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CFD simulation of stratified indoor environment in displacement ventilation: Validation and sensitivity analysis

机译:置换通风中分层室内环境的CFD模拟:验证和敏感性分析

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Knowledge of temperature stratification in indoor environments is important for occupant thermal comfort and indoor air quality and for the design and evaluation of displacement ventilation systems. This paper presents a detailed and systematic evaluation of the performance of 3D steady Reynolds-Averaged Navier Stokes (RANS) CFD simulations to predict the temperature stratification within a room with a heat source and two ventilation openings. The indoor air quality within the room is also investigated by assessing the distribution of the age of air. The evaluation is based on validation with full-scale measurements of air temperature. A sensitivity analysis is performed to investigate the impact of computational grid resolution, turbulence model, discretization schemes and iterative convergence on the predicted temperatures and age of air. The results show that steady RANS with the SST k-omega model can accurately predict the temperature stratification in this particular indoor environment. However, of the five commonly used turbulence models, only the SST k-omega model and the standard k-omega model succeed in reproducing the thermal plume structure and the associated thermal stratification, while the three k-epsilon models clearly fail in doing so. In addition, the iterative convergence criteria have a major impact on the predicted age of air, where it is shown that very stringent criteria in terms of scaled residuals are required to obtain accurate results. These required criteria are much more stringent than typical default settings. This paper is intended to contribute to improved accuracy and reliability of CFD simulations for displacement ventilation assessment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:室内环境中温度分层的知识对于居住者的热舒适性和室内空气质量以及置换通风系统的设计和评估非常重要。本文对3D稳定雷诺平均Navier Stokes(RANS)CFD仿真的性能进行了详细而系统的评估,以预测具有热源和两个通风口的房间内的温度分层。还通过评估空气年龄的分布来调查室内的室内空气质量。该评估基于对空气温度的全面测量的验证。进行了敏感性分析,以研究计算网格分辨率,湍流模型,离散化方案和迭代收敛对预测温度和空气年龄的影响。结果表明,具有SSTk-ω模型的稳定RANS可以准确预测此特定室内环境中的温度分层。但是,在五个常用的湍流模型中,只有SSTk-ω模型和标准k-ω模型成功地再现了热羽结构和相关的热分层,而三个k-ε模型却明显失败了。此外,迭代收敛准则对预测的空气使用年限有重大影响,这表明要获得准确的结果,就残渣定标需要非常严格的准则。这些必需的条件比典型的默认设置严格得多。本文旨在帮助提高用于位移通风评估的CFD仿真的准确性和可靠性。 (C)2015 Elsevier Ltd.保留所有权利。

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