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Experimental investigation of temperature effect on hydrodynamic characteristics of natural cavitation in rotational supercavitating evaporator for desalination

机译:旋转超渗透蒸发器天然空穴水动力特性温度效应的实验研究

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Increasing temperature is proposed to improve the performance of Rotational Supercavitating Evaporator (RSCE, a novel supercavitation-based desalination device). In order to investigate the temperature effect on the hydrodynamic characteristics of RSCE, visualization experiments are conducted on cavitating flows at different water temperatures (25-50 degrees C) in RSCE under different rotational speeds (up to 4000 r/min). Then the thermodynamic effect of cavitation in the water at different temperatures is evaluated to obtain the temperature range suitable for the operation of RSCE. Results show that the spatiotemporal evolutions of cavitation at different water temperatures are similar and the cavitation intensity increases with increasing temperature. Combining the present experimental results with revisits to the published results, four criteria are put forward to evaluate the thermodynamic effect of cavitation, including the variation of dimensionless supercavity length with cavitation number, the variation of incipient cavitation number with temperature, the appearance of cavitation, and the threshold value of thermodynamic parameter (Sigma) of order hundred. It can be deduced by these criteria that the thermodynamic effect of cavitation in the water is insignificant within the temperature range considered in the present work. Hence, the desalination performance of RSCE can be improved by increasing temperature within above temperature range. (C) 2021 Elsevier Ltd. All rights reserved.
机译:提出了提高温度以改善旋转超级渗透蒸发器的性能(RSCE,基于新型超级渗流的脱盐装置)。为了研究对RSCE的流体动力学特性的温度效应,在不同的旋转速度下在RSCE的不同水温(25-50℃)的空气温度(25-50℃)的空气流动下进行可视化实验(高达4000 r / min)。然后评估水中空化的热力学效果,以获得适合于RSCE操作的温度范围。结果表明,不同水温下空化的时空演进性相似,气相强度随温度的增加而增加。将目前的实验结果与Revisits联合起来,提出了四个标准来评估空化的热力学效果,包括空化数的无量子超宽度长度的变化,初生空化数与温度的变化,空化的外观,和订单百次热力学参数(Sigma)的阈值。它可以推断出这些标准,即空化在水中的热力学效果在本工作中考虑的温度范围内微不足道。因此,通过在高温范围内提高温度,可以提高RSCE的脱盐性能。 (c)2021 elestvier有限公司保留所有权利。

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