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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Evaluation of mixing downstream of tees in duct systems with respect to single point representative air sampling.
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Evaluation of mixing downstream of tees in duct systems with respect to single point representative air sampling.

机译:评价混合下游管的t恤系统对单点代表空气取样。

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Air duct systems in nuclear facilities must be monitored with continuous sampling in case of an accidental release of airborne radionuclides. The purpose of this work is to identify the air sampling locations where the velocity and contaminant concentrations fall below the 20% coefficient of variation required by the American National Standards Institute/Health Physics Society N13.1-1999. Experiments of velocity and tracer gas concentration were conducted on a generic "T" mixing system which included combinations of three sub ducts, one main duct, and air velocities from 0.5 to 2 m s (100 to 400 fpm). The experimental results suggest that turbulent mixing provides the accepted velocity coefficients of variation after 6 hydraulic diameters downstream of the T-junction. About 95% of the cases achieved coefficients of variation below 10% by 6 hydraulic diameters. However, above a velocity ratio (velocity in the sub duct/velocity in the main duct) of 2, velocity profiles were uniform in a shorter distance downstream of the T-junction as the velocity ratio went up. For the tracer gas concentration, the distance needed for the coefficients of variation to drop 20% decreased with increasing velocity ratio due to the sub duct airflow momentum. The results may apply to other duct systems with similar geometries and, ultimately, be a basis for selecting a proper sampling location under the requirements of single point representative sampling.
机译:在核设施必须风道系统在一个连续取样监测机载的意外释放放射性核素。这项工作的目的是识别空气采样速度和位置污染物浓度低于20%变异系数所需的美国人国家标准协会/保健物理学社会n13.1 - 1999。示踪气体浓度进行其中包括通用的“T”混合系统组合三个子管道,一个主要的管道,和空气速度从0.5到2 m s(100年至400年fpm)。湍流混合提供了公认的速度变异系数后6液压直径丁字路口的下游。的情况下实现系数的变异下面6水力直径的10%。子的速度比(速度之上管/速度的主要管道)2,速度概要文件被统一在一个较短的距离下游的丁字路口的速度比例上升。所需的距离系数变异与增加下降20%减少由于子管气流速度比的势头。系统具有类似几何图形,并最终选择一个合适的取样是一个依据位置在单点的要求代表性的抽样。

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