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Experimental study of air dehumidification in an electrostatic wire-cylinder condenser

机译:静电线缸冷凝器空气除湿的实验研究

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Usually, to reduce the air humidity and to retain the water which is present in the air, the phase change heat exchangers are used. The operation of such a device involves the condensation of water vapor with a condenser whose temperature is maintained below the dew point. Depending of the nature of the application, the energy used for condenser cooling can reach important values. This paper is focused on the experimental study of the corona discharge influence on the air dehumidification process in a simple electrostatic wire-cylinder condenser. The principle of an electrostatic enhanced condenser is to use the corona discharge effects like electrostatic forces acting on the polar water molecules and electroaerodynamic induced flow in view to increase the water condensation rate on the cooled element. The experiments were performed on a set-up containing a wire-cylinder condenser with adjustable temperature. The preliminary results indicate that the corona discharge increase the water condensation rate and the efficiency of the studied condenser.
机译:通常,为了减少空气湿度并保留存在于空气中的水,使用相变热交换器。这种装置的操作涉及水蒸气与冷凝器的冷凝,其温度保持在露点下方。根据应用的性质,用于冷凝器冷却的能量可以达到重要的值。本文专注于电晕放电对简单静电线缸冷凝器中空气除湿过程的实验研究。静电增强冷凝器的原理是使用作用在极性水分子上的静电力和电流动力诱导流动的电晕放电效应,以增加冷却元件上的水冷凝率。在包含具有可调节温度的线缸冷凝器的设定上进行实验。初步结果表明电晕放电增加了水冷凝率和研究的冷凝器的效率。

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