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Research on the Rapid Closing Jet Mechanism of Pistol Shrimp’s Claws Based on Fluid Dynamic Grid

机译:基于流体动力电网的手枪虾爪快速关闭闭合喷射机理研究

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The predation behavior of the pistol shrimp is extremely special, and the predation process will produce a huge popping sound, which has caused extensive research by scholars from all over the world. This article carried out a study on the rapid closing jet mechanism of pistol shrimp’s claws. A theoretical model, based on the hydrodynamic characteristics of seawater and the theory of fluid-structure coupling, was proposed for the interaction between the claws and seawater. A simulation model was established using the finite volume software Fluent, and the rapid closing jet mechanism of pistol shrimp’s claws was verified by using fluid dynamic grid. This article studied the influence of different fluid models on the simulation results. The effects of the claws’ closing angular velocity and angular acceleration on the interaction between the claws and seawater were analyzed, which provides a theoretical basis for the development of new underwater kinetic energy weapons.
机译:手枪虾的捕食行为极为特殊,捕食过程将产生一个巨大的流行声,这引起了来自世界各地的学者的广泛研究。 本文对手枪虾爪的快速关闭射流机制进行了研究。 基于海水的流体动力学特征和流体结构耦合理论的理论模型,提出了爪子和海水之间的相互作用。 使用有限卷软件流畅建立仿真模型,通过使用流体动力电网验证手枪虾爪的快速关闭射流机制。 本文研究了不同流体模型对仿真结果的影响。 分析了爪子闭合角速度和角度加速对爪子和海水之间相互作用的影响,为新的水下动能武器提供了理论依据。

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