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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Physically based snow albedo model for calculating broadband albedos and the solar heating profile in snowpack for general circulation models
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Physically based snow albedo model for calculating broadband albedos and the solar heating profile in snowpack for general circulation models

机译:基于物理的积雪反照率计算模型宽带反射率和太阳能加热概要文件在积雪环流模型

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摘要

A physically based snow albedo model (PBSAM), which can be used in a general circulation model, is developed. PBSAM calculates broadband albedos and the solar heating profile in snowpack as functions of snow grain size and concentrations of snow impurities, black carbon and mineral dust, in snow with any layer structure and under any solar illumination condition. The model calculates the visible and near-infrared (NIR) albedos by dividing each broadband spectrum into several spectral subbands to simulate the change in spectral distribution of solar radiation in the broadband spectra at the snow surface and in the snowpack. PBSAM uses (1) the look-up table method for calculations of albedo and transmittance in spectral subbands for a homogeneous snow layer, (2) an "adding" method for calculating the effect of an inhomogeneous snow structure on albedo and transmittance, and (3) spectral weighting of radiative parameters to obtain the broadband values from the subbands. We confirmed that PBSAM can calculate the broadband albedos of single- and two-layer snow models with good accuracy by comparing them with those calculated by a spectrally detailed radiative transfer model (RTM). In addition, we used radiation budget measurements and snow pit data obtained during the two winters from 2007 to 2009 at Sapporo, Hokkaido, Japan, for simulation of the broadband albedos by PBSAM and compared the results with the in situ measurements. A five-layer snow model with one visible subband and three NIR subbands were necessary for accurate simulation. Comparison of solar heating profiles calculated by PBSAM with those calculated by the spectrally detailed RTM showed that PBSAM calculated accurate solar heating profiles when at least three subbands were used in both the visible and NIR bands.
机译:基于物理的积雪反照率模型(PBSAM),可用于大气环流模型,是发达国家。和太阳能加热在积雪雪粒径和浓度的函数雪杂质,黑碳和矿物质灰尘,与任何层结构和雪太阳能照明条件。计算了可见光和近红外(NIR)地表反射率除以每个宽带频谱几个光谱模拟变化部分波段在太阳辐射的光谱分布宽带光谱在雪面积雪。反照率的计算方法在光谱部分波段透光率均匀雪层,(2)一个“添加”的方法计算一个不均匀的效果雪结构反射率和透射率,(3)光谱辐射参数的权重获得部分波段宽带值。确认PBSAM可以计算宽带地表反射率的单身,两层雪模型良好的精度与那些通过比较它们一个可怕地详细计算了辐射传输模式(RTM)。辐射测量和雪坑预算数据从2007年到2009年期间获得两个冬天在北海道札幌,日本,模拟的宽带反射率PBSAM和比较了结果与原位测量。五层雪模型与一个可见的部分波段和三个近红外部分波段是必要的准确的模拟。配置文件由PBSAM与计算计算的幽灵似地详细的RTM显示太阳能加热,PBSAM计算准确概要文件时,至少有三次能带在可见光和近红外波段。

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