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首页> 外文期刊>Journal of Hydrology >First-order catchment mass balance during the wet season in the Panama Canal Watershed
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First-order catchment mass balance during the wet season in the Panama Canal Watershed

机译:巴拿马运河流域雨季的一级流域质量平衡

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Tropical hydrology is poorly understood for a number of reasons. Intense biological activity in the tropics introduces complexities to the hydrologic process. Bioturbation, rapid rates of decay, and intensive insect activity all tend to promote rapid flow paths in the upper soil. Aggressive weathering leads to clays depleted of light cations and deep soil profiles. Processes in the seasonal tropics are further complicated by seasonal transitions, and very large changes in catchment storage between seasons. Beginning in 2005, we installed a suite of hydrologic sensors in a 16.7. ha first-order catchment in the Panama Canal Watershed to observe hydrologic variables and identify the dominant streamflow generation processes. The site is located near the village of Gamboa, which is located on the east bank of the Panama Canal at the confluence of Lake Gatun and the Chagres River. The study catchment is located on the north side of a ridge off the eastern flank of a 230. m tall hill known as Cerro Pelado, and is covered by 70-120. year old re-growth triple-canopy forest. Measurements included: rainfall above the canopy, throughfall, stemflow, evapotranspiration, shallow groundwater levels and streamflow. Deep groundwater storage was not measured. This paper describes measurements made, data collected, and the worth of those data in estimating the mass balance closure of a first-order catchment during the wet season. We compare measurements of the different components of the water cycle with observations from other published studies from the tropics. Data analysis results indicate water balance closure errors of approximately 8%.
机译:出于多种原因,人们对热带水文学的了解甚少。热带地区激烈的生物活动给水文过程带来了复杂性。生物扰动,快速的腐烂速度和密集的昆虫活动都倾向于促进上层土壤的快速流动路径。侵蚀性风化作用导致粘土中的轻阳离子和深层土壤枯竭。季节性转变和季节之间流域储量的巨大变化,使热带地区的过程进一步复杂化。从2005年开始,我们在16.7版中安装了一套水文传感器。巴拿马运河流域的一级流域,以观察水文变量并确定主要的水流产生过程。该地点位于甘博阿村附近,该村位于巴拿马运河东岸,位于加敦湖和查格里斯河的交汇处。该研究集水区位于一个山高的北侧,该山脊位于一个230米高的山丘(称为塞罗佩拉多(Cerro Pelado))的东部侧面,覆盖着70-120。岁的再成长三冠林。测量包括:冠层上方的降雨,穿透瀑布,茎流,蒸散量,浅层地下水位和水流。未测量深层地下水的存储量。本文描述了测量,收集的数据以及这些数据在估算雨季一阶流域的质量平衡关闭方面的价值。我们将水循环不同组成部分的测量结果与热带地区其他已发表研究的观察结果进行比较。数据分析结果表明水平衡关闭误差约为8%。

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