htrdr

Solving radiative transfer in heterogeneous media
git clone git://git.meso-star.fr/htrdr.git
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commit a96d16dbe2907170f93031ddd8f6d3d17aef170a
parent 2802b0088310967ad201da5c3a3353ec30afa401
Author: Vincent Forest <vincent.forest@meso-star.com>
Date:   Thu,  4 Jun 2020 17:43:24 +0200

Fix the htrdr man page

Diffstat:
Mdoc/htrdr.1.txt.in | 14+++++++-------
1 file changed, 7 insertions(+), 7 deletions(-)

diff --git a/doc/htrdr.1.txt.in b/doc/htrdr.1.txt.in @@ -192,20 +192,20 @@ OPTIONS nanometers with respect to the XYZ CIE 1931 tristimulus values. This is the default comportment of *htrdr*. - **lw**=**_wlen-min_*,*_wlen-max_*;; + **lw**=*_wlen-min_*,*_wlen-max_*;; perform the spectral sampling continuously in the [_wlen-min_, _wlen-max_] wavelength range (wavelength must be provided in nanometers) according to the Planck function for a reference temperature. If _wlen-min_ and _wlen-max_ are equals the computation is monochromatic. *lw* means for longwave but is here a code word that really means "computation of radiance using the internal source of radiation": in other words, radiation is - emitted by the medium and its boundaries. Because the application is mainly - for the terrestrial atmosphere, internal radiation is emitted in the - thermal longwave part of the electromagnetic spectrum. Therefore the - default value of the reference temperature used in the spectral sampling is - fixed at 290 K. + emitted by the medium and its boundaries. Because the application is for + the terrestrial atmosphere, internal radiation is emitted in the thermal + longwave part of the electromagnetic spectrum. Therefore the default value + of the reference temperature used in the spectral sampling is fixed at 290 + K. - **sw**=**_wlen-min;; + **sw**=*_wlen-min_*,*_wlen-max_*;; perform the spectral sampling continuously in the [_wlen-min_, _wlen-max_] wavelength range (wavelength must be provided in nanometers) according to the Planck function for a reference temperature. If _wlen-min_ and