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首页> 外文期刊>KSCE journal of civil engineering >Discharge coefficient and energy dissipation over stepped spillway under skimming flow regime
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Discharge coefficient and energy dissipation over stepped spillway under skimming flow regime

机译:撇除流态下阶梯溢洪道的流量系数和能量耗散

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摘要

Stepped spillways have a wide range of applicability as a hydraulic structure in large dams to dissipate energy of high-velocity flows at a downstream area of dams as well as release overflows into the downstream. In this study, the numerical simulation of the flow over the stepped spillway was investigated by using Flow3D software as an analytic flow field. The RNG k-epsilon model was applied as the turbulence model, and Volume of Fluid (VOF) model was used to determine the free surface flow profiles. At the first stage, the model was verified by reliable experimental data. Then, in order to investigate the various features of skimming flow regime, 112 numerical spillway models was designed, which 96 models were stepped spillway models and 16 models were smooth spillway models (i.e., WES profile). In these numerical experiment, two step sizes, six configuration, four passing discharge and four profile slopes (15, 30, 45 and 60 degrees) with various relative discharges were considered to investigate the energy dissipation and discharge coefficient rates. The results indicated that discharge coefficient rate and energy dissipation rate have inverse relationship. Also it was observed that when relative discharges increased, energy dissipation rate decreased and discharge coefficient rate increased.
机译:阶梯式溢洪道具有广泛的适用性,因为它是大型水坝的水力结构,可消散大坝下游区域的高速水流能量,并将溢流释放到下游。在这项研究中,通过使用Flow3D软件作为解析流场研究了阶梯式溢洪道上的流动的数值模拟。应用RNGk-ε模型作为湍流模型,并使用流体体积(VOF)模型确定自由表面流动剖面。在第一阶段,该模型已通过可靠的实验数据进行了验证。然后,为了研究撇油流态的各种特征,设计了112个数值溢洪道模型,其中96个模型为阶梯溢洪道模型,而16个模型为平滑溢洪道模型(即WES剖面)。在这些数值实验中,考虑了两个步长,六个配置,四个通过的放电和四个具有不同相对放电的轮廓坡度(15、30、45和60度),以研究能量耗散和放电系数率。结果表明,放电系数率与能量耗散率成反比关系。还观察到,当相对放电增加时,能量耗散率降低并且放电系数率增加。

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