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Analysis of the climate variability on Lake Nasser evaporation based on the Bowen ratio energy budget method

机译:基于Bowen比能量预算法的纳赛尔湖蒸发量气候变化分析

摘要

Variations in lake evaporation have a significant impact on the energy and water budgets of lakes. Understanding these variations and the role of climate is important for water resources management as well as predicting future changes in lake hydrology as a result of climate change. This study presents a comprehensive, 10-year analysis of seasonal, intraseasonal, and interannual variations in lake evaporation for Lake Nasser in South Egypt. Meteorological and lake temperature measurements were collected from an instrumented platform (Raft floating weather station) at 2 km upstream of the Aswan High Dam. In addition to that, radiation measurements at three locations on the lake: Allaqi, Abusembel and Arqeen (respectively at 75, 280 and 350 km upstream of the Aswan High Dam) are used. The data were analyzed over 14-day periods from 1995 to 2004 to provide bi-weekly energy budget estimates of evaporation rate. The mean evaporation rate for lake Nasser over thestudy period was 5.88 mm day-1, with a coefficient of variation of 63%. Considerable variability in evaporationrates was found on a wide range of timescales, with seasonal changes having the highest coefficient of variation (32%), followed by the intraseasonal (28%) and interannual timescales (11.6%; for summer means). Intraseasonal changes in evaporation were primarily associated with synoptic weather variations, with high evaporation events tending to occur during incursions of cold, dry air (due, in part, to the thermal lag between air and lake temperatures). Seasonal variations in evaporation were largely driven by temperature and net energy advection, but are out-of-phase with changes in wind speed. On interannual timescales, changes in summer evaporation rates were strongly associated with changes in net energy advection and showed only moderate connections to variations in temperature or humidity.
机译:湖泊蒸发的变化对湖泊的能量和水的收支有重大影响。理解这些变化和气候的作用对于水资源管理以及预测由于气候变化而导致的未来湖泊水文学变化至关重要。这项研究提供了对南埃及纳赛尔湖蒸发的季节,季节内和年际变化的十年综合分析。气象和湖泊温度测量是从位于阿斯旺高坝上游2公里处的仪器平台(筏式浮动气象站)采集的。除此之外,还使用了湖上三个位置的辐射测量:阿拉奇,阿布森贝尔和阿尔钦(分别位于阿斯旺高坝上游75、280和350公里处)。在1995年至2004年的14天内对数据进行了分析,以提供每两周一次的能源预算蒸发率估算。研究期间,纳赛尔湖的平均蒸发速率为5.88 mm day-1,变异系数为63%。在很宽的时间范围内发现蒸发率的变化很大,季节性变化的变化系数最高(32%),其次是季节内(28%)和年际时间比例(11.6%;夏季平均值)。季节内蒸发变化主要与天气天气变化有关,在寒冷,干燥的空气入侵期间(部分原因是空气和湖泊温度之间的热滞后),往往发生高蒸发事件。蒸发的季节性变化主要由温度和净能量对流驱动,但与风速变化不同步。在年际尺度上,夏季蒸发率的变化与净能量平流的变化密切相关,并且仅显示出与温度或湿度变化的适度联系。

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