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安第斯山脉-阿塔卡马地区的模拟场地实验:来自实地测量和 WRF 模拟的奥霍斯德尔萨拉多表面能量平衡分量。

Analog Site Experiment in the High Andes-Atacama Region: Surface Energy Budget Components on Ojos del Salado from Field Measurements and WRF Simulations.

机构信息

Department of Meteorology, Eötvös Loránd University, Budapest, Hungary.

Department of Physical Geography, Eötvös Loránd University, Budapest, Hungary.

出版信息

Astrobiology. 2020 Jun;20(6):684-700. doi: 10.1089/ast.2019.2024. Epub 2020 Feb 12.

DOI:10.1089/ast.2019.2024
PMID:32048870
Abstract

Remote sensing data are abundant, whereas surface verification of atmospheric conditions is rare on Mars. Earth-based analogs could help gain an understanding of soil and atmospheric processes on Mars and refine existing models. In this work, we evaluate the applicability of the Weather Research and Forecasting (WRF) model against measurements from the Mars analog High Andes-Atacama Desert. Validation focuses on the surface conditions and on the surface energy budget. Measurements show that the average daily net radiation, global radiation, and latent heat flux amount to 131, 273, and about 10 W/m, respectively, indicating extremely dry atmospheric conditions. Dynamically, the effect of topography is also well simulated. One of the main modeling problems is the inaccurate initial soil and surface conditions in the area. Correction of soil moisture based on and satellite soil moisture measurements, as well as the removal of snow coverage, reduced the surface skin temperature root mean square error from 9.8°C to 4.3°C. The model, however, has shortcomings when soil condition modeling is considered. Sensible heat flux estimations are on par with the measurements (daily maxima around 500 W/m), but surface soil heat flux is greatly overestimated (by 150-500 W/m). Soil temperature and soil moisture diurnal variations are inconsistent with the measurements, partially due to the lack of water vapor representation in soil calculations.

摘要

遥感数据丰富,而火星上大气条件的实地验证却很少。地球模拟可以帮助我们了解火星上的土壤和大气过程,并改进现有的模型。在这项工作中,我们评估了天气研究与预测(WRF)模型对火星模拟高地-阿塔卡马沙漠测量数据的适用性。验证重点是地表条件和地表能量收支。测量结果表明,平均每日净辐射、总辐射和潜热通量分别为 131、273 和 10W/m,表明大气条件极其干燥。从动力学上看,地形的影响也得到了很好的模拟。建模的主要问题之一是该地区初始土壤和地表条件不准确。基于 和卫星土壤湿度测量值修正土壤湿度,并去除积雪覆盖,将地表表皮温度均方根误差从 9.8°C 降低到 4.3°C。然而,当考虑土壤条件建模时,模型存在一些缺陷。感热通量估算与测量值相当(每天约 500W/m),但地表土壤热通量被大大高估(150-500W/m)。土壤温度和土壤湿度的日变化与测量值不一致,部分原因是土壤计算中缺乏水汽表示。

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