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Non-dimensional design parameters and performance assessment of rainwater harvesting systems

机译:雨水收集系统的无量纲设计参数和性能评估

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The use of non-dimensional parameters is proposed in this study to investigate optimum performance of rainwater harvesting systems. A suitable behavioral model is implemented to assess the inflow, outflow and change in storage volume of a rainwater harvesting system according to a daily mass balance equation under historical precipitation observations. The model determines the water-saving efficiency, overflow ratio and detention time. These are interpreted as a measure of the system performance over the long-term simulation period. Performance is examined under various scenarios in terms of environmental conditions that are typical of the Italian territory (3 precipitation regimes and 3 levels of water demand) and system characteristics (10 storage capacity levels). Optimum sizing of the rainwater harvesting system is investigated as a function of two non-dimensional parameters: the demand fraction and the storage fraction. The demand fraction is shown to affect significantly the water-saving efficiency and overflow ratio, while the storage fraction controls the detention time thus influencing the water quality degradation within the system. Sensitivity analysis is carried out to investigate the influence of the length of the time series climate records on the reliability of the selected performance indices. Results demonstrate that 30 years of daily rainfall records are sufficient to allow suitable assessment of the system performance. Optimum system design based on the medium demand fraction and the low storage fraction determines system performance that appears almost independent on the three precipitation regimes investigated.
机译:在这项研究中建议使用无量纲参数来研究雨水收集系统的最佳性能。根据历史降水观测下的日质量平衡方程,采用合适的行为模型来评估雨水收集系统的流入,流出和储水量变化。该模型确定节水效率,溢流率和滞留时间。这些被解释为长期仿真期间系统性能的度量。在各种情况下,根据意大利领土的典型环境条件(3种降水状况和3个需水量)和系统特征(10个存储容量水平)来检查性能。研究了雨水收集系统的最佳尺寸,该尺寸取决于两个无量纲参数:需求分数和存储分数。需求分数显示出显着影响节水效率和溢流率,而存储分数控制滞留时间,从而影响系统内水质的下降。进行了敏感性分析,以研究时间序列气候记录的长度对所选性能指标可靠性的影响。结果表明,每天30年的降雨记录足以对系统性能进行适当的评估。基于中等需求量和低存储量的最佳系统设计确定了几乎不依赖于所研究的三种降水机制的系统性能。

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