found that a high azimuthal uniformity of flow magnitude transduction is tantamount to a precise azimuthal accuracy. The most advanced result gave a maximum azimuthal aberration of 0.17 and 1.7 degrees for 1 m/s and 10 m/s, respectively, while the corresponding magnitude uniformity amounted to 0.07% and 0.5%. Such excellent specifications exceed the need of ordinary meteorological applications by far. However, they are essential for, e.g., precise non-contact measurements of 2D relative movements of two quasi-planar surfaces via the related Couette flow in intermediate air gaps. The simulations predicted significantly better device characteristics than achieved by us in first experiments. However, this gap could be attributed to imperfect control of the flow velocity field by the measurement setup.
机译:本文报告了针对高精度2D微加工热流传感器的设计和仿真研究。该范围仅限于具有结合了中央对称薄膜设备的方形膜的微机械设备。当通过可选的加热电阻器或通过热敏电阻器件的明显自热来建立主要供热时,微热敏电阻阵列探测了空间过大的温度变化。正确的设备设计无需复杂的信号调理方案即可实现领先的传感器性能。我们发现,流量幅度转换的高方位角均匀性等于精确的方位角精度。最先进的结果分别是1 m / s和10 m / s的最大方位像差为0.17和1.7度,而相应的幅度均匀度分别为0.07%和0.5%。如此出色的规格远远超出了普通气象应用的需求。然而,它们对于例如通过中间气隙中的相关库埃特流对两个准平面表面的2D相对运动进行精确的非接触式测量至关重要。与我们在第一个实验中获得的结果相比,仿真预测的器件特性要好得多。但是,该间隙可能归因于测量设置对流速场的控制不完善。

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