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Measurement base for mine ventilation flow rate control-acoustic choice

机译:矿井通风流量控制的测量基地-声学选择

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The selection of the measurement base for underground mines Ventilation regimes control includes the choice of the devices for measuring of the velocities and airgas flow rates. The resolution of this task is rather difficult. The tachometric sensors, traditionally used in many countries (Grate Leonardo's invention) have big number of disadvantages: low sensitivity, high inertia, impossibility to cover necessary measurement range. Presence of movable accumulating error parts, vulnerability to dust affect and others. The usage of the tachometric anemometers in spite of the named above disadvantages confirms the difficulty of the modern technical level anemometer creation. About hundred years the attempts to create thermoanem-ometers continue, somewhere successfully, but not in mining. There are some very deep physical reasons of very slow progress in this two directions. The present report is devoted to the new acoustic devices elaborated in Moscow State Mining University. Acoustics anemometers are free of all named above disadvantages: unsurpassed sensitivity, time lag freedom, big range for velocity and flow rate measurements. They do not contain movable parts, sensitive to the direction of the stream and not sensitive to the coal dust.
机译:地下矿山测量基础的选择通风状态控制包括选择用于测量速度和气体流速的设备。解决该任务相当困难。传统上在许多国家/地区使用的转速传感器(格伦·莱昂纳多的发明)具有许多缺点:灵敏度低,惯性大,无法覆盖必要的测量范围。存在可移动的累积错误零件,易受灰尘影响等。尽管具有上述缺点,但仍使用转速测速仪,这证实了现代技术水平的风速仪制造的困难。大约一百年来,创建温度测温仪的尝试一直在成功的某个地方继续进行,但没有在采矿中进行。这是两个非常缓慢的进展的深层物理原因。本报告致力于莫斯科国立矿业大学研制的新型声学设备。声学风速仪没有上述所有缺点:无与伦比的灵敏度,时滞自由度,大范围的速度和流量测量。它们不包含可移动部件,它们对流的方向敏感,对煤尘不敏感。

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