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Merge pull request #64 from smartlixx/main
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Sync with overleaf 2024-11-28 and 12-09
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smartlixx authored Dec 13, 2024
2 parents 84d9a3a + 5ec8baf commit f20b248
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6 changes: 3 additions & 3 deletions CoLM-Latex/CoLM.tex
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Expand Up @@ -4,9 +4,9 @@
\usepackage[dvipsnames]{xcolor}
\usepackage[UTF8,heading=true,scheme=chinese]{ctex}
\ctexset{
contentsname=目 录,
listtablename=表 格,
listfigurename=插 图,
contentsname=目录,
listtablename=表格,
listfigurename=插图,
part={
pagestyle = empty
},
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6 changes: 3 additions & 3 deletions CoLM-Latex/地表通量方案/辐射通量方案.tex
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Expand Up @@ -617,19 +617,19 @@ \section{植被反照率---二流近似模型}\label{植被反照率二流近似
\end{equation}
方程的解为:
\begin{equation}\label{eq:2s_dir_up}
I^{\uparrow}=h_{1} {\mathrm e}^{-K x / \sigma}+h_{2} {\mathrm e}^{-h x}+h_{3} {\mathrm e}^{h x}
I^{\uparrow}=\frac {h_{1}}{\sigma} {\mathrm e}^{-K x}+h_{2} {\mathrm e}^{-h x}+h_{3} {\mathrm e}^{h x}
\end{equation}
%
\begin{equation}\label{eq:2s_dir_dw}
I^{\downarrow}=h_{4} {\mathrm e}^{-K x / \sigma}+h_{5} {\mathrm e}^{-h x}+h_{6} {\mathrm e}^{h x}
I^{\downarrow}=\frac {h_{4}}{\sigma} {\mathrm e}^{-K x}+h_{5} {\mathrm e}^{-h x}+h_{6} {\mathrm e}^{h x}
\end{equation}
因此可以得到在冠层顶部的漫射辐射通量(即反照率)为:
\begin{equation}
\alpha_{\mathrm{veg, dir}}=I^{\uparrow}(0)=\frac{h_{1}}{\sigma}+h_{2}+h_{3}
\end{equation}
通过植被向下的辐射通量,即到达地面的辐射通量为:
\begin{equation}
\tau_{\mathrm{veg, dir}}=I^{\downarrow}\left(L_{\rm AI}\right)=\frac{h_{4}}{\sigma} {\mathrm e}^{-K} L_{\rm AI}+h_{5} {\mathrm e}^{-h L_{\rm AI}}+h_{6} {\mathrm e}^{h L_{\rm AI}}
\tau_{\mathrm{veg, dir}}=I^{\downarrow}\left(L_{\rm AI}\right)=\frac{h_{4}}{\sigma} {\mathrm e}^{-K L_{\rm AI}} +h_{5} {\mathrm e}^{-h L_{\rm AI}}+h_{6} {\mathrm e}^{h L_{\rm AI}}
\end{equation}

漫射入射辐射时,边界条件为:
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