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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Effects of diurnal, intra-seasonal and seasonal climate variability on the energy balance of a small subtropical reservoir
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Effects of diurnal, intra-seasonal and seasonal climate variability on the energy balance of a small subtropical reservoir

机译:日,季节内和季节气候变化对小型亚热带水库能量平衡的影响

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摘要

In order to gain a full understanding of the importance of interactions between the atmosphere and inland water bodies, there is a need to analyse these exchanges in different regions throughout the world and under a wide range of weather and climate conditions. A 2-year time series of energy balance measurements was made at a small reservoir situated in southeast Queensland, Australia. Measurements were used to establish diurnal, intra-seasonal and seasonal cycles of evaporation, while synoptic weather maps and local weather station data were used to relate variations in water surface-atmosphere energy exchanges to synoptic and mesoscale weather phenomena. Consistent diurnal peaks in latent heat flux during the afternoon were observed throughout this study as a result of strong dry winds coinciding with peak water surface temperatures. Occasional intra-seasonal pulses in latent heat flux (i.e. evaporation) in winter and spring were associated with the passage of cold fronts over southern Queensland, which brought strong dry westerly winds. The average annual evaporative water loss from the reservoir during the 2-year measurement campaign was 991mm year(-1). It is thought that differences between the annual evaporation totals for the 2 years of this study may have been related to differences in the frequency of overcast conditions as a result of a change in the phase of the El Nino-Southern Oscillation.
机译:为了充分了解大气层与内陆水体之间相互作用的重要性,有必要分析世界各地不同地区以及各种天气和气候条件下的这些交换。在澳大利亚昆士兰州东南部的一个小型水库中进行了为期2年时间的能量平衡测量。测量用于建立蒸发的昼夜,季节内和季节周期,而天气天气图和当地气象站数据则用于将水表面-大气能量交换的变化与天气天气和中尺度天气现象联系起来。在整个研究过程中,由于强劲的干燥风与水面峰值温度的一致,在整个下午观察到了潜热通量的连续昼夜峰值。冬季和春季偶尔出现的潜热通量季节内脉冲(即蒸发)与昆士兰州南部的冷锋经过有关,带来了干燥的西风。在为期2年的测量活动中,油藏的年均蒸发水损失为991mm年(-1)。据认为,由于厄尔尼诺-南方涛动的相位变化,本研究两年的年蒸发总量之间的差异可能与阴天频率的差异有关。

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