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A Thermal Anemometer for the Mars Meteorological Sensor Network

机译:火星气象传感器网络的热风速计

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Details of the design and simulation of a thermal micro anemometer intended for Mars meteorological measurements are presented. The device consists of a double sided anemometer formed on thermal isolation aerogel. Thermal input to the device is provided by a set of Pt hot films distributed evenly in an octagonal area of an AIN substrate. A thin film resistance-temperature detector (RTD) is coupled to the edge of each heater for temperature reading as the thermal distribution on the substrate changes with wind speed and direction. Finite element modeling of the device showed that the temperature gradient between the upstream and downstream RTDs increases with increasing distance from the hot film and decreases with increasing wind speed. Evaluation of the device transfer function suggested that it could be suited for measuring wind speeds of up to 60 m/s with a resolution in the order of 1 m/s. These characteristics are comparable with the requirements of past Mars missions. The configuration of the device allows also the evaluation of the out-of-plane component of wind speed and of the wind direction. It was found that quadratic fitting function based on the highest temperature readings of the distributed RTDs could be used to determine more accurately the wind direction.
机译:介绍了用于火星气象测量的微型热风速计的设计和仿真细节。该设备包括一个在隔热气凝胶上形成的双面风速仪。一组Pt热膜均匀地分布在AIN基板的八边形区域中,从而为器件提供热输入。薄膜电阻温度检测器(RTD)耦合到每个加热器的边缘以读取温度,这是因为基板上的热分布随风速和风向而变化。该装置的有限元建模表明,上游和下游RTD之间的温度梯度随着与热膜距离的增加而增加,而随风速的增加而降低。对设备传递函数的评估表明,它可能适合于测量高达60 m / s的风速,分辨率约为1 m / s。这些特征可以与过去的火星飞行任务相媲美。设备的配置还允许评估风速和风向的平面外分量。已经发现,基于分布式RTD的最高温度读数的二次拟合函数可用于更准确地确定风向。

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