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SIMULATION OF HYDRAULIC PIPELINE PRESSURE TRANSIENTS ACCOMPANYING CAVITATION AND GAS BUBBLES USING MATLAB/SIMULINK

机译:利用MATLAB / SIMULINK模拟伴随气蚀和气泡产生的液压管道压力瞬变

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摘要

In order to predict pressure transients accompanying cavitation and gas bubbles in hydraulic pipeline operating at low pressure, a mathematical model and a simulation method are studied. The mathematical model is based on the two basic equations of motion and continuity. The growing and collapsing of cavitation and gas bubbles accompanying pressure pulsations are modelled to calculate the volumes of cavitation and gas bubbles. The pipeline dynamic friction model is introduced. Meanwhile, a simulation method, using finite difference method and Matlab/Simulink platform, is developed to handle the prediction of pressure transients. Finally an example of fluid transients inside hydraulic pipeline is simulated after a downstream valve is closed rapidly. Simulation results show that, for a certain example pipeline, the mathematical model can handle the prediction of pressure transients accompanying cavitation and gas bubbles in low pressure pipeline. The use of combining finite difference method with Matlab/Simulink platform provides a relatively simple and effective tool to understand the nature of pressure transients accompanying cavitation and gas bubbles.
机译:为了预测在低压下运行的液压管道中伴随气蚀和气泡的压力瞬变,研究了数学模型和模拟方法。该数学模型基于运动和连续性的两个基本方程式。对伴随压力脉动的空化和气泡的生长和破裂进行建模,以计算空化和气泡的体积。介绍了管道动摩擦模型。同时,开发了一种使用有限差分法和Matlab / Simulink平台的模拟方法来处理压力瞬变的预测。最后,在快速关闭下游阀门后,模拟了液压管道内流体瞬变的一个例子。仿真结果表明,对于某些示例管道,该数学模型可以处理伴随低压管道中的气蚀和气泡而引起的压力瞬变的预测。将有限差分法与Matlab / Simulink平台结合使用可提供一种相对简单有效的工具,以了解伴随空化和气泡的压力瞬变的性质。

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