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DEVELOPMENT OF A FAST FLUID DYNAMICS MODEL BASED ON PISO ALGORITHM FOR SIMULATING INDOOR AIRFLOW

机译:基于PISO算法模拟室内气流的快速流体动力学模型的开发

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Real-time or faster-than-real-time flow simulation is crucial for studying airflow and heat transfer in buildings, such as building design, building emergency management and building energy performance evaluation. Computational Fluid Dynamics (CFD) with Pressure Implicit with Splitting of Operator (PISO) or Semi-Implicit Method for Pressure Linked Equations (SIMPLE) algorithm is accurate but requires great computational resources. Fast Fluid Dynamics (FFD) can reduce the computational effort but generally lack prediction accuracy due to simplification. This study developed a fast computational method based on FFD in combination with the PISO algorithm. Boussi-nesq approximation is adopted for simulating buoyancy effect. The proposed solver is tested in a two-dimensional case and a three-dimensional case with experimental data. The predicted results have good agreement with the experimental results. In the two test cases, the proposed solver generates lower Root Mean Square Error (RMSE) compared to the FFD and at the same time, the proposed method reduces computational cost by a factor of 10 and 13 in the two cases compared to CFD.
机译:实时或更快的实时流动模拟对于研究建筑物的气流和热传递至关重要,例如建筑设计,建筑物应急管理和建筑能源性能评估。具有压力隐含的计算流体动力学(CFD)具有拆分操作者(PISO)或压力链接方程的半隐式方法(简单)算法是准确的,但需要很大的计算资源。快速流体动力学(FFD)可以降低计算工作,但通常由于简化而缺乏预测准确性。本研究开发了一种基于FFD的快速计算方法与PISO算法组合。采用Boussi-nesq近似用于模拟浮力效应。所提出的求解器在二维壳体和实验数据的三维壳体中进行测试。预测结果与实验结果吻合良好。在两个测试用例中,与FFD相比,所提出的求解器产生较低的根均方误差(RMSE),并且该方法在两种情况下将计算成本降低了与CFD相比的两种情况的10%和13。

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