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Laboratory testing of flat oval transitions to determine loss coefficients (RP-1606)

机译:实验室测试平坦的椭圆形过渡以确定损耗系数(RP-1606)

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摘要

Pressure loss coefficients were measured for 8 converging-concentric, 15 converging-eccentric, 8 diverging-concentric, and 15 diverging-eccentric flat oval transition fittings. All tests were performed in accordance with ASHRAE Standard 120-2008, Method of Testing to Determine Flow Resistance of HVAC Ducts and Fittings, except (1) the entrance duct length to the test fitting was increased to 12 hydraulic diameters and (2) the fitting loss coefficient was calculated as the slope of the linear regression of p(v8) (downstream velocity pressure) versus Delta p(t,1-2) (zero-length total pressure loss of a test fitting) instead of p(v7) (upstream velocity pressure) versus Delta(pt,1-2). An Excel template file was developed to perform experimental data processing, graphical expression, and uncertainty analysis. Two pressure loss coefficient equations were developed, one for converging and a second for diverging fittings based on the experimental data. The loss coefficient regression equations will be added to the ASHRAE Duct Fitting Database, thus increasing the population of flat oval fittings.
机译:测量了8个收敛同心,15个收敛偏心,8个发散同心和15个发散偏心的扁平椭圆过渡配件的压力损失系数。所有测试均按照ASHRAE标准120-2008“确定HVAC管道和配件的流阻的测试方法”进行,除了(1)测试配件的入口管道长度增加到12个液压直径,以及(2)配件损耗系数的计算方法是p(v8)(下游压力)的线性回归与Delta p(t,1-2)(测试配件的零长度总压力损耗)的线性回归的斜率,而不是p(v7)(上游速度压力)与Delta(pt,1-2)的关系。开发了一个Excel模板文件来执行实验数据处理,图形表达和不确定性分析。根据实验数据,开发了两个压力损失系数方程,一个用于收敛,另一个用于发散配件。损耗系数回归方程将添加到ASHRAE管道拟合数据库中,从而增加了扁平椭圆形拟合的数量。

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