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Analysis of the angular sensitivity of an innovative particle velocity sensor

机译:创新粒子速度传感器角度敏感性分析

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In this paper a novel micromachined acoustic sensor consisting of four heated wires is analyzed theoretically and experimentally. The presence of the chip surface of the probe in the vicinity of the wires influences the local fluid flow, while it also affects the temperature distribution in the probe by altering the direction of heat transport. Both effects result into a specific angular dependence of the sensor sensitivity. To explain this specific directionality of the sensitivity, an analytical model is presented that describes both the air flow around the probe and the temperature profile around the heated wires. Acoustic flow measurements on the probe sensitivity are compared with the theory and with numerical simulations on the device, showing good qualitative and quantitative correspondence.
机译:在本文中,理论上和实验地分析由四根加热线组成的新型微机械声学传感器。在线附近的探针的芯片表面的存在影响局部流体流动,而通过改变热传输方向也影响探头中的温度分布。这两种效果都导致传感器灵敏度的特定角度依赖性。为了解释灵敏度的这种特定方向性,提出了一种描述探头周围的空气流的分析模型和围绕加热的线的温度曲线。对探测灵敏度的声学流量测量与理论进行比较,并在设备上进行数值模拟,显示出良好的定性和定量对应。

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