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The interaction between a manmade lake and groundwater: an example site in the Aurku area, Chiayi County, Taiwan

机译:人工湖与地下水之间的相互作用:以台湾嘉义县Aurku地区为例

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摘要

The objectives of this study are (1) to understand the subsurface hydrology in the Aurku area, Chiayi County, southern Taiwan, and (2) to determine the interaction between the manmade lake and groundwater level through the recharge produced by infiltration by on-site investigation and laboratory sand tank simulation. The manmade lake was selected as the field site for groundwater recharge effect so as to assess the role of infiltration from the aquaculture ponds in this area. These results can be used as reference for future application of constructing a series of manmade lakes. The field experiment was performed to measure the infiltration rate of the manmade lake by using the water balance method and double-ring infiltration test. The results demonstrated that the manmade lake had helped the recharge of the groundwater. Raising or maintaining a higher water level of the manmade lake can promote higher infiltration. When the groundwater level is equal to or higher than the bottom of the manmade lake, infiltration will slow or cease. The field experiment and laboratory sand tank simulation demonstrated that the infiltration rate increased with the higher storage depth of the manmade lake. The laboratory simulation also indicated that while the groundwater level was lower than the bottom of manmade lake (i.e. the reference level) and the initial water depth (3 cm) was equal to or greater than 50% of the full water storage depth, the infiltration depth increased with time. However, the infiltration depth would be very small or nearly zero when the groundwater level was higher than the bottom of the manmade lake. Copyright © 2006 John Wiley & Sons, Ltd.
机译:这项研究的目的是(1)了解台湾南部嘉义县Aurku地区的地下水文学,以及(2)通过现场渗入产生的补给来确定人造湖与地下水位之间的相互作用。调查和实验室沙箱模拟。选择人工湖作为补给地下水的田间地点,以评估该地区水产养殖池塘的渗透作用。这些结果可作为今后一系列人工湖建设的参考。采用水平衡法和双环渗透试验进行了野外试验,测定了人工湖的入渗率。结果表明,人造湖有助于补充地下水。升高或维持较高的人造湖水位可以促进更高的渗透。当地下水位等于或高于人造湖的底部时,渗透将减慢或停止。野外实验和实验室沙池模拟表明,随着人工湖储水深度的增加,入渗率增加。实验室模拟还表明,尽管地下水水位低于人工湖的底部(即参考水位)并且初始水深(3厘米)等于或大于全部蓄水深度的50%,但入渗深度随时间增加。但是,当地下水位高于人工湖底部时,入渗深度将很小或几乎为零。版权所有©2006 John Wiley&Sons,Ltd.

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