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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Mixing in a square and a rectangular duct regarding selection of locations for extractive sampling of gaseous contaminants.
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Mixing in a square and a rectangular duct regarding selection of locations for extractive sampling of gaseous contaminants.

机译:混合在一个正方形和一个矩形管关于选择萃取的位置气态污染物的采样。

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Tests were conducted to characterize the uniformity of velocity and tracer gas profiles in a square and a rectangular duct with respect to defining the suitability of locations for single point sampling of gaseous contaminants. Several configurations, such as a straight duct with unidirectional flow at the entrance section and straight ducts preceded by mixing elements (a 90 degrees mitered bend and double 90 degrees bends in S- and U-type configurations) were tested. Results are compared with those from circular ducts. For a straight duct of square cross section, which is not preceded by a mixing element, the coefficients of variation (COV) of tracer gas concentration at 19 duct diameters downstream of the gas release location is 143% (center release of tracer gas). COVs of velocity and tracer gas concentration in a straight square duct 9.5 duct diameters downstream of a 90 degrees mitered bend are 6% and 24.3% (top inside release), respectively, which does not meet the ANSI N13.1 limit of 20% for thetracer gas COV. In case of the rectangular duct with a 3:1 (width to height) aspect ratio, COVs of velocity and tracer gas concentration at 9 duct diameters downstream of a 90 degrees mitered bend are 29% and 62% (bottom inside release), respectively. A mixing element in a square duct comprised of two 90 degrees mitered bends in a U-configuration produces results similar to those obtained with a single 90 degrees bend. However, COVs of velocity and tracer gas concentration in a square duct 6 duct diameters downstream of an S-type double bend are 10.6% and 8.3% (top inside release), respectively, which comply with the ANSI tracer gas and velocity criteria for single point representative sampling. When mixing elements were employed in square ducts, the COV results were comparable with those of other researchers for circular ducts.
机译:测试进行了描述均匀的速度和示踪气体的概要文件一个正方形和一个矩形管对定义位置是否适合单身气态污染物的采样点。配置,比如直管道单向流动入口处和部分直管道之前混合元素(90度斜接弯管和双90度弯曲在S - u形配置)进行了测试。与圆形的结果进行了对比导管。部分,这不是之前混合元素,变异系数(x)示踪气体浓度在19管直径下游气体的释放位置是143%(中心释放示踪气体)。在一个直接的广场和示踪气体浓度管9.5下游管道直径的90年度斜接弯管分别为6%和24.3%(顶部分别发布),不满足ANSI N13.1 thetracer气体浸的上限为20%。的矩形管3:1(宽度高度)长宽比、速度和示踪剂的浸气体浓度在9下游管道直径90度斜接弯头的29%和62%(底部内发布),分别。元素在一个方形管由两个90年度斜接U-configuration弯曲产生的结果类似于同单90度弯曲。和示踪气体浓度在一个方形管6下游的年代双管直径弯曲是10.6%和8.3%(顶部内发布),分别,这符合ANSI示踪剂气体和速度单点的标准代表性的抽样。受雇于广场导管,浸结果比较与其他研究人员吗圆管。

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