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revision 2310 by jpye, Tue Mar 23 06:24:38 2010 UTC revision 2311 by jpye, Mon Nov 1 05:51:07 2010 UTC
# Line 1  Line 1 
1  (*  (*
2      ASCEND model library: radiation heat transfer model      ASCEND model library: radiation heat transfer model
3      Copyright (C) John Pye 2006      Copyright (C) John Pye 2006
4      http://pye.dyndns.org/      http://jpye.dyndns.org/
5    
6      This program is free software; you can redistribute it      This program is free software; you can redistribute it
7      and/or modify it under the terms of the GNU General Public      and/or modify it under the terms of the GNU General Public
# Line 24  Line 24 
24      This is a radiation heat transfer model that is being used      This is a radiation heat transfer model that is being used
25      to simulate (just a rough model) the absorber of a large solar      to simulate (just a rough model) the absorber of a large solar
26      thermal energy system. For more information see      thermal energy system. For more information see
27      http://pye.dyndns.org or google for 'CLFR'. This is a linear      http://jpye.dyndns.org or google for 'CLFR'. This is a linear
28      concentrator, so the cavity is simulated with a two-dimensional      concentrator, so the cavity is simulated with a two-dimensional
29      model. The cavity is trapezoidal in shape, wider at the base      model. The cavity is trapezoidal in shape, wider at the base
30      through which radiation enters.      through which radiation enters.
# Line 172  END cavity; Line 172  END cavity;
172      the model, and an ambient temperature.      the model, and an ambient temperature.
173            
174      We also calculate the 'F_rad' correlation parameter (see      We also calculate the 'F_rad' correlation parameter (see
175      http://pye.dyndns.org for more information).      http://jpye.dyndns.org for more information).
176  *)  *)
177  MODEL cavity_losses REFINES cavity;  MODEL cavity_losses REFINES cavity;
178      h_B, h_N IS_A heat_transfer_coefficient;      h_B, h_N IS_A heat_transfer_coefficient;

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john.pye@anu.edu.au
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