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Mixed-cell raceway: engineering design criteria, construction, and hydraulic characterization.

机译:混合电池滚道:工程设计标准,构造和水力特性。

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摘要

A prototype raceway was constructed in a research greenhouse at the Conservation Fund's Freshwater Institute to study engineering design criteria and the hydraulics of a large mixed-cell raceway. The raceway measured 16.3x5.44x1.22 m and was constructed of structural lumber with a high-density polyethylene liner. The basic rationale of a mixed-cell raceway is to be able to operate it as a series of square or octagonal tanks, each having a centre drain for continuous removal of solids and sludge. A series of vertical manifolds along the sidewalls directed the water through orifice discharges parallel and perpendicular to the walls to establish the desired rotary circulation. This was then combined with the concept of the "Cornell-type" dual-drain system, where 10-20% of the total flow into a tank is removed from a centre bottom drain and 80-90% of the flow is removed from the side upper drain. Settlable wastes and sludge are then removed from the centre drains and collected in a settling sump. Velocities were measured in three dimensions in representative cells at three depths (5-10 cm off the bottom, middepth, and 10 cm below the water surface) on a 0.5-m grid pattern over the raceway floor. The raceway mean rotational velocity was 5-6% of the inlet jet velocities. The results from this study can be used to further refine the engineering design criteria and demonstrate the potential for employing mixed cells as a new design concept both for production systems and for retrofits of existing raceway systems..
机译:在自然保护基金会的淡水研究所的研究温室中建造了一个样机管道,以研究工程设计标准和大型混合单元管道的水力学。滚道尺寸为16.3x5.44x1.22 m,由具有高密度聚乙烯衬里的结构木材制成。混合槽水道的基本原理是能够将其作为一系列方形或八边形的水箱运行,每个水箱都有一个中心排水口,用于连续清除固体和污泥。沿侧壁的一系列垂直歧管引导水通过平行于并垂直于壁的孔口,以建立所需的旋转循环。然后将其与“康奈尔型”双排水系统的概念相结合,在该系统中,进入水箱的总流量的10-20%从中央底部排水口排出,而80-90%的流量从中间排水口排出。侧上排水口。然后,将可沉降的废物和污泥从中央排水沟中清除,并收集在一个沉降池中。在三个深度(距水底5-10厘米,中深度和水面以下10厘米)的代表单元中,在水道底板上方以0.5米的网格模式中,以三个维度测量速度。滚道的平均转速为入口射流速度的5-6%。这项研究的结果可用于进一步完善工程设计标准,并证明在生产系统和现有管道系统的改造中采用混合电池作为新设计概念的潜力。

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