首页> 外文会议>American Society of Mechanical Engineers(ASME) Joint U.S.-European Fluids Engineering Division Summer Conference 2006(FEDSM2006) vol.1 pt.B; 20060717-20; Miami, FL(US) >ACOUSTIC CAVITATION THERMODYNAMIC MODELING IN TRANSMISSION PIPELINES BY AN IMPLICIT CONSERVATIVE HIGH-RESOLUTION NUMERICAL ALGORITHM
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ACOUSTIC CAVITATION THERMODYNAMIC MODELING IN TRANSMISSION PIPELINES BY AN IMPLICIT CONSERVATIVE HIGH-RESOLUTION NUMERICAL ALGORITHM

机译:隐式守恒高分辨率数值算法在输配管道声空化热力学建模中的应用。

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A general treatment of acoustic cavitation for the case of one-dimensional pipe flows is presented, including both fluid dynamics instabilities, which can occur at cavitation inception, and non-equilibrium effects during bubble dynamics. Different approaches to cavitation modelling are also considered and compared.rnA novel barotropic cavitation model has been developed, based on the partial differential equations governing the mass conservation and momentum balance. The analytical expression for the vapour source term driving cavitation has been carried out by means of the energy conservation equation and a general formula for the sound speed in homogeneous bubbly flows has been used.rnA newly developed high-resolution, conservative, implicit, second-order accurate numerical scheme was applied to solve the Euler's hyperbolic equations governing the pipe flow. It gave reduced oscillation problems at the discontinuities that were induced by cavitation.rnThe resultant computational model was assessed through its application to a literature test-case, which involved a pipe connecting two constant-pressure reservoirs, water being the working fluid. The prediction outcomes were discussed so as to underline the most interesting fluid-dynamic phenomena, such as the dynamics of shock waves arising at cavitation collapse.rnThe influence of the frequency-dependent friction model on the simulation of the pressure wave dynamics in the presence of cavitation was also analysed.
机译:提出了一种针对一维管道流动的声空化的一般处理方法,包括空化开始时可能发生的流体动力学不稳定性和气泡动力学过程中的非平衡效应。还考虑并比较了不同的空化建模方法。在控制质量守恒和动量平衡的偏微分方程的基础上,开发了一种新型的正压空化模型。利用能量守恒方程对蒸气源项驱动空化进行了分析,并使用了均匀气泡流中声速的通用公式。为了解决控制管道流量的欧拉双曲方程,采用了阶次精确的数值格式。它减少了由气穴引起的不连续性引起的振荡问题。通过将其应用到文献测试案例中,评估了所得的计算模型,该案例涉及一条连接两个恒压储层的管道,水为工作流体。讨论了预测结果,以强调最有趣的流体动力学现象,例如在气蚀崩塌时产生的冲击波动力学。rn频率相关摩擦模型对存在压力时的压力波动力学模拟的影响还分析了气蚀现象。

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