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Temperature and cavitation

机译:温度和空化

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摘要

Pressure, density, and temperature are the fundamental thermodynamic parameters. In a liquid flow field, once the local pressure drops to the saturated pressure, the liquid vapourizes and local cavitation occurs. The cavitation region of the flow is characterized by a mixture of liquid and vapour. Vapourization is an endothermic process. However, in the literature of the past several decades, this vapourization induced thermal effect was sometimes ignored in cavitating flows, and the temperature was always assumed as a constant in the whole flow field. In order to gain a deep insight into the mechanism of cavitation, temperature effects of cavitation are hereby investigated in this paper. An appreciable temperature drop has been found when cavitation occurs, which suggests that thermal effects in cavitating flows from the view of thermodynamics may be of great value to understand the mechanism of cavitation. [PUBLICATION ABSTRACT]
机译:压力,密度和温度是基本的热力学参数。在液体流场中,一旦局部压力下降到饱和压力,液体就会蒸发并发生局部气蚀。流的空化区域的特征在于液体和蒸气的混合物。汽化是一个吸热过程。但是,在过去的几十年的文献中,这种气化诱导的热效应有时在空化流中被忽略,并且在整个流场中始终假定温度为常数。为了深入了解空化机理,本文研究了空化的温度效应。当发生空化时,已经发现明显的温度下降,这表明从热力学的角度来看,空化流中的热效应对于理解空化的机理可能具有重要的价值。 [出版物摘要]

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