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Optimal sizing of roof gutters and hopper for rainwater harvesting

机译:雨水收割屋顶排水沟和料斗的最佳尺寸

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Bernoulli's equation was applied to a section of hopper collector to determine the appropriate dimensions of the hopper for rainwater harvesting. Also, the hopper surface area (SFA) for a given volume was minimized by differentiating it in relation to the slant angle (SA). Combining the rational formulaManning's equation and the best hydraulic section criteriaexpressions were obtained for the optimum sizes of rectangular and circular gutters. Minimum hopper SFA for a given volume was found to occur at an optimum hopper SA of 35.282 degrees. With the optimum conditions, design charts were produced for the hopper, circular, and rectangular roof gutters. The ratio of hopper larger radius to the smaller radius designated as () gave hopper dimensions with excessively wide upper radius for values of 0.10.2. Alpha () values of 0.8 and 0.9 gave values of R and Z which are almost too close to be distinguished. The valid range of for hopper design was found to be 0.2920.8. The study revealed that roof plan area has more effect on hopper dimensions than gutter slope. In addition, the case of excessive long gutters can be addressed by placing the hopper at the lateral epicenter of the eaves. In this regard, regions with abundant rainfall can solve water scarcity issues if proper design parameters of RWH components are considered in order to avoid waste of water through the overflow of water collection systems.
机译:Bernoulli的方程被应用于料斗收集器的一部分,以确定雨水收获的适当尺寸。而且,通过将其相对于倾斜角(SA)与倾斜角度分化来最小化给定体积的料斗表面积(SFA)。结合Rational Formulamanning的方程和最佳液压截面标准,用于矩形和圆形排水沟的最佳尺寸。发现给定体积的最小料斗SFA发生在35.282度的最佳料斗SA。在最佳条件下,为料斗,圆形和矩形屋顶排水沟生产设计图表。料斗较大半径与指定为()的较小半径的比率使料斗尺寸具有过宽的上半径,用于0.10.2的值。 0.8和0.9的alpha()值给出了r和z的值,这几乎太接近了。发现料斗设计的有效范围为0.2920.8。该研究表明,屋顶平面面积对料斗尺寸的影响比排水沟斜率更多。另外,可以通过将料斗放置在屋檐的横向震中来解决过多的长沟槽的情况。在这方面,如果考虑到RWH部件的适当设计参数,降雨量的区域可以解决水资源稀缺问题,以避免通过水收集系统的溢出浪费水。

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