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首页> 外文期刊>Agricultural and Forest Meteorology >Coupled land-atmosphere modeling of the effects of shrub encroachment on nighttime temperatures.
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Coupled land-atmosphere modeling of the effects of shrub encroachment on nighttime temperatures.

机译:灌木侵占对夜间温度影响的陆地-大气耦合模拟。

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Changes in vegetation cover affect the interactions between the land surface and the overlying atmosphere with important impacts on surface energy balance and microclimate conditions. A major ongoing change in vegetation cover has been observed in dryland regions around the world, where desert shrubs are encroaching into arid grasslands. However, the impact of shrub encroachment on local climate has not been investigated. We used a mesoscale model coupled with a Land Surface Model to simulate the effects of shrub encroachment on nighttime temperatures. These effects can have an important effect on the establishment of shrubs and need to be represented well by land surface parameterization schemes that are also used in long-term climate simulations. Idealized 2-dimensional simulations were conducted with vegetation types corresponding to shrubland and grassland typical of the Northern Chihuahuan Desert. Simulated surface energy and radiation fluxes and near-ground air temperature were analyzed and compared with observations. Results show a good comparison between the simulations and observations as long as vegetation parameters are adjusted in the model to be in better agreement with the observed parameters. The sensitivity of the nighttime air temperatures to green vegetation fraction, albedo, emissivity and roughness length is investigated. The results indicate that the green vegetation fraction is the key factor that causes the higher nighttime temperature in shrubland than in adjacent grassland, mainly by its effects on soil surface insulation, soil thermal diffusivity, and therefore on ground heat fluxes.
机译:植被覆盖的变化会影响陆地表面和上层大气之间的相互作用,并对地表能量平衡和微气候条件产生重要影响。在世界各地的干旱地区,观察到植被覆盖的重大变化,那里的沙漠灌木正侵蚀着干旱的草原。但是,尚未调查灌木入侵对当地气候的影响。我们使用了中尺度模型和陆地表面模型来模拟灌木入侵对夜间温度的影响。这些影响可能对灌木的形成产生重要影响,需要通过长期用于气候模拟的陆面参数化方案很好地体现出来。使用与北部奇瓦瓦沙漠典型的灌木和草地相对应的植被类型进行了理想的二维模拟。分析了模拟的表面能和辐射通量以及近地空气温度,并与观测值进行了比较。只要在模型中调整植被参数使其与观测参数更好地吻合,结果就可以很好地比较模拟结果和观测结果。研究了夜间气温对绿色植被分数,反照率,辐射率和粗糙度长度的敏感性。结果表明,绿色植被分数是造成灌木林夜间温度高于邻近草地的关键因素,主要是由于其对土壤表面隔热,土壤热扩散率以及地面热通量的影响。

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