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Modeling and simulation of cavitation in hydraulic pipelines based on the thermodynamic and caloric properties of liquid and steam

机译:基于液体和蒸汽的热力学和热学性质的液压管道中空化现象的建模和仿真

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摘要

The present paper focuses on a homogeneous cavitation model based on the thermodynamic equilibrium model of liquid and steam, which has significant importance for the development of modern hydraulic tools and injection systems. Subsequent to the derivation of the mathematical model a numerical method is described. Computations are carried out for a variety of test cases. The results are compared with analytic solutions, experimental data, and simulations obtained with a different numerical scheme. The investigation proves the ability of the method to predict cavitation in hydraulic pipelines in a reliable and successful manner. The lucidity of the procedure enables a simple extension of the model and the numerical method to higher space dimensions as well as applications in the context of complex hydraulic systems.
机译:本文着重研究基于液体和蒸汽热力学平衡模型的均相空化模型,这对现代液压工具和喷射系统的开发具有重要意义。在推导数学模型之后,描述了一种数值方法。针对各种测试用例进行计算。将结果与解析解决方案,实验数据和使用不同数值方案获得的模拟进行比较。研究证明了该方法能够可靠而成功地预测液压管道中的气蚀现象。程序的清晰性使模型和数值方法可以简单地扩展到更大的空间尺寸,以及在复杂液压系统中的应用。

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