The Use of Drop-Structures to Increase the Dissolved Oxygen Level along the Cibarani Channel

Jonathan Wijaya, Doddi Yudianto, Finna Fitriana
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Abstract

The Cikapundung river basin community uses the Cibarani channel as a drainage system and water source for fishing. However, the test result released on 9th November 2020 revealed that the channel’s water quality failed to reach the class II raw water standards due to various domestic waste discharges. This led to the performance of various studies to identify pollution control techniques by limiting the wastewater discharge and quality, controlling the intake discharge, and using baffles. The Cibarani channel has a drop-structure that can improve the water quality, though the effect has not been previously detailed. Therefore, this study was intended to comprehensively examine the effect of the drop-structure along the Cibarani channel to improve water quality conditions, specifically the Dissolved Oxygen (DO) parameter. This study employed the one-dimensional HEC-RAS software to simulate the hydrodynamic and water quality conditions along the Cibarani channel, and the drop-structure was modelled using two alternatives consisting of a vertical wall and a steep riverbed. Subsequently, the drop-structure fitted with a vertical wall gave a more plausible reaeration rate of 125 day-1 and Root Mean Square Error (RMSE) value of 0.50. The placement of a similar configuration before the first housing of the channel increased the DO concentrations by an average of 4.37 mg/L. This was followed by the modelling of another drop-structure after the first housing to increase the DO levels at the downstream part. Eventually, the combination of the two new drop-structures succeeded in increasing the DO concentrations along the Cibarani channel to 3.3 - 6.9 mg/L.
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利用水滴结构增加西巴拉尼海峡沿线的溶解氧水平
奇卡朋东河流域社区使用奇巴拉尼水道作为排水系统和捕鱼水源。然而,2020年11月9日公布的检测结果显示,由于各种生活垃圾的排放,该渠道的水质未达到II类原水标准。这导致了各种研究的表现,通过限制废水排放和质量,控制进水口排放和使用挡板来确定污染控制技术。西巴拉尼水道有一个水滴结构,可以改善水质,尽管之前没有详细的效果。因此,本研究旨在综合考察沿Cibarani通道的水滴结构对改善水质条件,特别是溶解氧(DO)参数的影响。本研究采用一维HEC-RAS软件模拟了Cibarani河道的水动力和水质条件,并采用垂直墙和陡峭河床两种方案对水滴结构进行了模拟。结果表明,采用垂直壁面的滴落结构的再生速率为125 d -1,均方根误差(RMSE)为0.50。在通道的第一个外壳之前放置类似的配置,使DO浓度平均增加4.37 mg/L。接下来是在第一个壳体之后的另一个水滴结构的建模,以增加下游部分的DO水平。最终,两种新的滴状结构的结合成功地将Cibarani通道沿线的DO浓度提高到3.3 - 6.9 mg/L。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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发文量
20
审稿时长
15 weeks
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