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浅水湖泊水体中不同颗粒悬浮物静沉降规律研究

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向军[1,2] 逢勇[1] 李一平[1] 魏海[3] 王鹏[3] 刘兴平[1]

[1]河海大学环境科学与工程学院,江苏南京210098 [2]柳州市水利局,广西柳州545001 [3]南京市自来水总公司,江苏南京210002

水科学进展
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国际标准刊号:ISSN 1001-6791
国内统一刊号:CN 32-1309/P

摘  要:

为了解浅水湖泊水体中颗粒悬浮物的静沉降规律,以太湖为例,采用重复深度吸管法计算了2005年4月、5月间在太湖进行的4次静沉降模拟实验中的沉降速度。结果表明:①在悬浮物沉降过程内,3种颗粒物的沉速关系为颗粒无机物(PIM)〉悬浮物(SS)〉颗粒有机物(POM)。在相同的沉降时间内,P1M的沉速为船沉速的1.6~2.0倍,POM的沉速为船沉速的0.3~0.7倍,P1M的沉速为POM沉速的2.5~5.5倍;②水体中悬浮物浓度与沉降时间均呈现出明显的指数衰减规律,悬浮物中无机物含量较高时这种规律更为明显;③悬浮物浓度较低时,太湖悬浮物的沉降速率与水体中的悬浮物浓度无明显的相关关系;而悬浮物浓度较高时,沉降速率随悬浮物浓度升高而增大。[著者文摘]

Advances in Water Science

分 类 号:

P334.5 TV142.3

文献标识码:

A

文章编号:

1001-6791(2008)01-0111-05

相关文章:

参考文献(16篇) 耦合文献(441篇)  主题相关

[参考文献]

Hydrostatic settling suspended matter of large shallow lake

XIANG Jun, PANG Yong, LI Yi-ping, WEI Hai, WANG Peng, LIU Xing-ping( 1. College of Environment Science and Engineering, Hohai University, Nanjing 210098, China ; 2. Conservancy Bureau of Liuzhou, l_iuzhou 545001, China; 3. Nanfing Tap Water General Company, Nanjing 210098, China)

Abstract:

In order to study the hydrostatic settling of suspended matter of large shallow lake, Four experiments, based on the Taihu lake, were conducted in the laboratory for hydrostatic settling behavior of suspended matter in Taihu lake in April and May, 2005. The settling velocity of suspended matter was calculated by McLa velocity of particular inorganic matter (PIM) is the biggest, and the second biggest method. The results show that the settling one is that of suspended matter (SS), the smallest one is that of particular organic matter (POM). During the same time of settling, the settling velocity of PIM is 1.6 - 2.0 times bigger than that of SS, the settling velocity of POM is 0.3-0.7 times bigger than that of SS, and the settling velocity of PIM is 2.5 - 5.5 times bigger than that of POM. The results also show that the suspended matter concentration decays exponentially with time, which is more obvious when the percentage of inorganic suspended matter accounting for total suspended matter is higher. When the suspended matter concentration is low, no clear relationship is found between settling velocity and suspended matter concentration. But settling velocity obviously rise with the increase of suspended matter concen- tration while the latter is high.[著者文摘]

Key words:

suspended matter; hydrostatic settling; settling rule; Taihu lake

收稿日期: 2007-03-06

基金资助:

国家自然科学基金资助项目(50579015;40601050);高等学校博士学科点专项科研基金(20070294019)

作者简介:

向军(1962-),男,广西柳州人,高级工程师,博士研究生,主要从事水环境规划与管理工作。E-mail:xiangjunslj@163.com

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