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NUMERIC STUDY ON PROPELLANT LEAKAGE IN ATMOSPHERIC ENVIRONMENT

机译:大气环境中推进剂泄漏的数值研究

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Leakage risk management is very important for propellant storage because of its poisonousness. Numerical method was used to study the leakage, volatilization and dispersion of liquid propellant. The results of CFD (Computational Fluid Dynamics) simulation show that leaked liquid UDMH(unsymmetrical dimethylhydrazine) will jet on the ground under the pressure of storage tank and then it disperses forward slowly with the liquid film. Therefore, it is necessary to set a safety cofferdam around the storage tank. Based on the Gaussian dispersion model, the dispersion process of liquid propellant in pools under different atmospheric conditions was simulated. The results show that atmospheric stability and wind speed influence the risk distance after UDMH leaking. The less stability of atmosphere and lower wind speed , the longer the risk distance is. Hence, the field atmosphere condition should be considered when the risk distance is determined.
机译:由于其有毒性,泄漏风险管理对于推进剂储存非常重要。使用数值方法来研究液体推进剂的泄漏,挥发和分散。 CFD(计算流体动力学)模拟结果显示泄漏的液体UDMH(不对称二甲基肼)将在储罐压力下在地面上喷射,然后用液体膜缓慢分散。因此,有必要在储罐周围设置一个安全的围堰。基于高斯分散模型,模拟了不同大气条件下池中液体推进剂的分散过程。结果表明,大气稳定性和风速会影响UDMH泄漏后的风险距离。大气稳定性较小,风速较低,风险距离越长。因此,当确定风险距离时,应考虑现场气氛条件。

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