首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >NUMERICAL SIMULATION OF PARACHUTE INFLATION PROCESS USING AN OVERSET DEFORMING GRIDS METHOD
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NUMERICAL SIMULATION OF PARACHUTE INFLATION PROCESS USING AN OVERSET DEFORMING GRIDS METHOD

机译:基于过度变形网格法的数值模拟对盗版过程的数值模拟

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摘要

A numerical method for the simulation of parachute inflation process is presented in this paper. The unsteady compressible N-S equations are fully coupled with MSD (Mass Spring Damper) structure model and integrated forward in time. The CFD solver is based on an unstructured finite volume algorithm and the preconditioning technique is applied to alleviate the stiffness caused by low Mach number. The Spalart-Allmaras one-equation turbulence model is implemented to evaluate the turbulent viscosity. The whole system (fluid equations and st ructural model equations) is marched implicitly in time using a dual time stepping method. An overset deforming grids method is adopted in this paper to deal with the very large domain deformation during the parachute inflation process. Finally numerical test is performed to validate the robustness of this method.
机译:提出了一种模拟降落伞充气过程的数值方法。非定常可压缩N-S方程与MSD(质量弹簧阻尼器)结构模型完全耦合,并及时向前整合。 CFD求解器基于非结构化有限体积算法,并且采用预处理技术来缓解由低马赫数引起的刚度。实施了Spalart-Allmaras一方程湍流模型来评估湍流粘度。整个系统(流体方程和结构模型方程)使用双重时间步长方法隐式地按时间行进。本文采用了一种覆盖变形的网格方法来处理降落伞膨胀过程中非常大的区域变形。最后进行了数值测试,验证了该方法的鲁棒性。

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