bbThermodynamic quantities and Urmia Sea water evaporation.

Nosrat Heidari, Mina Roudgar, Neda Ebrahimpour
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引用次数: 10

Abstract

The relation between climatic parameters (relative air humidity) and the water activity of the Urmia Sea water determines the possible maximum evaporation of the lake. Using the Pitzer thermodynamic approach, the activity of the Urmia Lake water during evaporation was calculated and compared to the present relative air humidity above the water. Present climatic conditions allow the Urmia Sea water to evaporate down to water with activity of 0.55, corresponding to the lowest air humidity measured over the lake. This water activity falls in the range of halite precipitation, while carnalite precipitation starts at somewhat lower (a H2O = 0.499) point. Our dynamic model predicts that for air humidity as low as 55% (reflecting present climate conditions), the Urmia Sea level may drop to as low as 1270 m (i. e., 1270 m above mean sea level). At that point, the lake water volume will have a volume of 11 km3. For the sake of comparison, at the beginning of 1990, the level of the lake was 1275 m, its volume was 25 km3, and its surface area was 5145 km2.

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热力学量和Urmia海水蒸发。
气候参数(相对空气湿度)和乌尔米亚海水活度之间的关系决定了该湖可能的最大蒸发量。利用Pitzer热力学方法,计算了乌尔米亚湖水在蒸发过程中的活度,并与目前水面上方的相对空气湿度进行了比较。目前的气候条件允许乌尔米亚海水蒸发成活度为0.55的水,与湖上测量到的最低空气湿度相对应。该水活度落在岩盐沉淀的范围内,而光卤石沉淀开始于较低的点(H2O = 0.499)。我们的动态模型预测,如果空气湿度低至55%(反映当前气候条件),乌尔米亚海平面可能降至1270米(即比平均海平面高1270米)。在这一点上,湖水的体积将是11立方千米。作为比较,1990年初,该湖的水位为1275 m,体积为25 km3,表面积为5145 km2。
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