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首页> 外文期刊>Meteorology and Atmospheric Physics >Numerical simulations of wind and temperature structure within an Alpine lake basin, Lake Tekapo, New Zealand
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Numerical simulations of wind and temperature structure within an Alpine lake basin, Lake Tekapo, New Zealand

机译:新西兰特卡波湖高山湖泊流域内风和温度结构的数值模拟

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摘要

High-resolution numerical model simulations have been used to study the local and mesoscale thermal circulations in an Alpine lake basin. The lake (87 km) is situated in the Southern Alps, New Zealand and is located in a glacially excavated rock basinsurrounded by mountain ranges that reach 3000m in height. The mesoscale model used (RAMS) is a three-dimensional non-hydrostatic model with a level 2.5 turbulence closure scheme. The model demonstrates that thermal forcing at local (within the basin) and regional (coast-to-basin inflow) scales drive the observed boundary-layer airflow in the lake basin during clear anticyclonic summertime conditions. The results show that the lake can modify (perturb) both the local and regional wind systems. Followingsunrise, local thermal circulations dominate, including a lake breeze component that becomes embedded within the background valley wind system. This results in a more divergent flow in the basin extending across the lake shoreline. However, a closed lake breeze circulation is neither observed nor modelled. Modelling results indicate that in the latter part of the day when the mesoscale (coast-to-basin) inflow occurs, the relatively cold pool of lake air in the basin can cause the intrusion to decouplefrom the surface. Measured data provide qualitative and quantitative support for the model results.
机译:高分辨率数值模型模拟已用于研究高山湖泊流域的局部和中尺度热循环。湖(87公里)位于新西兰的南阿尔卑斯山,坐落在冰川发掘的岩石盆地中,周围环绕着海拔3000m的山脉。使用的中尺度模型(RAMS)是具有2.5级湍流闭合方案的三维非静液压模型。该模型表明,在晴朗的反气旋夏季条件下,局部(盆地内)和区域(海岸到盆地流入)尺度的热强迫驱动了湖盆中观测到的边界层气流。结果表明,该湖泊可以改变(扰动)当地和区域的风系统。日出后,局部热循环占主导地位,其中包括微风的湖泊,该成分被嵌入背景谷风系统中。这导致整个湖岸线中流域的水流更加分散。但是,既没有观察到也没有建立封闭的湖风循环。模拟结果表明,在当天中后期(从海岸到盆地)流入的后期,流域中相对较冷的湖水池可能导致入侵与地表分离。测得的数据为模型结果提供了定性和定量的支持。

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