A.管道除与阀门、仪表、设备等需要用法兰或螺纹连接外,一般应采用焊接连接
B.需要热补偿的管道,应从管道的起点到终点对整个管系进行分析以确定合理的热补偿方案
C.对于公称直径大于或等于150mm的管道,管道上相邻对接焊口之间的中心间距不应小于150mm
D.在易产生振动的管道的转弯处,应避免选用长半径弯头
某引水式电站,采用两机一管引水。采用三梁岔管,岔管最大内直径4800mm,内水压力1.8N/mm2,钢管半锥顶角α=8°,焊缝系数φ=0.95,钢材采用16MnR,屈服强度σs=325N/mm2,计算系数K1=1.05、K2=1.6、[σ]1=0.5σs、[σ]2=0.6σs,初步近似计算该节管段膜应力区的管壁厚度和局部应力区管壁厚度。如果钢板锈蚀厚度2mm。钢管壁厚:
根据气力输送的特点,降低动力消耗,节约能源是一个重要的研究课题,从经验中知,管道内径是关于能耗的重要参数。直观上看,当输送量一定时,管径过小,输送易阻滞,管径过大,虽输送畅通,但又造成能量的浪费。根据经验,把管径分成三组,各组的试验结果如下表所示,试用方差分析法比较各组的效果.
管径(mm) | 单位功耗 |
230 | 0.0308,0.0476,0.0504 |
250~260 | 0.0532,0.032,0.0218,0.028,0.028, 0.042,0.0336,0.042,0.042,0.028 |
280~320 | 0.07,0.07,0.0644,0.0312,0.0756,0.0756, 0.07,0.0588,0.0588,0.042,0.0308,0.0364, 0.0448,0.21,0.154,0.1064,0.1288,0.112, 0.1064,0.1288,0.0756,0.0644,0.0504,0.0644, 0.0504,0.0308 |