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Determination of the Hydraulic Properties of a Flat Type Drip Emitter using Computational Fluid Dynamics

机译:使用计算流体动力测定扁平型滴发射器的液压性能

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The objective of this study was to determine the hydraulic properties of a flat type emitter using Computational Fluid Dynamics with different turbulence models and model options. In addition, it is aimed to investigate the effects of the emitter hydraulic properties on the design when the same emitter is used in drip irrigation pipes with different wall thicknesses. The lowest mean percentage deviation between the measured flow rates and the calculated flow rates with turbulence models was found as 0.70% and 0.74% in the SST k-omega and Stress-Omega RSM turbulence model for the wall thickness of 0.25 mm pipe, respectively. Also, the mean percentage deviation for the laminar turbulence model was found to be -1.01%. The minimum MAE (0.021 L h(-1)) and RMSE (0.028 L h(-1)) values were found in the SST k-omega low-Re corr. turbulence model and the minimum MAPE (1.068%) was found in the laminar turbulence model.
机译:本研究的目的是使用具有不同湍流模型和模型选项的计算流体动力来确定平坦型发射器的液压性能。 此外,旨在探讨当在具有不同壁厚的滴灌管中使用相同的发射器时发射器液压性能对设计的影响。 在SST k-Omega和湍流模型的测量流速与计算流量率之间的最低平均百分比偏差分别为0.25mm管的壁厚为0.70%和0.74%。 而且,发现层流湍流模型的平均百分比偏差为-1.01%。 在SST k-Omega低再腐烂中发现了最小MAE(0.021LH(-1))和RMSE(0.028LH(-1))值。 在层流湍流模型中发现了湍流模型和最小的MAPE(1.068%)。

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