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推力对高速入水流场特性影响
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V21

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国家自然科学基金资助项目(11172241);西北工业大学基础科研基金资助项目(NPU-FFR-1015)


The Influence of the Thrusting Force on the Characters of the High-Speed Flow Field
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    摘要:

    采用商用CFD软件FLUENT 6.3,建立了求解带自然空化的水、气、汽三相流场,用UDF来解算并控制导弹运动,实现了考虑自然空化和弹体多自由度运动响应的高速入水非定常流场数值计算。多相流模型采用Mixture模型,湍流模型采用标准[WTBX]k-ε[WTBZ]模型,压力速度耦合方式和离散方法分别为SIMPLE和Standard,动网格更新方式采用Layering方式。内嵌的UDF可以实时输出弹体受力和运动参数。采用流场-弹道耦合算法数值模拟了回转体外形导弹以20°入水角入水时的高速入水流场,分析并获得了推力对入水空泡和自然空泡的产生、变化发展过程以及弹体流体动力的影响规律。

    Abstract:

    By using the commercial CFD software Fluent 6.3, the three-phase (water, air, vapour) flow field with natural cavitation was established. The UDF was used to resolve and control the missile's movement. It realized the numerical calculation of unsteady high-speed water-entry flow field, which consider natural cavitation as well as the missile's multiple degree of free movement. The Mixture was adopted as the multi-phase model; and the stand [WTBX]k-ε[WTBZ] model was used as the turbulence model; and SIMPLE and Standard were used as pressure-velocity coupling method and discretizaion method respectively. The Layering was adopted as the dynamic mesh updating method and the UDF can output the parameters real time. In this paper, the missile high-speed water-entry flow field with 20° angle was simulated and analyzed, and the influence of the thrusting force on cavity development and the missile hydrodynamics were gained.

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朱珠,袁绪龙,王亚东.推力对高速入水流场特性影响[J].空军工程大学学报,2014,(1):10-14

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  • 在线发布日期: 2015-11-17
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