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Increasing evaporative cooler efficiency by controlling water pump run and off times

机译:通过控制水泵运行和关闭时间增加蒸发冷却器效率

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One of the major problems with using the evaporative coolers is reduction in cooling capacity and cooling efficiency in high humidities and insufficient cooling capacity at high temperatures. In this paper a method is introduced which increases the cooling capacity, especially at higher temperatures and also it could maintain the cooler efficiency in high humidity weather. In this method the water pump Instead of operate continuously, it works intermittently and a control unit with its sensors control the operation time by tracing changes in outlet air or pads condition. In evaporative coolers by switching off the water pump, though a slow increase in the outlet air temperature is expected, the temperature falls gradually which means the cooler cools the air down more efficiently. This phenomenon could be attributed to pads lower temperature due to evaporation of some portion of water on pad fibers. This method by using this missing character of the evaporative coolers, makes the cooler perform the same as the two-stage indirect/direct evaporative cooler; in the two-stage cooler, the already cooled air entered to a direct evaporative cooler but with this device the entered air encounters with pads that have already been cooled.
机译:使用蒸发冷却器的主要问题之一是在高湿度下降低冷却能力和冷却效率,并且在高温下的冷却能力不足。在本文中,引入了一种方法,这增加了冷却能力,尤其是在较高温度下,也可以在高湿度的天气中保持冷却器效率。在该方法中,水泵代替连续操作,它间歇地工作,并且通过追踪出口空气或焊盘条件的变化来控制操作时间。在通过关闭水泵的蒸发冷却器中,虽然预期出口空气温度缓慢增加,但温度逐渐降低,这意味着冷却器更有效地冷却空气。由于垫纤维上的一些水蒸发,这种现象可能归因于垫较低的温度。这种方法通过使用蒸发冷却器的这种缺失的特性,使得冷却器与两级间接/直接蒸发冷却器相同;在两级冷却器中,已经冷却的空气进入直接的蒸发冷却器,但是通过该装置进入的空气遇到已经冷却的垫。

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