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A New Hybrid Snow Light Scattering Model Based on Geometric Optics Theory and Vector Radiative Transfer Theory

机译:基于几何光学理论和矢量辐射传递理论的混合雪光散射模型

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Light scattering models of snow are very important for the remote sensing of snow. Many previous models have used unrealistic assumptions about the snow particle shape and microstructure. In this paper, a new model is proposed, wherein a bicontinuous medium is used to simulate the snow microstructure, and geometric optics theory is used in combination with the Monte Carlo method to simulate the scattering properties of snow. Then, using the radiative transfer equation, the snow reflectance, including the polarized reflectance, can be simulated. Unlike other models that use Monte Carlo ray tracing, the new model is computationally efficient and can be used for massive simulations and practical applications. The simulation results of the new model are compared with the ground measurements and simulation results of a traditional model based on the Mie theory. Through validations and comparisons, the new model is shown to demonstrate a significantly improved capability in simulating the bidirectional reflectance of snow. The importance of the grain shape and microstructure modeling in the light scattering models of snow is confirmed by the comparison of the simulation results.
机译:雪的光散射模型对于雪的遥感非常重要。先前的许多模型都使用了关于雪粒形状和微结构的不切实际的假设。本文提出了一种新的模型,其中使用双连续介质模拟雪的微观结构,将几何光学理论与蒙特卡洛方法结合起来模拟雪的散射特性。然后,使用辐射传递方程,可以模拟雪的反射率,包括偏振反射率。与其他使用蒙特卡洛射线追踪的模型不同,新模型在计算上非常有效,可用于大规模仿真和实际应用。将新模型的仿真结果与基于Mie理论的传统模型的地面测量和仿真结果进行比较。通过验证和比较,新模型显示出在模拟雪的双向反射方面具有显着提高的功能。通过对模拟结果的比较,证实了颗粒形状和微观结构模型在雪的光散射模型中的重要性。

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