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Design of micro-fabricated thermal flow-rate sensor for water network monitoring

机译:用于水网络监测的微制造热流量传感器的设计

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We report on micro-machined flow-rate sensors as part of autonomous multi-parameter sensing devices for water network monitoring. Three different versions of the flow-rate sensors have been designed, fabricated and experimentally characterized. Those sensors are made of identical micrometric platinum resistors deposited on two different substrates-glass and silicon with and without insulation layer. The sensors were tested under the anemometric operating scheme. They were characterized under a water velocity range from 0 to 3.68 m/s. We highlight the fact that the glass substrate device is more sensitive and less power-consuming than the silicon one under the identical operating condition, which requires further design strategies when using silicon as the substrate material. Experimental results are analyzed with respect to CFD simulations with the Finite Element Method.
机译:我们报告了微机器流量传感器,作为用于水网络监测的自主多参数传感装置的一部分。设计,制造和实验表征了三种不同版本的流量传感器。这些传感器由沉积在两个不同的基板和硅的相同微米铂电阻器制成,具有和不具有绝缘层。在水平测量操作方案下测试传感器。它们的特征在于0至3.68 m / s的水速度范围。我们突出了玻璃基板装置在相同的操作条件下比硅更敏感且耗能较低的事实,这需要在使用硅作为基板材料时进一步的设计策略。通过有限元方法对CFD模拟进行分析实验结果。

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