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A 1D/Quasi-3D Coupled Model for the Simulation of I.C. Engines: Development and Application of an Automatic Cell-Network Generator

机译:用于仿真的1D / QUASI-3D耦合模型。发动机:自动细胞网发电机的开发和应用

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Nowadays quasi-3D approaches are included in many commercial and research 1D numerical codes, in order to increase their simulation accuracy in presence of complex shape 3D volumes, e.g. plenums and silencers. In particular, these are regarded as valuable approaches for application during the design phase of an engine, for their capability of predicting non-planar waves motion and, on the other hand, for their low requirements in terms of computational runtime. However, the generation of a high-quality quasi-3D computational grid is not always straightforward, especially in case of complex elements, and can be a time-consuming operation, making the quasi-3D tool a less attractive option. In this work, a quasi-3D module has been implemented on the basis of the open-source CFD code OpenFOAM and coupled with the 1D code GASDYN. The flexible OpenFOAM platform has been exploited for the development of both the quasi-3D cell-network generator and the implementation of the non-linear explicit quasi-3D solver. The grid generator is based on a fully automatic strategy, which takes as input the definition of the geometry in STL format. It works in two steps, firstly creating a refined background mesh, including all the small details of the geometry, and then agglomerating the cells, reducing the number of elements, in order to reach the desired cell density. The implemented quasi-3D solver, relies on a high accuracy numerical method specifically developed for working on such a coarse grid and it is adopted for the solution of the 3D domain. The coupled 1D/quasi-3D simulation tool has been firstly validated considering different silencer configurations, comparing the computed Transmission Loss with experimental values. Then, as further step of the validation, an entire engine configuration, including complex intake and exhaust systems, has been simulated. Furthermore, the performances of the quasi-3D numerical method are compared with those of a standard CFD solver, with particular focus on the numerical accuracy and computational burden of the two approaches.
机译:如今,许多商业和研究1D数值代码包括在许多商业和研究中,以在复杂的3D体积存在下提高其模拟精度,例如,增加它们的模拟精度。增压员和消音器。特别地,这些被认为是在发动机的设计阶段期间应用的有价值的方法,以便它们预测非平面波动动的能力,另一方面,在计算运行时以低要求的要求。然而,高质量的准3D计算网格的产生并不总是直截了当的,特别是在复杂的元件的情况下,并且可以是耗时的操作,使得准3D工具更具吸引力的选择。在这项工作中,基于开源CFD代码OpenFoam并与1D码Gasdyn耦合,已经实现了一种准3D模块。灵活的OpenFoam平台已被利用用于开发准3D单元网络生成器和非线性显式准基本求解器的实现。电网发生器基于完全自动策略,它以STL格式输入几何图形的定义。它在两个步骤中工作,首先创建精制的背景网格,包括几何形状的所有小细节,然后凝聚细胞,减少元素的数量,以达到所需的细胞密度。所实现的准3D求解器依赖于专门开发用于在这种粗网格上工作的高精度数值方法,并且采用用于3D域的解决方案。已经首先考虑了不同的消音器配置验证了耦合的1D / Quasi-3D仿真工具,比较了使用实验值的计算传输丢失。然后,作为验证的进一步步骤,已经模拟了整个发动机配置,包括复杂的摄入和排气系统。此外,与标准CFD求解器的比较了准3D数值方法的性能,特别侧重于两种方法的数值精度和计算负担。

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