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首页> 外文期刊>Journal of Environmental Engineering >Modeling a proposed quarry reservoir for raw water storage in Atlanta, Georgia
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Modeling a proposed quarry reservoir for raw water storage in Atlanta, Georgia

机译:在佐治亚州亚特兰大模拟拟议的采石场原水存储模型

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摘要

The City of Atlanta plans to convert a recently acquired urban quarry into Bellwood Quarry Reservoir (BQR), an off-stream supplemental water supply. CE-QUAL-W2, Version 3.5, was used to perform five-year water quality simulations of the reservoir. Nine inflow/outflow design and operation scenarios were evaluated for thermal stratification, dissolved oxygen (DO), algae, and iron (Fe) and manganese (Mn). For a perpetual storage scenario with no inflow and outflow and an operating scenario with monthly pump exercising flows, the model predicts ample reservoir DO to maintain an oxidizing environment in the hypolimnion and low dissolved Fe and Mn. A single portal near the bottom of the reservoir is recommended for alternating pump exercise inflows and outflows. Continuous flow-through operating scenarios do not improve predicted water quality. However, if selected, a mid-depth inflow and bottom outflow design configuration is recommended. A natural monomictic cycle is essential to maintain hypolimnetic DO. BQR's relatively large mean depth (60 m) and low sediment surface area to volume ratio is consistent with other mesotrophic lakes of similar water quality.
机译:亚特兰大市计划将最近收购的城市采石场改建为贝尔伍德采石场水库(BQR),这是一种下游补充水源。 CE-QUAL-W2版本3.5用于执行水库的五年水质模拟。评估了9种流入/流出设计和操作方案的热分层,溶解氧(DO),藻类以及铁(Fe)和锰(Mn)。对于没有流入和流出的永久存储方案,以及每月有泵运行流量的运行方案,该模型预测储层DO足够大,可以在次limlimion和低溶解的Fe和Mn中维持氧化环境。建议在水库底部附近有一个门户,以交替进行泵的运动流入和流出。连续的直通式运行方案并不能改善预测的水质。但是,如果选择此选项,则建议采用中深度流入和底部流出设计配置。自然的单周期循环对于维持低通量DO至关重要。 BQR的相对较大的平均深度(60 m)和较低的沉积物表面积/体积比与其他类似水质的中营养湖泊一致。

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