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Experimental Determination of Local Resistance Coefficient of Sudden Expansion Tube

机译:突然膨胀管局部阻力系数的实验确定

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Theoretical derivation of local resistance coefficient of sudden expansion tube is presented. Several assumptions are analyzed in the theoretical derivation. That the head loss shall be neglected is affirmed. Experimental data proves that the pressure before and after sudden expansion section is basically the same. That the friction force on the side face of control body is neglected is denied and it is pointed out that such neglect is the main cause for error between theoretical calculation and actual measurement. Experimental device for measuring local resistance coefficient is designed in combination with theoretical derivation process. Optimal gradually varied flow section is selected after sudden expansion pipe in Bernoulli equation based on variation of piezometer tube head. It is pointed out in accordance with experimental data analysis that the value of local resistance coefficient of sudden expansion tube determined through experimental data is closer to the actual situation during pipeline design.
机译:提出了突然膨胀管局部阻力系数的理论推导。在理论推导中分析了几个假设。可以肯定的是,可以忽略头部的损失。实验数据证明,突然膨胀段前后的压力基本相同。否认忽略了控制体侧面上的摩擦力,并指出这种忽略是造成理论计算与实际测量之间误差的主要原因。结合理论推导过程设计了一种测量局部电阻系数的实验装置。根据测压管头的变化,在伯努利方程中突然膨胀后选择最佳的逐渐变化的流动截面。根据实验数据分析指出,通过实验数据确定的突然膨胀管的局部阻力系数值更接近管道设计时的实际情况。

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