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Towards an integrated computational method to determine internal spaces for optimum environmental conditions

机译:寻求一种综合计算方法来确定最佳环境条件的内部空间

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Computational Fluid Dynamics tools and Response Surface Methodology optimization techniques were coupled for the evaluation of an optimum window opening design that improves the ventilation efficiency in a naturally-ventilated building. The multi-variable optimization problem was based on Design of Experiments analysis and the Central Composite Design method for the sampling process and estimation of quadratic models for the response variables. The Screening optimization method was used for the generation of the optimal design solution. The generated results indicated a good performance of the estimated response surface revealing the strength correlations between the parameters. Window width was found to have greater impact on the flow rate values with correlation coefficient of 73.62%, in comparison to the standard deviation 55.68%, where the window height prevails with correlation coefficient of 96.94% and 12.35% for the flow rate. The CFD results were validated against wind tunnel experiments and the optimization solution was verified with simulation runs, proving the accuracy of the methodology followed, which is applicable to numerous environmental design problems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:计算流体动力学工具和响应面方法优化技术相结合,用于评估最佳开窗设计,从而提高自然通风建筑的通风效率。多变量优化问题是基于“实验设计”分析和“中央复合设计”方法进行的,该过程用于采样过程和响应变量的二次模型估计。筛选优化方法用于生成最佳设计解决方案。生成的结果表明估计的响应面具有良好的性能,揭示了参数之间的强度相关性。发现窗宽对流速值具有更大的影响,相关系数为73.62%,而标准偏差为55.68%,其中窗高占优势,流速的相关系数为96.94%和12.35%。通过风洞实验验证了CFD结果,并通过模拟运行验证了优化方案,证明了所采用方法的准确性,适用于许多环境设计问题。 (C)2016 Elsevier Ltd.保留所有权利。

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