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Estimation of hypolimnetic discharge on improvement of water quality and control of phytoplankton blooms in yamaguchi reservoir

机译:降低山口水库水质改善和浮游植物水华控制的低通量流量估算

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摘要

Sakai water purification plant (Sakai WPP) and Higashi-murayama water purification plant (Higashi-murayamanWPP) take water from Yamaguchi reservoir (20 m-effective depth) by Intake tower No.1 and No. 2. Yamaguchinreservoir, refilled with water after seismic reinforcement to the dam body, started its operation again in 2002.nIn the spring of 2004 and 2005, massive blooms of Asterionella spp. and Fragilaria crotonensis (diatoms)noccurred, which resulted in sharp decreases in filtration capacity of Sakai WPP, taking slow sand filtration. Resultsnof water analysis for the reservoir between 2003 and 2004 indicated that nutrients eluted from sediments duringnstratification periods were utilized for the blooms in the following springs. Since intake gates at five differentndepths enable us to conduct selective intake, we conducted hypolimnestic discharge; while Sakai WPP continuedntaking water with low turbidity and phytoplankton production, the lowest gates of Intake tower No.1 were alsonslightly opened in the middle of 2005. In April 2006, the lowest gate of Intake tower No. 2 was fully openedninstead of the upper ones. Consequently, the scale of spring diatom blooms reduced after 2006. Nevertheless,nrise in turbidity increased T-P, which resulted in massive blooms of Synedra spp. (diatoms) in 2009 when thenwater level was lowered to 8 m. This illustrated that this operation of the selective intake was not effective fornconservation of the reservoir at low water levels.
机译:kai水净化厂(Sakai WPP)和东村山水净化厂(Higashi-murayamanWPP)通过1号和2号进水塔从山口水库(有效深度20 m)取水。山口水库在地震后重新注水对坝体进行加固,于2002年再次开始运营。n在2004年和2005年春季,大量出现了紫花藻(Asterionella spp)。由于没有发生沙尘菌,因此没有发生克雷伯菌(Fragilaria crotonensis)(硅藻),导致Sakai WPP的过滤能力急剧下降。 2003年至2004年对水库进行水质分析的结果表明,在层积期间从沉积物中洗脱下来的养分被用于随后的春季水华。由于在五个不同深度处的进气门使我们能够进行选择性进气,因此我们进行了低边放电。酒井WPP继续取水低浊度和浮游植物产量的同时,2005年中期也略微打开了1号进水塔的最低闸门。2006年4月,2号进水塔的最低闸门完全打开,而不是上层。因此,2006年以后春季硅藻绽放的规模减小了。然而,浊度的升高使T-P升高,导致Synedra spp的大量绽放。 (硅藻)在2009年,当时水位降低到8 m。这说明选择性取水的这种操作在低水位下不能有效地保护水库。

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  • 来源
    《Water Practice & Technology》 |2012年第2期|p.1-9|共9页
  • 作者单位

    a Engineering Section, Higashi-Murayama Purification Administration Office, Bureau of Waterworks of Tokyo MetropolitanGovernment, 2-20-236 Misumi-chou Higashimurayama-City, Tokyo 189-0023 Japan.E-mail: fukutani-akiko@waterworks.metro.tokyo.jpb Engineering Guidance Section, Coordination Division, Tama Waterworks Reform Promotion Center, Bureau of Waterworks ofTokyo Metropolitan Government, 1-1-41, Shibasaki-Chou, Tachikawa-City, Tokyo 190-0023 Japan.E-mail: taguchi-yukio@waterworks.metro.tokyo.jp;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    artificial reservoir, limnology, nutrients discharge, phytoplankton bloom, selective intake;

    机译:人工水库;湖泊学;养分排放;浮游植物开花;选择性摄入;

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