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Influence of Rack Slope and Approaching Conditions in Bottom Intake Systems

机译:底部进气系统中机架斜率和进近条件的影响

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The study analyzes the flow over bottom racks made of longitudinal T-shaped bars. A clear water flow is considered in a laboratory flume. Free surface profiles, wetted rack lengths, and discharge coefficients are measured, changing parameters such as longitudinal slope, void ratio, and approaching flow. The present work complements existing experimental studies, considering the influence of the approaching flow conditions. The velocity field measured with Particle Image Velocimetry (PIV) technique and the pressure field with Pitot tubes are quantified. Numerical simulations (CFD) are used to complement laboratory data. The energy head along the rack is calculated and compared with the hypothesis of horizontal energy level with minimum energy at the beginning of the rack. A discharge coefficient adjustment that considers the slope, the void ratio, and the position along the rack is proposed and presented with the results of other works. Theoretical proposals to calculate the pressure field along the flow are compared with measurements in the laboratory. The relation between the static pressure head in the space of bars and the discharge coefficient is used as an alternative method to define the discharge.
机译:该研究分析了由纵向T形杆制成的底架上的流动。实验室水槽中应考虑水流畅通。测量自由表面轮廓,润湿的机架长度和排放系数,并更改参数,例如纵向斜率,空隙率和进水流量。目前的工作是对现有实验研究的补充,考虑了接近的流动条件的影响。使用粒子图像测速(PIV)技术测量的速度场和使用皮托管的压力场被量化。数值模拟(CFD)用于补充实验室数据。计算沿机架的能量头,并将其与水平能量水平假设在机架开始时的最小能量进行比较。提出了考虑坡度,空隙率和沿齿条位置的排放系数调整,并给出了其他工作的结果。将沿流计算压力场的理论建议与实验室中的测量结果进行了比较。条空间中的静压头与排放系数之间的关系用作定义排放的替代方法。

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