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Prediction of Pyroshock-Reduced Separation Nut Behaviors

机译:减少火鸡的分离螺母行为的预测

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In this work,an efficient model is proposed to predict the complicated coupling behavior of a pyroshock-reducedseparation nut,which has two variable-volume chambers connected by the vent hole. The model considers the effect ofmutual interactions between combustion products and internal moving parts of the separation nut. To accomplishthis,governing equations for combustion modeling are systematically derived,assuming that the flowfield within eachchamber is homogeneous. For internal moving parts of the separation nut,the equations of motion are constructed.The equations are used to construct a coupled model. The behavior of the model from solving the system of differentialequations is obtained,based on the Dormand-Prince embedded Runge-Kutta method. To validate the model,itsbehavior is compared with the test results of an actual prototype. Furthermore,modeling effects of the condensedphase product and initial air are investigated,and their significance in combustion modeling is identified. Parametricstudies are then carried out to investigate the effects of the design parameters on the separation behavior. The resultsindicate that the model could be used efficiently in the design of separation nuts.
机译:在这项工作中,提出了一个有效的模型来预测热震减小分离螺母的复杂耦合行为,该螺母具有两个通过排气孔连接的可变容积腔。该模型考虑了燃烧产物与分离螺母内部运动部件之间相互作用的影响。为此,假设每个腔室内的流场是均匀的,系统地推导了用于燃烧建模的控制方程。对于分离螺母的内部运动部件,构造了运动方程。这些方程用于构造耦合模型。基于Dormand-Prince嵌入式Runge-Kutta方法,通过求解微分方程组获得了模型的行为。为了验证模型,将其行为与实际原型的测试结果进行比较。此外,研究了冷凝相产物和初始空气的建模效果,并确定了它们在燃烧建模中的意义。然后进行参数研究以研究设计参数对分离行为的影响。结果表明该模型可以有效地用于分离螺母的设计。

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