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Non-matching grid interface treatment for the space-time conservation element and solution element method

机译:用于空时节约元件和解决方案元素方法的非匹配网格界面处理

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A conservative interface treatment for multi-block computation on structured quadrilateral grids using the space-time conservation element and solution element (CE/SE) method has been developed. In the CE/SE method, space and time are considered as a single entity, and both local and global flux conservation are preserved in the solution procedure. Thus, accurate and computationally-efficient numerical solutions can be achieved. However, if this method is applied to non-matching multi-block computational cases to evaluate the unsteadiness of the interaction, the space-time flux balance at the interface will be broken up. To resolve this problem, a novel technique is proposed for the exchange of information between the two sides of the interface. In this approach, Sub-conservation element, sub-solution element and local space-time conservation conditions near the interface can be established elaborately. Moreover, by taking full advantage of key concepts of the CE/SE method, it can enforce flux conservation across an interface between different blocks in a simple and efficient manner. Numerical experiments showed that, for a variety of flow problems involving oblique shock reflection, and laminar flow inside a lid-driven cavity, the interface treatment is valid to establish communications between two different blocks with preserving high-accuracy of CE/SE method and no discontinuity of any computed variable or pressure reflection occurred at this numerical interface.
机译:已经开发了一种使用时空节省节空元件和解决方案元素(CE / SE)的结构化四边形网格上的多块计算的保守界面处理。在CE / SE方法中,空间和时间被认为是单个实体,并且在解决方案过程中保留了本地和全局助护保存。因此,可以实现精确和计算上有效的数值解决方案。但是,如果该方法应用于非匹配的多块计算案例以评估交互的不稳定性,则界面处的时空通量平衡将被分解。为了解决这个问题,提出了一种新颖的技术,用于交换界面的两侧之间的信息。在这种方法中,可以精心建立界面附近的子保护元件,子解决区元件和局部空间节省状态。此外,通过充分利用CE / SE方法的关键概念,它可以以简单且有效的方式在不同块之间的接口上强制执行助焊剂。数值实验表明,对于涉及倾斜冲击反射的各种流动问题,以及盖子驱动腔内的层流,界面处理是有效的,以建立两个不同块之间的通信,以保持CE / SE方法的高精度,没有该数值接口发生任何计算机变量或压力反射的不连续性。

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