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A hydrophysical laser-interference complex

机译:水物理激光干扰复合体

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摘要

An upgraded laser measurer of hydrosphere pressure variations is described. By mounting new pressure and temperature sensors and optimizing the design of the submersible instrument, it has become possible to considerably increase the measurement accuracy of amplitude-frequency characteristic describing variations in the pressure, aqueous medium temperature, and wave amplitudes at the sea surface in the infrasonic and audio ranges and to correct plotted time dependences of the pressure variations in view of the variations in the interferometer and outboard water temperatures. For long-term (up to 40 h) self-contained operation of the complex to be guaranteed, a versatile floating container has been developed. This container is equipped with high-power batteries and data acquisition systems receiving information from the sensors and can be joined to a hermetically sealed connector of the complex instead of the cable line used for communication between the complex and coast equipment.
机译:描述了一种升级的水圈压力变化的激光测量仪。通过安装新的压力和温度传感器并优化潜水器的设计,可以显着提高幅频特性的测量精度,该幅频特性描述了压力,含水介质温度和海面海面波幅的变化。次声和音频范围,并根据干涉仪和舷外水温的变化来校正压力变化的绘制时间依赖性。为了保证复合体的长期(最多40小时)独立运行,已开发了一种多功能的浮动容器。该容器配备有大功率电池和数据采集系统,可从传感器接收信息,并且可以连接到建筑物的气密连接器,而不是用于建筑物和海岸设备之间通信的电缆线。

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