/[volute]/trunk/projects/theory/snapdm/test/PDR_protocol-out.xml
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Contents of /trunk/projects/theory/snapdm/test/PDR_protocol-out.xml

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Revision 684 - (show annotations)
Wed Jul 9 23:33:29 2008 UTC (12 years, 4 months ago) by bourges.laurent
File MIME type: text/xml
File size: 9193 byte(s)
updated samples
1 <?xml version="1.0" encoding="UTF-8" standalone="yes"?>
2 <ns2:aSimulator xmlns:ns2="http://www.ivoa.net/xml/SNAP/v0.1/SimDB">
3 <name>PDR Code 1.2</name>
4 <description>The Meudon PDR code 1.2 includes the radiative transfer method described by Gonzalez-Garcia et al. A and A 2007 </description>
5 <referenceURL>http://aristote.obspm.fr/MIS</referenceURL>
6 <publisherDID>voparis/luth/Pdr/1.0</publisherDID>
7 <created>2008-04-25T12:00:00+02:00</created>
8 <updated>2008-04-25T12:00:00+02:00</updated>
9 <status>published</status>
10 <contact>
11 <role>creator</role>
12 <party>
13 <id>2</id>
14 <xmlId>XMLID_3</xmlId>
15 <ivoId>ivo://voparis/luth/franck_le_petit</ivoId>
16 </party>
17 </contact>
18 <mainContact>
19 <id>2</id>
20 <xmlId>XMLID_3</xmlId>
21 <ivoId>ivo://voparis/luth/franck_le_petit</ivoId>
22 </mainContact>
23 <code>http://aristote.obspm.fr/MIS</code>
24 <version>1.2</version>
25 <parameterGroup>
26 <name>gas parameters</name>
27 <description>Parameters controling gas properties</description>
28 <member>
29 <parameter>
30 <id>15</id>
31 <xmlId>DU_MODPARAM_R.FD_NHINIT</xmlId>
32 </parameter>
33 </member>
34 <member>
35 <parameter>
36 <id>11</id>
37 <xmlId>DU_MODPARAM_R.FD_RADM_INI</xmlId>
38 </parameter>
39 </member>
40 <member>
41 <parameter>
42 <id>8</id>
43 <xmlId>DU_MODPARAM_R.FD_RADP_INI</xmlId>
44 </parameter>
45 </member>
46 </parameterGroup>
47 <parameterGroup>
48 <name>grain parameters</name>
49 <description>Parameters controling grain properties</description>
50 <member>
51 <parameter>
52 <id>12</id>
53 <xmlId>DU_MODPARAM_R.FD_CD</xmlId>
54 </parameter>
55 </member>
56 <member>
57 <parameter>
58 <id>10</id>
59 <xmlId>DU_MODPARAM_R.FD_RV</xmlId>
60 </parameter>
61 </member>
62 <member>
63 <parameter>
64 <id>9</id>
65 <xmlId>DU_MODPARAM_R.FD_LOSNAME</xmlId>
66 </parameter>
67 </member>
68 </parameterGroup>
69 <parameterGroup>
70 <name>algorithm parameters</name>
71 <description>Parameters related to algorithms</description>
72 <member>
73 <parameter>
74 <id>14</id>
75 <xmlId>DU_MODPARAM_R.FD_ITFER</xmlId>
76 </parameter>
77 </member>
78 <member>
79 <parameter>
80 <id>13</id>
81 <xmlId>DU_MODPARAM_R.FD_JFGKH2</xmlId>
82 </parameter>
83 </member>
84 </parameterGroup>
85 <representation>
86 <identity>
87 <id>9</id>
88 <xmlId>R_GAS</xmlId>
89 </identity>
90 <name>gas</name>
91 <description>TODO</description>
92 <child>
93 <name>H</name>
94 <object>
95 <id>11</id>
96 <xmlId>R_H</xmlId>
97 </object>
98 </child>
99 <child>
100 <name>H2</name>
101 <object>
102 <id>7</id>
103 <xmlId>R_H2</xmlId>
104 </object>
105 </child>
106 <child>
107 <name>C+</name>
108 <object>
109 <id>6</id>
110 <xmlId>R_Cp</xmlId>
111 </object>
112 </child>
113 <type>simple mesh cell</type>
114 <label>ISM</label>
115 </representation>
116 <representation>
117 <identity>
118 <id>11</id>
119 <xmlId>R_H</xmlId>
120 </identity>
121 <name>H</name>
122 <type>simple mesh cell</type>
123 </representation>
124 <representation>
125 <identity>
126 <id>7</id>
127 <xmlId>R_H2</xmlId>
128 </identity>
129 <name>H2</name>
130 <child>
131 <name>H2 Level 1</name>
132 <object>
133 <id>2</id>
134 <xmlId>R_H2_Level_1</xmlId>
135 </object>
136 </child>
137 <child>
138 <name>H2 Level 2</name>
139 <object>
140 <id>3</id>
141 <xmlId>R_H2_Level_2</xmlId>
142 </object>
143 </child>
144 <type>simple mesh cell</type>
145 </representation>
146 <representation>
147 <identity>
148 <id>2</id>
149 <xmlId>R_H2_Level_1</xmlId>
150 </identity>
151 <name>H2 Level 1</name>
152 <type>simple mesh cell</type>
153 </representation>
154 <representation>
155 <identity>
156 <id>3</id>
157 <xmlId>R_H2_Level_2</xmlId>
158 </identity>
159 <name>H2 Level 2</name>
160 <type>simple mesh cell</type>
161 </representation>
162 <representation>
163 <identity>
164 <id>6</id>
165 <xmlId>R_Cp</xmlId>
166 </identity>
167 <name>C+</name>
168 <type>simple mesh cell</type>
169 </representation>
170 <representation>
171 <identity>
172 <id>5</id>
173 <xmlId>R_GRAIN</xmlId>
174 </identity>
175 <name>grains</name>
176 <child>
177 <name>Size 1</name>
178 <object>
179 <id>8</id>
180 <xmlId>R_GR_1</xmlId>
181 </object>
182 </child>
183 <child>
184 <name>Size 2</name>
185 <object>
186 <id>4</id>
187 <xmlId>R_GR_2</xmlId>
188 </object>
189 </child>
190 <child>
191 <name>Size 3</name>
192 <object>
193 <id>10</id>
194 <xmlId>R_GR_3</xmlId>
195 </object>
196 </child>
197 <type>simple mesh cell</type>
198 </representation>
199 <representation>
200 <identity>
201 <id>8</id>
202 <xmlId>R_GR_1</xmlId>
203 </identity>
204 <name>grains size 1 ...</name>
205 <type>simple mesh cell</type>
206 </representation>
207 <representation>
208 <identity>
209 <id>4</id>
210 <xmlId>R_GR_2</xmlId>
211 </identity>
212 <name>grains size 2 ...</name>
213 <type>simple mesh cell</type>
214 </representation>
215 <representation>
216 <identity>
217 <id>10</id>
218 <xmlId>R_GR_3</xmlId>
219 </identity>
220 <name>grains size 3 ...</name>
221 <type>simple mesh cell</type>
222 </representation>
223 <parameter>
224 <identity>
225 <id>15</id>
226 <xmlId>DU_MODPARAM_R.FD_NHINIT</xmlId>
227 </identity>
228 <name>Initial proton density</name>
229 <datatype>float</datatype>
230 <cardinality>1</cardinality>
231 <description></description>
232 </parameter>
233 <parameter>
234 <identity>
235 <id>11</id>
236 <xmlId>DU_MODPARAM_R.FD_RADM_INI</xmlId>
237 </identity>
238 <name>Initial ISRF scaling factor (observer side)</name>
239 <datatype>float</datatype>
240 <cardinality>1</cardinality>
241 <description>Scaling factor to Draine radiation field</description>
242 </parameter>
243 <parameter>
244 <identity>
245 <id>8</id>
246 <xmlId>DU_MODPARAM_R.FD_RADP_INI</xmlId>
247 </identity>
248 <name>Initial ISRF scaling factor (backside)</name>
249 <datatype>float</datatype>
250 <cardinality>1</cardinality>
251 <description>Scaling factor to Draine radiation field</description>
252 </parameter>
253 <parameter>
254 <identity>
255 <id>12</id>
256 <xmlId>DU_MODPARAM_R.FD_CD</xmlId>
257 </identity>
258 <name>N(H)/E(B-V)</name>
259 <datatype>float</datatype>
260 <cardinality>1</cardinality>
261 <description>Ratio of proton column density on reddening</description>
262 </parameter>
263 <parameter>
264 <identity>
265 <id>10</id>
266 <xmlId>DU_MODPARAM_R.FD_RV</xmlId>
267 </identity>
268 <name>RV</name>
269 <datatype>float</datatype>
270 <cardinality>1</cardinality>
271 <description>Rv = Av / E(B-V), Total to selective extinction ratio</description>
272 </parameter>
273 <parameter>
274 <identity>
275 <id>9</id>
276 <xmlId>DU_MODPARAM_R.FD_LOSNAME</xmlId>
277 </identity>
278 <name>Line of sight</name>
279 <datatype>float</datatype>
280 <cardinality>1</cardinality>
281 <description>Line of sight dust extinction curve</description>
282 </parameter>
283 <parameter>
284 <identity>
285 <id>14</id>
286 <xmlId>DU_MODPARAM_R.FD_ITFER</xmlId>
287 </identity>
288 <name>itrfer</name>
289 <datatype>float</datatype>
290 <cardinality>1</cardinality>
291 <description>UV radiative transfer method</description>
292 </parameter>
293 <parameter>
294 <identity>
295 <id>13</id>
296 <xmlId>DU_MODPARAM_R.FD_JFGKH2</xmlId>
297 </identity>
298 <name>jfgkh2</name>
299 <datatype>float</datatype>
300 <cardinality>1</cardinality>
301 <description>H2 rotationnal level below wich exact UV radiative transfer is performed</description>
302 </parameter>
303 <physicalProcess>
304 <name>radiative transfer</name>
305 <description>should be read from a vocabulary file</description>
306 <physicslabel>radiative transfer ?</physicslabel>
307 </physicalProcess>
308 </ns2:aSimulator>

msdemlei@ari.uni-heidelberg.de
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