Iwasaki T, Ojima J
National Institute of Industrial Health, Kawasaki, Japan.
Ind Health. 1996;34(3):245-56. doi: 10.2486/indhealth.34.245.
In order to design proper ductwork for a local exhaust system, airflow characteristics were investigated in straight pipes of unplasticized polyvinyl chloride (PVC). A linear decrease in static pressure was observed downstream at points from the opening of the VU pipes (JIS K 6741) located at distances greater than 10 times the pipe diameter, for velocities ranging between 10.18-36.91 m/s. Roughness inside pipes with small diameters was found to be 0.0042-0.0056 mm and the friction factor was calculated on the basis of Colebrook's equation for an airflow transition zone. An extended friction chart was then constructed on the basis of the roughness value and the friction factor. This chart can be applied when designing a local exhaust system with the ducts of diameters ranging from 40 to 900 mm. The friction loss of the PVC pipe was found to be approximately 2/3 of that of a galvanized steel pipe.
为了设计合适的局部排风系统管道,对未增塑聚氯乙烯(PVC)直管中的气流特性进行了研究。对于速度在10.18 - 36.91 m/s之间的情况,在距管径10倍以上距离处的VU管(JIS K 6741)开口下游观察到静压呈线性下降。发现小直径管道内部的粗糙度为0.0042 - 0.0056 mm,并根据科尔布鲁克方程计算了气流过渡区的摩擦系数。然后根据粗糙度值和摩擦系数构建了扩展摩擦图。该图可用于设计管径范围为40至900 mm的局部排风系统。发现PVC管的摩擦损失约为镀锌钢管的2/3。