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Effect of manhole molds and inlet alignment on the hydraulics of circular manhole at changing surcharge

机译:附加费改变时人孔模具和进气口对准对圆形人孔水力学的影响

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Head loss coefficient of a manhole is dependent on various hydraulic and structural characteristics. This study analyses the effect on manhole head loss coefficients using numerical VOF model due to three factors: manhole structural mold shapes, small changes in inlet orientations and changes in the manhole to inlet pipe ratios. Head loss coefficients showed a strong dependence on the available surcharge. Presence of sump created the maximum head loss while benching provided the best efficiency. Within small deviation of inlet pipe orientations, two different hydraulic regimes were observed indicating effects on both head loss coefficients and threshold surcharge heights. Change of manhole to inlet pipe diameter ratios (phi(m)/phi(p)) showed three head loss characteristics. Head loss in small manholes (phi(m)/phi(p)3) did not change with surcharge. Medium manholes (3 phi(m)/phi(p) 4.0) showed high head losses up to a specific surcharge. Big manholes (phi(m)/phi(p)4.5) showed a high head loss at all the surcharges.
机译:沙井的水头损失系数取决于各种水力和结构特征。这项研究使用数值VOF模型分析了以下三个因素对人孔压头损失系数的影响:人孔结构模具的形状,入口方向的微小变化以及人孔与入口管之比的变化。头部损失系数显示出对可用附加费的强烈依赖。油槽的存在造成最大的水头损失,而板凳则提供了最佳的效率。在进气管方向的小偏差内,观察到两种不同的液压状态,表明对压头损失系数和阈值附加费高度均产生影响。沙井与进水管直径之比(phi(m)/ phi(p))的变化显示出三种压头损失特性。小沙井中的水头损失(phi(m)/ phi(p)<3)不会随附加费而变化。中型沙井(3 hi(m)/ phi(p)<4.0)表现出较高的压头损失,直至特定附加费。大沙井(phi(m)/ phi(p)> 4.5)在所有附加费下均显示出较高的头部损失。

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