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首页> 外文期刊>Theoretical and applied climatology >Evaporation estimates from Nasser Lake, Egypt, based on three floating station data and Bowen ratio energy budget
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Evaporation estimates from Nasser Lake, Egypt, based on three floating station data and Bowen ratio energy budget

机译:埃及纳赛尔湖的蒸发量估算值,基于三个浮动站数据和鲍文比能量预算

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Nasser Lake is located in a hyper-arid region in the south of Egypt. Evaporation is by far the most important factor in explaining the water losses from the lake. To obtain better management scenarios for Nasser Lake, an accurate estimation of the lake evaporation losses thus is essential. This paper presents an update of previous evaporation estimates, making use of local meteorological and hydrological data collected from instrumented platforms (floating weather stations) at three locations on the lake: at Raft, Allaqi, and Abusembel (respectively at 2, 75, and 280 km upstream of the Aswan High Dam). Results from six conventional evaporation quantification methods were compared with the values obtained by the Bowen ratio energy budget method (BREB). The results of the BREB method showed that there is no significant difference between the evaporation rates at Allaqi and Abusembel. At Raft, higher evaporation rates were obtained, which were assumed to be overestimated due to the high uncertainty of the Bowen ratio (BR) parameter. The average BR value at Allaqi and Abusembel was used to eliminate this overestimates evaporation. Variance-based sensitivity and uncertainty analyses on the BREB results were conducted based on quasi-Monte Carlo sequences (Latin Hypercube sampling). The standard deviation of the total uncertainty on the BREB evaporation rate was found to be 0.62 mm day~(-1). The parameter controlling the change in stored energy, followed by the BR parameter, was found to be the most sensitive parameters. Several of the six conventional methods showed substantial bias when compared with the BREB method. These were modified to eliminate the bias. When compared to the BREB-based values, the Penman method showed most favorably for the daily time scale, while for the monthly scale, the Priestley-Taylor and the deBruin-Keijman methods showed best agreement. Differences in mean evaporation estimates of these methods (against the BREB method) were found to be in the range 0.14 and 0.36 mm day~(-1). All estimates were based calculations at the daily time scale covering a 10-year period (1995-2004).
机译:纳赛尔湖位于埃及南部的一个干旱地区。迄今为止,蒸发是解释湖水损失的最重要因素。为了获得更好的纳赛尔湖管理方案,因此准确估算湖泊蒸发损失至关重要。本文利用从湖上三个位置(分别位于Raft,A​​llaqi和Abusembel(分别位于2、75和280)的仪器平台(浮动气象站)收集的本地气象和水文数据,提供了以前的蒸发估算的更新。阿斯旺高坝上游的公里)。将六种常规蒸发定量方法的结果与通过鲍文比能量预算法(BREB)获得的值进行了比较。 BREB方法的结果表明,阿拉奇和阿布森贝尔的蒸发速率之间没有显着差异。在筏子上,获得了更高的蒸发速率,由于鲍文比(BR)参数的高度不确定性,高蒸发速率被高估了。使用阿拉奇(Allaqi)和阿布森贝尔(Abusembel)的平均BR值来消除这种过高估计的蒸发量。基于准蒙特卡罗序列(拉丁超立方采样)对BREB结果进行基于方差的敏感性和不确定性分析。发现BREB蒸发速率的总不确定度的标准偏差为0.62 mm日〜(-1)。发现控制储能变化的参数,其次是BR参数,是最敏感的参数。与BREB方法相比,六种常规方法中的几种显示出明显的偏差。修改了这些以消除偏差。与基于BREB的值进行比较时,Penman方法在每日时间范围内显示最有利,而在月度范围内,Priestley-Taylor方法和deBruin-Keijman方法显示出最佳一致性。这些方法(相对于BREB方法)的平均蒸发估算值的差异被发现在0.14和0.36 mm day〜(-1)之间。所有估算均基于涵盖10年(1995-2004年)的每日时间范围内的计算。

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  • 来源
    《Theoretical and applied climatology 》 |2010年第4期| p.439-465| 共27页
  • 作者单位

    Hydraulics Laboratory, Department of Civil Engineering, Katholieke Universiteit Leuven, Kasteelpark Arenberg 40, 3001 Heverlee, Belgium;

    Hydraulics Laboratory, Department of Civil Engineering, Katholieke Universiteit Leuven, Kasteelpark Arenberg 40, 3001 Heverlee, Belgium;

    Econometrics and Applied Statistics Unit, EC Joint Research Centre, Via Fermi 2749, 21027 Ispra(VA), Italy;

    Hydraulics Laboratory, Department of Civil Engineering, Katholieke Universiteit Leuven, Kasteelpark Arenberg 40, 3001 Heverlee, Belgium;

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