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The Influence of the Vertical Coordinate on Simulations of a PV Streamer Crossing the Alps

机译:垂直坐标对穿越阿尔卑斯山的光伏拖缆模拟的影响

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In this note the impact of the vertical coordinate system on upper-tropospheric and lower-stratospheric structures is studied using the fifth-generation Pennsylvania State University-NCAR Mesoscale Model (MM5). Two different simulations are compared. One uses the original sigma coordinate, and the second one uses a modified coordinate system having smoother coordinate surfaces in the free atmosphere. Fields of atmospheric variables, such as wind and temperature, show only a weak signal related to the vertical coordinate system. However, diagnostic quantities involving horizontal and vertical derivatives react very sensitively to the vertical coordinate. The results indicate that, in the presence of steep topography, a meaningful computation of the potential vorticity (PV) field in the tropopause region is possible with the modified coordinate system only. This is mainly because disturbances in the horizontal wind field that appear at first sight unimportant induce large errors in the relative vorticity field with the original coordinate system. In addition, the simulation with the original coordinate indicates a spurious moisture transport across the tropopause above the orography. On the other hand, the impact of the coordinate system on the structure and the amplitude of orographic gravity waves turns out to be quite small.
机译:在本文中,使用第五代宾夕法尼亚州立大学-NCAR中尺度模型(MM5)研究了垂直坐标系对对流层和平流层下部结构的影响。比较了两种不同的模拟。一种使用原始的sigma坐标,第二种使用经过修改的坐标系,在自由大气中该坐标系具有更平滑的坐标表面。大气变量的字段(例如风和温度)仅显示与垂直坐标系有关的微弱信号。但是,涉及水平和垂直导数的诊断量对垂直坐标的响应非常敏感。结果表明,在陡峭地形的情况下,仅通过修改后的坐标系就可以对对流层顶区域的潜在涡度(PV)场进行有意义的计算。这主要是因为乍一看并不重要的水平风场干扰会在原始坐标系的相对涡度场中引起较大的误差。此外,使用原始坐标进行的模拟表明杂散的水分在地形上方的对流层顶上传输。另一方面,坐标系对地形重力波的结构和振幅的影响很小。

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