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On the coupling of a zonal body-fitted/immersed boundary method with ZDES: Application to the interactions on a realistic space launcher afterbody flow

机译:ZDES Znal Body-Pited /浸没边界法的耦合:应用于BAYSTIMS流动后现实空间发射器的交互

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摘要

One of the next foreseen challenges in CFD consists in the capability to simulate quantitatively the spectral content of the turbulent flow around realistic geometries. In this context, the present work focuses on a new methodology named ZIBC standing for Zonal Immersed Boundary Conditions enabling to account for complex configurations at high Reynolds numbers. The numerical strategy allowing the coupling between a turbulence modeling method (e.g. RANS, URANS, ZDES, LES or DNS) and IBC (Immersed Boundary Conditions) is detailed. In this paper, the modeling method retained is the Zonal Detached Eddy Simulation (ZDES) which has reached a high level of maturity on turbulent separated flow simulations. This methodology is applied to a full space launcher configuration to assess its capability to return the interactions between the technological details, modeled with IBC, and the simplified afterbody, modeled with a body-fitted (BF) approach consisting in classical no-slip boundary conditions, in the turbulent flow field surrounding the main stage of the space launcher afterbody. The proposed method is thoroughly assessed on a realistic geometry of the European Ariane 5 launcher and the ZIBC simulation is successfully compared with the available experiments. (C) 2017 Elsevier Ltd. All rights reserved.
机译:下一个关于CFD的预见挑战之一包括在现实几何形状周围的湍流的定量谱含量的能力中。在这种情况下,目前的工作侧重于名为ZIBC的新方法,该方法代表ZIBC驻扎的沉浸式边界条件,使得能够以高雷诺数的复杂配置计算。详细涉及湍流建模方法(例如Rans,uran,Zdes,Les或DNS)和IBC(浸没边界条件)之间的耦合的数值策略。在本文中,保留的建模方法是湍流分离流模拟达到高水平成熟度的区域脱离涡流模拟(ZDE)。该方法应用于完整的空间发射器配置,以评估其能力返回技术细节之间的交互,与IBC建模,以及用在经典无滑移边界条件中组成的身体装配(BF)方法的简化体内模型,在围绕空间发射器的主级的湍流场中。该方法在欧洲Ariane 5发射器的现实几何形状上进行了彻底评估,并将ZIBC仿真与可用实验相比成功。 (c)2017 Elsevier Ltd.保留所有权利。

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