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Water-saving study of urban domestic water based on the flow pipe optimization

机译:基于流管优化的城市生活用水节水研究

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The waste of domestic water causes the waste of water resource and the increasing sanitary sewage generated. To make the necessary reductions in the volumes of water used and wastewater generated, the water-saving study of urban domestic water based on the optimization design of flow pipe was performed at laboratory scale. Dynamics of the two-dimensional flow in siphonic water closets (WC), such as the flow regimes, velocity field and pressure field in the flow pipe, was investigated using a computational fluid dynamics (CFD) model and Particle Image Velocimetry (PIV). The pressure and velocity in the shrinking nozzle of pipe were compared by CFD under different pipe shape. Result indicated that the pressure in pipe in the fullsiphon stage and the siphon-generated time are of the most importance for the performance of WC. It was confirmed that the redesign of the shrinking nozzle of the pipe led to the reduction of water consumption. These numerical analyses and analog simulations presented the optimal shape design of flow pipe, which reduced the water consumption from 6 L to 4.5 L. The decrease of the water used in WC reduced the sanitary sewage generated. All the results and the research methods are expected to offer some reference for improving the sustainability of water based sanitation systems and developing a friendly sustainable domestic-water-saving technology. The method reported in this paper has profound environmental effect.
机译:生活用水的浪费导致水资源的浪费和产生的生活污水的增加。为了减少用水量和产生的废水量,在实验室规模下进行了基于流量管优化设计的城市生活用水节水研究。使用计算流体动力学(CFD)模型和粒子图像测速技术(PIV)研究了虹吸式抽水马桶(WC)中的二维流动动力学,例如流管中的流态,速度场和压力场。通过CFD比较了不同管形下管子收缩喷嘴的压力和速度。结果表明,在全虹吸阶段,管道中的压力和虹吸产生的时间对于WC的性能最为重要。可以确认,通过重新设计管子的收缩喷嘴,可以减少用水量。这些数值分析和模拟模拟提供了流量管的最佳形状设计,从而将耗水量从6 L减少到4.5L。减少WC中使用的水减少了产生的生活污水。所有的结果和研究方法有望为改善水环境卫生系统的可持续性和发展友好的可持续的家庭节水技术提供参考。本文报道的方法具有深远的环境影响。

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