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Comparison of Two Computational Methods for High-Velocity Cavitating Flows Around Conical Projectiles:OTi-HULL Hydrocode and Two-Phase Flow Method

机译:锥形弹丸周围高速空化流动的两种计算方法比较:OTi-HULL Hydrocode和两相流动方法

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摘要

We present a comparison between two CFD methods for the axisymmetric case: the hydrocode named OTi-HULL and the two-phase flow model presented in the Cocchi's thesis. These methods are applied to the calculation of a test case: a biconical body (nose cone with a cylindrical part and rear cone) at a velocity of 3000 m/s in water.Cocchi's results are comparable to the HULL ones outside the cavity, but inside the cavity the HULL results are wrong in temperature (too high) and in density (too low) compared to Cocchi's.For the cavity width, the results show an acceptable agreement between the twm methods for the cones with the half-angles of 45° and 30°. But for the 15° cone there are some discrepancies: the cavity is 10% larger for Cocchi's results in which the phase change of water in taken into account. These results have to be confirmed by experiments.
机译:我们对轴对称情况的两种CFD方法进行了比较:名为OTi-HULL的水力代码和Cocchi论文中提出的两相流模型。这些方法适用于测试用例的计算:在水中速度为3000 m / s的双圆锥体(具有圆柱部分的鼻锥和后锥).Cocchi的结果与腔外的HULL相当与Cocchi相比,空腔内的HULL结果在温度(太高)和密度(太低)上是错误的。对于空腔宽度,结果表明,对于半角为45°的圆锥体,twm方法之间的可接受的一致性°和30°。但是对于15°的圆锥体则存在一些差异:对于Cocchi的结果,腔体要大10%,其中考虑了水的相变。这些结果必须通过实验确认。

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  • 作者单位
  • 年度 2001
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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