人工湖泊微泡曝气的水力冲击范围及溶解氧分布

Sunhwa Choi, Hyungseok Park
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引用次数: 1

摘要

摘要:本研究以忠南牙山市竹山湖为研究对象,研究微泡曝气对水的影响范围及溶解氧(DO)浓度分布。采用20%罗丹明溶液对液压冲击范围进行示踪实验。在微泡射流的水平方向上安装160 m的导流仪,每隔10 m测量1 m、2 m和3 m深度的罗丹明浓度、水温和DO浓度。在巨山湖,微泡发生器排出的射流有效范围约为40 m,此后射流羽流通过周围水体的平流和扩散过程移动至80 ~ 120 m。跟踪实验期间,湖泊DO浓度维持在7.4 ~ 12.6 mg/L。微泡曝气使湖泊沉积物的DO由0.2 mg/L提高到8.0 mg/L。综上所述,微泡曝气技术是一种有效的农业水库水质管理和改善技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydraulic Impact Scope and Dissolved Oxygen Distribution by the Micro-bubble Aeration in an Artificial Lake
: This study investigated the hydraulic impact scope and dissolved oxygen (DO) concentration distribution by the micro-bubble aeration in the Juksan Lake located in Asan city in Chungcheongnam-do province. A tracing experiment for hydraulic impact scope was used which constituted a 20% rhodamine solution. A 160 m-guideline was installed in the horizontal direction of the micro-bubble jet flow and the rhodamine concentration, water temperature, and DO concentration were measured at depths of 1 m, 2 m, and 3 m at intervals of 10 m. In the Juksan Lake, the effective range of jet flow discharged by the micro-bubble generator was about 40 m, and after then the jet plume moved up to 80 m to 120 m through the advection and diffusion processes of ambient water. DO concentration in the lake was maintained at 7.4-12.6 mg/L during tracking experiment. The DO of the lake sediments improved from 0.2 mg/L to 8.0 mg/L after applying micro-bubble aeration. In conclusion, the micro-bubble aeration can be an effective technology for the management and improvement of water quality in an agricultural reservoir.
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