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Simulation of oasis breeze circulation in the arid region of the Northwestern China

机译:西北干旱区绿洲微风环流的模拟

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In this paper, the process of oasis-desert circulation (ODC) is simulated by MM5V3.5 model through designing an ideal oasis-desert scheme and assuming that initial atmosphere is at rest (V = 0). The findings showed that the key of forming special oasis boundary structure is the difference of energy and water between oasis and desert. The evaporation of oasis surface consumes heat energy, and the low temperature of oasis causes an oasis breeze circulation (OBC), which drives an ODC with a downdraft over the oasis and an updraft over the desert. Later, the cold, dry and stable boundary over oasis is gradually formed, on the contrary, the atmospheric boundary over desert on the edge of oasis is hot, humid and unstable and its height is about 600 hPa. The updraft over the desert forms a wet ring that acts as a vertical wall weakening the low-level moisture exchange between the oasis and desert. The downdraft of OBC increases the atmospheric stability that reduces the oasis evaporation. The low-level outflow from the oasis (into the desert) prevents the dry, hot air flowing from the desert into the oasis. Thus an oasis self-preservation mechanism may be formed due to OBC. The horizontal area influenced by oasis is twice as oasis area and the vertical range is four times as oasis. The ODC is strong in the daytime and reaches the strongest at 17:00, and the influenced area is the largest at 20:00.
机译:本文通过设计理想的绿洲-沙漠方案并假设初始大气处于静止状态(V = 0),通过MM5V3.5模型对绿洲-沙漠循环(ODC)过程进行了模拟。研究结果表明,形成特殊绿洲边界结构的关键是绿洲和沙漠之间的能量和水的差异。绿洲表面的蒸发会消耗热能,而绿洲的低温会导致绿洲微风循环(OBC),从而驱动ODC,其上的绿洲有向下的上升,而沙漠上有上升的上升。后来,绿洲上逐渐形成了寒冷,干燥,稳定的边界,相反,绿洲边缘的沙漠上空的大气边界又热,湿,不稳定,其高度约为600 hPa。沙漠上空的上升气流形成一个湿环,该湿环充当垂直壁,削弱了绿洲和沙漠之间的低水平水分交换。 OBC的下沉增加了大气的稳定性,从而减少了绿洲的蒸发。来自绿洲的少量水流(流入沙漠)阻止了干燥的热空气从沙漠流入绿洲。因此,由于OBC,可以形成绿洲自保存机制。绿洲影响的水平面积是绿洲面积的两倍,垂直范围是绿洲的四倍。 ODC在白天最强,在17:00达到最强,受影响的区域在20:00达到最大。

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