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Sonic Anemometer-Thermometer for General Use

机译:声波风速计-通用温度计

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The recently developed sonic anemometer-thermometer has many excellent characteristics which cannot be attained by traditional anemometers, and we can measure air temperature as well as wind velocity with the same sensor at the same time. But most of the examples developed in the past were aimed for the application to the study of micrometeorology in light winds. The present author has aimed to develop the sonic anemometer-thermometer for general purposes including storm observations. The system adopted is of the pulse-time difference method. It is decided to adopt this method because the instrument in this method is less affected by noises and has wide observational ranges. But the past instruments in this method had the fault that the timing of the receiving pulse becomes erroneous in case of decreasing of receiving power of the signal. This fault is covered in this case by adopting high efficient barium titaniate sound transducers and high gain amplifiers to get sharp rising of the receiving pulse wave forms. A new votlage analogue output circuit was developed for this instrument that enables to use various kinds of recorders. The shape of the sound head has great importance to attain good signal to noise ratio when wind direction coincides with sound path orientation in high winds. The shape of the head has been developed through wind tunnel experiments and the present one is not the final one but a temporary choise. It is found by the wind tunnel experiment that it does not work well if wind is stronger than 30m/sec along the sound path. But except such case the instrument has proved to work satisfactory well and to be easy to handle with. The sound frequency of the pulse is 100kc and pulse frequency is about 300 pulses per second. The attenuation of short period changes on the records caused by the line averaged character of the sensor is also discussed in this paper.
机译:最近开发的声速风速计-温度计具有许多传统风速计无法达到的出色特性,并且我们可以同时使用同一传感器测量空气温度和风速。但是,过去开发的大多数示例都旨在将其应用于微风中的微气象学研究。本发明人的目的是开发包括风暴观测在内的通用的风速计-温度计。采用的系统是脉冲时间差法。之所以决定采用这种方法,是因为这种方法的仪器受噪声的影响较小,并且观察范围广。但是,该方法中的过去的仪器具有在信号的接收功率降低的情况下接收脉冲的定时变得错误的缺点。在这种情况下,可以通过采用高效的钛酸钡声音换能器和高增益放大器来弥补接收故障脉冲波形的急剧上升。为此仪器开发了一种新的电压模拟输出电路,可以使用各种记录仪。当风向与强风中的声径方向一致时,声头的形状对于获得良好的信噪比非常重要。头部的形状已经通过风洞实验得到了发展,现在的不是最终的,而是临时的选择。风洞实验发现,如果风沿声音路径的强度大于30m / sec,则效果不佳。但是除这种情况外,该仪器已被证明能令人满意地工作并且易于操作。脉冲的声频为100kc,脉冲频率约为每秒300个脉冲。本文还讨论了由传感器的线平均特性引起的记录上短期变化的衰减。

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