...
首页> 外文期刊>Hydrology and Earth System Sciences >Evaporation in a Mediterranean environment by energy budget and Penman methods, Lake Baratz, Sardinia, Italy
【24h】

Evaporation in a Mediterranean environment by energy budget and Penman methods, Lake Baratz, Sardinia, Italy

机译:通过能源预算和Penman方法在地中海环境中蒸发,意大利撒丁岛巴拉茨湖

获取原文

摘要

In Mediterranean environments, evaporation is a key component of lake water budgets. This applies to Lake Baratz in Sardinia, Italy, a closed lake that almost dried up in 2008 after a succession of years with low seasonal rainfall. We used the energy budget method and Penman's equation to estimate evaporation over Lake Baratz. We measured, using a raft station, water temperature at the surface, at 1, 2, 4, 6 m depth and at the bottom of the lake, as well as air temperature, relative humidity, wind speed, and net radiation over a period of 3 years. We also compared Penman's equation and the energy budget method in two other climatic zones using published data. Our results indicate that mean yearly evaporation over Lake Baratz was 950 mm. On an annual scale, evaporation estimated by Penman's method omitting heat storage as is usually done was 18% higher than by the energy budget method that included heat storage, with monthly differences ranging between ?38 and +60%. Including the heat storage term in Penman's equation changed the monthly values but did not change the yearly value significantly. Solar radiation and heat storage were found to be the most important energy fluxes to and from the lake and had the greatest effect on evaporation rates for the energy budget method. The bias between the two methods has a seasonal cycle due to the storage and release of energy from the lake. Energy advected to and from the lake by precipitation, surface water and ground water had minor effect on evaporation rates. Lake Baratz, like other lakes in a Mediterranean environment, is particularly sensitive to the summer hot and dry climate. In contrast, we found that rates of evaporation estimated from Penman and the energy budget methods over tropical African lakes were nearly constant over the entire year and the difference between the two methods smaller. Difference between the two methods for North American lakes is also smaller probably owing to the ice-cover season and to lower radiation and lower temperatures during summer.
机译:在地中海环境中,蒸发是湖泊水预算的重要组成部分。这适用于意大利撒丁岛的巴拉茨湖,这是一个封闭的湖泊,经过连续数年的季节性降雨之后,在2008年几乎干almost。我们使用能量预算方法和Penman方程估算了巴拉茨湖上的蒸发量。我们使用筏子站测量了湖水表面,1、2、4、6 m深度和湖底的水温,以及一段时间内的气温,相对湿度,风速和净辐射3年。我们还使用已发布的数据在其他两个气候带中比较了彭曼方程和能量收支方法。我们的结果表明,巴拉特湖上的年均蒸发量为950毫米。在年度范围内,通常采用Penman方法省去储热的方法估算出的蒸发量要比包括储热的能量预算方法高出18%,每月差异在38%至+ 60%之间。在彭曼方程式中包括蓄热项可以改变月度值,但不会显着改变年度值。对于能量预算方法,太阳辐射和热量存储是往返湖泊的最重要的能量通量,并且对蒸发速率的影响最大。由于湖泊能量的存储和释放,两种方法之间的偏差具有季节性周期。降水,地表水和地下水流入和流出湖泊的能量对蒸发速率的影响很小。与地中海环境中的其他湖泊一样,巴拉茨湖对夏季炎热干燥的气候特别敏感。相比之下,我们发现,根据Penman和能源预算方法估算的热带非洲湖泊的蒸发速率在全年中几乎保持恒定,而两种方法之间的差异较小。北美湖泊的两种方法之间的差异也较小,这可能是由于冰盖季节以及夏季辐射和温度较低所致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号