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Climate changes impacts on the surface albedo of a forest ecosystem based on MODIS satellite data

机译:基于MODIS卫星数据的森林生态系统的表面反照对气候变化影响

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Surface albedo is one of the most important biophysical parameter responsible for energy balance control and the surface temperature and boundary-layer structure of the atmosphere. Forest land surface albedo is also highly variable temporally showing both diurnal as well as seasonal variations. In forest systems, albedo controls the microclimate conditions which affects ecosystem physical, physiological, and biogeochemical processes such as energy balance, evapotranspiration, photosynthesis. Due to anthropogenic and natural factors, land cover and land use changes result is the land surfaces albedo change. The main aim of this paper is to investigate the albedo patterns due to the impact of atmospheric pollution and climate variations of a forest ecosystem Branesti-Cemica, placed to the North-East of Bucharest city, Romania based on satellite Landsat ETM+, IKONOS and MODIS data and climate station observations. Our study focuses on 3 years of data (2003-2005), each of which had a different climatic regime.. As the physical climate system is very sensitive to surface albedo, forest ecosystems could significantly feedback to the projected climate change modeling scenarios through albedo changes. The results of this research have a number of applications in weather forecasting, climate change, and forest ecosystem studies.
机译:表面Albedo是负责能量平衡控制和大气的表面温度和边界层结构负责的最重要的生物物理参数之一。林地表面Albedo在暂时显示昼夜和季节性变化的高度变化。在森林系统中,Albedo控制了影响生态系统物理,生理学和生物地球化学过程的微气候条件,如能量平衡,蒸发蒸腾,光合作用。由于人为和自然因素,陆地覆盖和土地利用变化结果是陆地面积的变化。本文的主要目的是调查由于大气污染和森林生态系统Branesti-CEMICA的影响,罗马尼亚州罗马西亚的东北部的森林污染和气候变化因罗马尼亚州的东北而受到影响,基于卫星Landsat ETM +,Ikonos和Modis数据和气候站观测。我们的研究侧重于3年的数据(2003-2005),其中每一个都有不同的气候制度。由于物理气候系统对地表Albedo非常敏感,因此森林生态系统可能会通过反照会显着反馈预计的气候变化建模情景变化。该研究的结果在天气预报,气候变化和森林生态系统研究中具有许多应用。

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