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Experimental determination and computational fluid dynamics predictions of pressure loss in close-coupled elbows (RP-1682)

机译:近耦弯刀压力损失的实验测定和计算流体动力学预测(RP-1682)

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摘要

An experimental program was implemented to study pressure losses in HVAC duct systems associated with 305mm (12 in.) diameter close-coupled round five-gore elbows. The goal of this program was to experimentally verify a computational fluid dynamics model to accurately predict pressure losses in order to design duct systems more effectively. The results of this study showed that the loss coefficient increased as a function of separation distance between the elbows in a Z-configuration and decreased in a U-configuration. For both 305mm (12 in.) and 203mm (8 in.) diameter elbows, power law expressions correlating the combination loss coefficient data as a function of intermediate length for close-coupled elbows arranged in a Z-configuration or a U-configuration were presented. Computational fluid dynamics modeling with enhanced wall treatment using the k-E method was generally able to correctly predict elbow loss coefficients with an error of less than 15%.
机译:实施了实验计划,以研究与305mm(12英寸)的HVAC管道系统中的压力损失进行压力损失。 该计划的目标是通过实验地验证计算流体动力学模型,以准确地预测压力损失,以更有效地设计风道系统。 该研究的结果表明,损耗系数随着Z-配置的肘部之间的分离距离而增加,并且在U形配置中降低。 对于305毫米(12英寸)和203mm(8英寸)直径弯头,功率法表达式将组合损耗系数数据相关联,作为以Z配置或U形配置排列的近耦合弯头的中间长度的函数 提出了。 使用K-E方法的增强壁处理的计算流体动力学建模通常能够正确地预测弯头损耗系数,误差小于15%。

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