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Abrupt state change of river water quality (turbidity): Effect of extreme rainfalls and typhoons

机译:河流水质突变状态(浑浊度):极端降雨和台风的影响

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River turbidity is of dynamic nature, and its stable state is significantly changed during the period of heavy rainfall events. The frequent occurrence of typhoons in Taiwan has caused serious problems in drinking water treatment due to extremely high turbidity. The aim of the present study is to evaluate impact of typhoons on river turbidity. The statistical methods used included analyses of paired annual mean and standard deviation, frequency distribution, and moving standard deviation, skewness, and autocorrelation; all clearly indicating significant state changes of river turbidity. Typhoon Morakot of 2009 (recorded high rainfall over 2000 mm in three days, responsible for significant disaster in southern Taiwan) is assumed as a major initiated event leading to critical state change. In addition, increasing rate of turbidity in rainfall events is highly and positively correlated with rainfall intensity both for pre- and post-Morakot periods. Daily turbidity is also well correlated with daily flow rate for all the eleven events evaluated. That implies potential prediction of river turbidity by river flow rate during rainfall and typhoon events. Based on analysis of stable state changes, more effective regulations for better basin management including soil-water conservation in watershed are necessary. Furthermore, municipal and industrial water treatment plants need to prepare and ensure the adequate operation of water treatment with high raw water turbidity (e.g., >2000 NTU). Finally, methodology used in the present of this study can be applied to other environmental problems with abrupt state changes.
机译:河流浑浊是动态的,在暴雨期间,其稳定状态会发生很大变化。台湾经常发生台风,由于浊度极高,给饮用水处理带来了严重问题。本研究的目的是评估台风对河流浊度的影响。所使用的统计方法包括对成对的年平均数和标准差,频率分布以及移动标准差,偏度和自相关的分析;所有这些都清楚地表明了河流浊度的重要状态变化。 2009年的莫拉克台风(三天内录得2000毫米以上的高降雨,是造成台湾南部重大灾难的原因)被认为是导致重大国家变化的重大事件。另外,在莫拉科特之前和之后的降雨事件中,浊度增加的速率与降雨强度高度正相关。在评估的所有11个事件中,每日浊度也与每日流量密切相关。这意味着在降雨和台风事件期间可能通过河流流速预测河流的浊度。在分析稳定状态变化的基础上,需要更有效的法规来更好地进行流域管理,包括流域水土保持。此外,市政和工业水处理厂需要准备并确保原水浊度较高(例如,> 2000 NTU)的水处理正常运行。最后,本研究中使用的方法可以应用于状态突然变化的其他环境问题。

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