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Simulation of Cavitation and Pressure Surge: An Engineering Approach

机译:空化和压力波动的模拟:一种工程方法

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摘要

The prediction of the magnitude of the pressure surge in aircraft fuel systems is important from the standpoint of designing systems that will not exceed the maximum surge pressure allowed and also to determine the limit pressure so that lightweight systems can be designed. Because aircraft refueling systems are relatively low pressure, the formation of gaseous products, cavitation, introduces severe nonlinearity not only in the form of dampened pressures but also in decreased propagation speed. The linear relation between the bulk modulus, pressure, and density that exists in high-pressure systems is made nonlinear by the formation of gases. This paper describes a simulation method for predicting the pressure surge in aircraft fuel systems that is suitable for engineering purposes. A model for gas formation has been developed. The dynamic simulation is a relatively fine, one-dimensional, discrete distribution of the fluid solved with MacCormack's predictor corrector technique. Simulation results are compared to actual fuel rig tests. There is a step-by-step description of how the simulation model was tuned to correlate with the measured data. After this, some practical uses of the model, actual simulations used for fuel system design, are presented.
机译:从设计不会超过允许的最大喘振压力的系统以及确定极限压力以便能够设计轻型系统的角度出发,预测飞机燃油系统中压力喘振的幅度非常重要。由于飞机加油系统的压力相对较低,气态产物气穴的形成不仅会以衰减的压力形式而且会以降低的传播速度引入严重的非线性。通过形成气体使高压系统中存在的体积模量,压力和密度之间的线性关系非线性。本文介绍了一种适用于工程目的的预测飞机燃油系统压力波动的仿真方法。已经开发出用于气体形成的模型。动态模拟是通过MacCormack的预测器校正器技术求解的相对精细的一维离散流体分布。仿真结果与实际的燃料钻机测试进行了比较。逐步说明了如何将仿真模型调整为与测量数据相关。此后,介绍了该模型的一些实际用途,以及用于燃料系统设计的实际模拟。

著录项

  • 来源
    《Journal of Aircraft》 |2013年第4期|1038-1045|共8页
  • 作者

    Hans Ellstroem; Hampus Gavel;

  • 作者单位

    Modeling and Simulation, Vehicle Systems Department, Saab Aeronautics, 581 88 Linkoeping, Sweden;

    Modeling and Simulation, Vehicle Systems Department, Saab Aeronautics, 581 88 Linkoeping, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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