大孔径闪烁仪面通量研究进展

Sun Min-zhang, Lu Li, Wang Jie-min, Liu Shao-min
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引用次数: 4

摘要

地表通量的确定,包括感热通量和潜热通量,对于涉及气候、农业、水文和水资源管理等许多方面的问题是非常重要的。然而,在几公里到几十公里的尺度上,特别是在非均质地表上,对面通量的观测和研究仍然非常困难。近年来兴起的大孔径闪烁仪(LAS)为解决这一问题提供了新的视角。基于湍流大气中的光闪烁,它可以通过在水平路径上发射一束光来测量感热通量。然后,根据表面能量平衡方程,推导出潜热通量。该系统适用于不同类型的陆地表面,无论是均匀的还是非均匀的。LAS通量测量与涡旋相关系统测量结果的试验比较表明,两者吻合较好。光束高度、风速、粗糙度长度、零面位移、波文比和净辐射等因素是影响激光遥感测量地表蒸散发精度的关键因素。介绍了该系统的基本原理和算法。近年来LAS的一个重要应用是对SEBAL和SEBS等遥感模型反演的面通量进行验证。最后,讨论了大孔径闪烁仪在未来应用的发展趋势。
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ADVANCES IN THE STUDY OF AREAL SURFACE FLUXES WITH LARGE APERTURE SCINTILLOMETER
It is very important to determine land surface fluxes, including sensible heat fluxes and latent heat fluxes, for the issues involving many aspects of climate, agriculture, hydrology, and water resources management. However, it is still very difficult to observe and study areal fluxes in the scale of several to tens kilometers, especially on heterogeneous land surface. The Large Aperture Scintillometer (LAS), which is becoming popular in recent years, offers a new perspective to solve this problem. Based on light scintillation in the turbulent atmosphere,it can measure sensible heat fluxes by emitting a beam of light over a horizontal path. Then, latent heat fluxes can be derived according to surface energy balance equation. The LAS is adapted to different kinds of land surface, homogeneous or heterogeneous. Test comparisons of LAS flux measurement with the measurements by eddy correlation system show good agreement. There are some key factors, which influence the precision of areal evapotranspiration determined by LAS, such as beam height, wind speed, roughness length, zero plane displacement, Bowen ratio, and net radiation, etc. Basic principle and some algorithms are introduced. A prosperous utilization of LAS in recent years is in the validation of areal surface fluxes retrieved from remote sensing models, such as the SEBAL and SEBS. Finally, this paper discusses the development trend of applying the large aperture scintillometer in the future.
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