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4c039060 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16/*
17$Log$
43ea1292 18Revision 1.10 2002/10/14 14:57:39 hristov
19Merging the VirtualMC branch to the main development branch (HEAD)
20
b9d0a01d 21Revision 1.8.12.1 2002/07/24 10:08:27 alibrary
22Updating VirtualMC
23
24Revision 1.9 2002/07/23 13:08:46 morsch
25All volume names start with "Q".
26
e035db65 27Revision 1.8 2000/10/02 21:28:15 fca
28Removal of useless dependecies via forward declarations
29
94de3818 30Revision 1.7 2000/06/11 12:38:00 morsch
31Coding rule violations corrected
32
b43eb0dc 33Revision 1.6 1999/10/06 19:57:07 fca
34Correct materials in pipe
35
a2ff21a6 36Revision 1.5 1999/09/29 09:24:30 fca
37Introduction of the Copyright and cvs Log
38
4c039060 39*/
40
77289c85 41///////////////////////////////////////////////////////////////////////////////
42// //
43// Beam pipe class //
44// //
45//Begin_Html
46/*
1439f98e 47<img src="picts/AliPIPEClass.gif">
77289c85 48*/
49//End_Html
50// //
51///////////////////////////////////////////////////////////////////////////////
52
53#include "AliPIPEv3.h"
54#include "AliRun.h"
94de3818 55#include "AliMagF.h"
77289c85 56
57ClassImp(AliPIPEv3)
58
59//_____________________________________________________________________________
60AliPIPEv3::AliPIPEv3()
61{
62 //
63 // Default constructor for beam pipe
64 //
65}
66
67//_____________________________________________________________________________
68AliPIPEv3::AliPIPEv3(const char *name, const char *title)
69 : AliPIPE(name,title)
70{
71 //
72 // Standard constructor for beam pipe
73 //
74}
75
76//_____________________________________________________________________________
77void AliPIPEv3::CreateGeometry()
78{
79 //
80 // Create Beam Pipe geometry
81 //
82 //Begin_Html
83 /*
1439f98e 84 <img src="picts/AliPIPE.gif">
77289c85 85 */
86 //End_Html
87 //Begin_Html
88 /*
1439f98e 89 <img src="picts/AliPIPETree.gif">
77289c85 90 */
91 //End_Html
92
77289c85 93 Float_t tpar[3], dzmo, zpos;
94 Float_t bepar[3], alpar[3],sspar[3],flange[3],vacpar[3];
95 Float_t bellow[3];
96// Float_t undul[3];
97// const Double_t z_flange = 150;
98//for undulated structure
99 char cn18[][5]={"CN01","CN02","CN03","CN04","CN05","CN06","CN07","CN08"};
100 char cn48[][5]={"CN21","CN22","CN23","CN24","CN25","CN26","CN27","CN28"};
101// char undul[][5]={'BELO','UNDL'};
102 Float_t zundul;
103 Float_t rundul;
104 Float_t pitch;
105 Float_t thick;
106
107
ad51aeb0 108 Int_t *idtmed = fIdtmed->GetArray()-1999;
77289c85 109// the mother of all beam pipes
110
111 tpar[0] = 0.;
112 tpar[1] = 10.;
113 tpar[2] = 1400. / 2;
114 dzmo = tpar[2];
cfce8870 115 gMC->Gsvolu("QQMO", "TUBE", idtmed[2015], tpar, 3);
77289c85 116
117// All beam pipe details as per the provisonal drawings given by Lars
118// Leistam on 31.5.99
119
120// Beryllium beam pipe, length 56.6 cm, centered at vertex
121
122 bepar[0]=0.0;
123 bepar[1]=3.0;
124 bepar[2]=28.3;
125 zpos=0.0;
126 vacpar[0]=0.0;
127 vacpar[1]=2.9;
128 vacpar[2]=bepar[2];
129 //
cfce8870 130 gMC->Gsvolu("QQBE", "TUBE", idtmed[2004], bepar, 3);
e035db65 131 gMC->Gsvolu("QAC1", "TUBE", idtmed[2015], vacpar, 3);
132 gMC->Gspos("QAC1", 1, "QQBE", 0., 0., 0., 0, "ONLY");
cfce8870 133 gMC->Gspos("QQBE", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 134
135 // now beam pipes only in negative z-part for use in PMD.
136
137 // SS Flange 4 cm thick, 5.8 cm ID, 6.3 cm OD
138 flange[0]=0.0;
139 flange[1]=3.15;
140 flange[2]=2.0;
141 zpos = zpos -bepar[2] - flange[2];
142 vacpar[0]=0.0;
143 vacpar[1]=2.9;
144 vacpar[2]=flange[2];
145 //
cfce8870 146 gMC->Gsvolu("QFL1", "TUBE", idtmed[2018], flange, 3);
e035db65 147 gMC->Gsvolu("QAC2", "TUBE", idtmed[2015], vacpar, 3);
148 gMC->Gspos("QAC2", 1, "QFL1", 0., 0., 0., 0, "ONLY");
cfce8870 149 gMC->Gspos("QFL1", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 150
151 // Aluminium alloy beam pipe, 1mm thick, 230 cm long
152 alpar[0]=0.0;
153 alpar[1]=3.0;
154 alpar[2]=115.;
155 zpos = zpos - flange[2] - alpar[2];
156
157 vacpar[0]=0.0;
158 vacpar[1]=2.9;
159 vacpar[2]=alpar[2];
cfce8870 160 gMC->Gsvolu("QQAL", "TUBE", idtmed[2003], alpar, 3);
e035db65 161 gMC->Gsvolu("QAC3", "TUBE", idtmed[2015], vacpar, 3);
162 gMC->Gspos("QAC3", 1, "QQAL", 0., 0., 0., 0, "ONLY");
cfce8870 163 gMC->Gspos("QQAL", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 164
165
166 // SS tube 2.0 cm long, 0.8 mm thick, 5.96 cm OD
167
168 sspar[0]=0.0;
169 sspar[1]=2.98;
170 sspar[2]=1.0;
171 zpos = zpos - alpar[2] - sspar[2];
172
173 vacpar[0]=0.0;
174 vacpar[1]=2.9;
175 vacpar[2]=sspar[2];
cfce8870 176 gMC->Gsvolu("QSS1", "TUBE", idtmed[2018], sspar, 3);
e035db65 177 gMC->Gsvolu("QAC4", "TUBE", idtmed[2015], vacpar, 3);
178 gMC->Gspos("QAC4", 1, "QSS1", 0., 0., 0., 0, "ONLY");
cfce8870 179 gMC->Gspos("QSS1", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 180
181
182 // SS Flange 3 cm thick 7.4 cm OD, 5.8 cm ID
183
184 flange[0]=0.0;
185 flange[1]=3.7;
186 flange[2]=1.5;
187 zpos = zpos - sspar[2] - flange[2];
188
189 vacpar[0]=0.0;
190 vacpar[1]=2.9;
191 vacpar[2]=flange[2];
cfce8870 192 gMC->Gsvolu("QFL2", "TUBE", idtmed[2018], flange, 3);
e035db65 193 gMC->Gsvolu("QAC5", "TUBE", idtmed[2015], vacpar, 3);
194 gMC->Gspos("QAC5", 1, "QFL2", 0., 0., 0., 0, "ONLY");
cfce8870 195 gMC->Gspos("QFL2", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 196
197
198 // SS tube 4.0 cm long, 0.8 mm thick, 5.96 cm OD
199
200 sspar[0]=0.0;
201 sspar[1]=2.98;
202 sspar[2]=2.0;
203 zpos = zpos - flange[2] - sspar[2];
204
205 vacpar[0]=0.0;
206 vacpar[1]=2.9;
207 vacpar[2]=sspar[2];
cfce8870 208 gMC->Gsvolu("QSS2", "TUBE", idtmed[2018], sspar, 3);
e035db65 209 gMC->Gsvolu("QAC6", "TUBE", idtmed[2015], vacpar, 3);
210 gMC->Gspos("QAC6", 1, "QSS2", 0., 0., 0., 0, "ONLY");
cfce8870 211 gMC->Gspos("QSS2", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 212
213
214 // *************
215 // SS Bellow 8.4 cm long, 6.5 cm ID, 7.5 cm OD
216 // 0.8 mm thick material, 0.3 cm pitch.
217 // zundul=4.2, rundul=6.5, thick=0.08
218 // **************
219 pitch=0.3;
220 thick=0.08;
221 zundul=4.2;
222 rundul=6.5;
223 Undulation("BELO",pitch,thick,zundul,rundul,cn18);
224//
225 bellow[2]=zundul;
226 zpos = zpos - sspar[2] - bellow[2];
cfce8870 227 gMC->Gspos("BELO", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 228
229 // SS tube 20.0 cm long, 0.8 mm thick, 5.96 cm OD
230
231 sspar[0]=0.0;
232 sspar[1]=2.98;
233 sspar[2]=10.0;
234 zpos = zpos - bellow[2] - sspar[2];
235
236 vacpar[0]=0.0;
237 vacpar[1]=2.9;
238 vacpar[2]=sspar[2];
cfce8870 239 gMC->Gsvolu("QSS3", "TUBE", idtmed[2018], sspar, 3);
e035db65 240 gMC->Gsvolu("QAC7", "TUBE", idtmed[2015], vacpar, 3);
241 gMC->Gspos("QAC7", 1, "QSS3", 0., 0., 0., 0, "ONLY");
cfce8870 242 gMC->Gspos("QSS3", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 243
244 // *************
245 // SS Bellow 8.4 cm long, 6.5 cm ID, 7.5 cm OD
246 // 0.8 mm thick material, 0.3 cm pitch.
247 // **************
248//
249 zpos = zpos - sspar[2] - bellow[2];
cfce8870 250 gMC->Gspos("BELO", 2, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 251
252 // SS tube 4.7 cm long, 0.8 mm thick,
253
254 sspar[0]=0.0;
255 sspar[1]=2.98;
256 sspar[2]=4.7/2.;
257 zpos = zpos - bellow[2] - sspar[2];
258
259 vacpar[0]=0.0;
260 vacpar[1]=2.9;
261 vacpar[2]=sspar[2];
cfce8870 262 gMC->Gsvolu("QSS4", "TUBE", idtmed[2018], sspar, 3);
e035db65 263 gMC->Gsvolu("QAC8", "TUBE", idtmed[2015], vacpar, 3);
264 gMC->Gspos("QAC8", 1, "QSS4", 0., 0., 0., 0, "ONLY");
cfce8870 265 gMC->Gspos("QSS4", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 266
267 // SS Flange 2.2 cm thick, ID=5.8 cm, OD=9.8 cm
268
269 flange[0]=0.0;
270 flange[1]=4.9;
271 flange[2]=1.1;
272 zpos = zpos - sspar[2] - flange[2];
273
274 vacpar[0]=0.0;
275 vacpar[1]=2.9;
276 vacpar[2]=flange[2];
cfce8870 277 gMC->Gsvolu("QFL3", "TUBE", idtmed[2018], flange, 3);
e035db65 278 gMC->Gsvolu("QAC9", "TUBE", idtmed[2015], vacpar, 3);
279 gMC->Gspos("QAC9", 1, "QFL3", 0., 0., 0., 0, "ONLY");
cfce8870 280 gMC->Gspos("QFL3", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 281
282//Total of 3150 mm from vertex on the negative side upto this point.
283
284// SS tube 20.0 cm long, 0.15 cm thick, 5.8 cm ID, to support vac. pump
285
286 sspar[0]=0.0;
287 sspar[1]=3.05;
288 sspar[2]=10.0;
289 zpos = zpos - flange[2] - sspar[2];
290
291 vacpar[0]=0.0;
292 vacpar[1]=2.9;
293 vacpar[2]=sspar[2];
cfce8870 294 gMC->Gsvolu("QSS5", "TUBE", idtmed[2018], sspar, 3);
e035db65 295 gMC->Gsvolu("QA10", "TUBE", idtmed[2015], vacpar, 3);
296 gMC->Gspos("QA10", 1, "QSS5", 0., 0., 0., 0, "ONLY");
cfce8870 297 gMC->Gspos("QSS5", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 298
299//
300 // last item, undulated SS beam pipe, pitch=0.25, length= 342.0 cm
301 // material thickness 0.015 cm, ID=6.0 cm,
302 // zundul=171.0, thick=0.015, rundul=3.0
303 pitch=0.25;
304 thick=0.015;
305 zundul=171;
306 rundul=3.0;
307 Undulation("UNDL",pitch,thick,zundul,rundul,cn48);
308 //
309 zpos = zpos - sspar[2] - zundul;
cfce8870 310 gMC->Gspos("UNDL", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 311//
cfce8870 312 gMC->Gspos("QQMO", 1, "ALIC", 0., 0., 0.1, 0, "ONLY");
77289c85 313
314// total of 6770 mm length upto this point, end of undulated beam
315// pipe section.
316
317// SS flange 22*2 mm thick
318
319
320 flange[0]=0.0;
321 flange[1]=6.3;
322 flange[2]=2.2;
323 zpos = zpos - zundul - flange[2];
324
325 vacpar[0]=0.0;
326 vacpar[1]=2.9;
327 vacpar[2]=flange[2];
cfce8870 328 gMC->Gsvolu("QFL4", "TUBE", idtmed[2018], flange, 3);
e035db65 329 gMC->Gsvolu("QC11", "TUBE", idtmed[2015], vacpar, 3);
330 gMC->Gspos("QC11", 1, "QFL4", 0., 0., 0., 0, "ONLY");
cfce8870 331 gMC->Gspos("QFL4", 1, "QQMO", 0., 0., zpos, 0, "ONLY");
77289c85 332
333}
334
335//_____________________________________________________________________________
336void AliPIPEv3::DrawModule()
337{
338 //
339 // Draw a shaded view of the Beam Pipe
340 //
341
77289c85 342 // Set everything unseen
cfce8870 343 gMC->Gsatt("*", "seen", -1);
77289c85 344 //
345 // Set ALIC mother transparent
cfce8870 346 gMC->Gsatt("ALIC","SEEN",0);
77289c85 347 //
348 // Set the volumes visible
cfce8870 349 gMC->Gsatt("QQMO","seen",1);
350 gMC->Gsatt("QQBE","seen",1);
351 gMC->Gsatt("QFL1","seen",1);
352 gMC->Gsatt("QQAL","seen",1);
353 gMC->Gsatt("QSS1","seen",1);
354 gMC->Gsatt("QFL2","seen",1);
355 gMC->Gsatt("QSS2","seen",1);
356 gMC->Gsatt("QSS3","seen",1);
357 gMC->Gsatt("QSS4","seen",1);
358 gMC->Gsatt("QFL3","seen",1);
359 gMC->Gsatt("QSS5","seen",1);
360 gMC->Gsatt("BELO","seen",1);
361 gMC->Gsatt("UNDL","seen",1);
77289c85 362 //
cfce8870 363 gMC->Gdopt("hide", "on");
364 gMC->Gdopt("shad", "on");
365 gMC->Gsatt("*", "fill", 7);
366 gMC->SetClipBox(".");
367 gMC->SetClipBox("*", 0, 3000, -3000, 3000, -6000, 6000);
368 gMC->DefaultRange();
369 gMC->Gdraw("alic", 40, 30, 0, 3, 5, .04, .04);
370 gMC->Gdhead(1111, "Beam Pipe");
371 gMC->Gdman(16, 6, "MAN");
372 gMC->Gdopt("hide","off");
77289c85 373}
374
375//_____________________________________________________________________________
376void AliPIPEv3::CreateMaterials()
377{
378 //
379 // Create materials for beam pipe
380 //
381
b43eb0dc 382 Int_t isxfld = gAlice->Field()->Integ();
383 Float_t sxmgmx = gAlice->Field()->Max();
77289c85 384
385 Float_t asteel[4] = { 55.847,51.9961,58.6934,28.0855 };
386 Float_t zsteel[4] = { 26.,24.,28.,14. };
387 Float_t wsteel[4] = { .715,.18,.1,.005 };
388
389 Float_t epsil, stmin, tmaxfd, deemax, stemax;
390
391 // STEEL
392
393
394 // --- Define the various materials for GEANT ---
395 AliMaterial(5, "BERILLIUM$", 9.01, 4., 1.848, 35.3, 36.7);
396 AliMaterial(4, "ALUMINIUM$", 26.98, 13., 2.7, 8.9, 18.5);
397 AliMaterial(16, "VACUUM$ ", 1e-16, 1e-16, 1e-16, 1e16, 1e16);
398 AliMaterial(15, "AIR$ ", 14.61, 7.3, .001205, 30423.24, 67500);
399 AliMixture(19, "STAINLESS STEEL$", asteel, zsteel, 7.88, 4, wsteel);
400
401 // ****************
402 // Defines tracking media parameters.
403 // Les valeurs sont commentees pour laisser le defaut
404 // a GEANT (version 3-21, page CONS200), f.m.
405 epsil = .001; // Tracking precision,
406 stemax = -1.; // Maximum displacement for multiple scat
407 tmaxfd = -20.; // Maximum angle due to field deflection
408 deemax = -.3; // Maximum fractional energy loss, DLS
409 stmin = -.8;
410
411 // Air
412
b43eb0dc 413 AliMedium(15, "AIR_L3_US", 15, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
77289c85 414
415 // Beryllium
416
b43eb0dc 417 AliMedium(5, "BE_L3_US", 5, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
77289c85 418
419
420 // Aluminium
421
b43eb0dc 422 AliMedium(4, "AL_L3_US", 4, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
77289c85 423
424 // Vacuum
425
b43eb0dc 426 AliMedium(16, "VA_L3_US", 16, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
77289c85 427
428 // Steel
429
b43eb0dc 430 AliMedium(19, "ST_L3_US", 19, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
77289c85 431}
432//
433void AliPIPEv3::Undulation(char *undul, Float_t pitch, Float_t thick,
434 Float_t zundul, Float_t rundul, char (*cone)[5])
435{
436 //
437 // RUNDUL : Internal radius of the undulated chamber
438 // THICK : material thickness
439 // PITCH : one-QUARTER wave of undulation (cm)
440 // ZUNDUL : half length (cm)
441 //
442 // The undulated structure is desgned as a superposition of eight CONES
443 // of suitable sizes, where the inner/outer radius of the cone increases,
444 // then decreases, each half of the wave is assumed to be a semicircle,
445 // which allows to calculate the thickness and the radii of the cone, by
446 // dividing the semicircle into 4 parts of equal arc length.
447 // Thus apear the constants 0.293 and 0.707.
448 //
449
b43eb0dc 450 const Float_t kConst1 = .293;
451 const Float_t kConst2 = .707;
77289c85 452
77289c85 453 // Local variables
454 Int_t j, nwave;
455 Float_t dcone1[5], dcone2[5], dcone3[5], dcone4[5], dcone5[5],
456 dcone6[5], dcone7[5], dcone8[5];
457 Float_t xc, yc, zc, dundul[3];
ad51aeb0 458 Int_t *idtmed = fIdtmed->GetArray()-1999;
77289c85 459
460 // Function Body
461
b43eb0dc 462 dcone1[0] = kConst1 * pitch / 2;
77289c85 463 dcone1[1] = rundul;
464 dcone1[2] = dcone1[1] + thick;
b43eb0dc 465 dcone1[3] = dcone1[1] + kConst2 * pitch;
77289c85 466 dcone1[4] = dcone1[3] + thick;
467
b43eb0dc 468 dcone2[0] = kConst2 * pitch / 2;
77289c85 469 dcone2[1] = dcone1[3];
470 dcone2[2] = dcone1[4];
b43eb0dc 471 dcone2[3] = dcone2[1] + kConst1 * pitch;
77289c85 472 dcone2[4] = dcone2[3] + thick;
473
474 dcone3[0] = dcone2[0];
475 dcone3[1] = dcone2[3];
476 dcone3[2] = dcone2[4];
477 dcone3[3] = dcone2[1];
478 dcone3[4] = dcone2[2];
479
480 dcone4[0] = dcone1[0];
481 dcone4[1] = dcone1[3];
482 dcone4[2] = dcone1[4];
483 dcone4[3] = dcone1[1];
484 dcone4[4] = dcone1[2];
485
486 dcone5[0] = dcone1[0];
487 dcone5[1] = dcone1[1] - thick;
488 dcone5[2] = dcone1[1];
b43eb0dc 489 dcone5[3] = dcone5[1] - kConst2 * pitch;
77289c85 490 dcone5[4] = dcone5[3] + thick;
491
492 dcone6[0] = dcone2[0];
493 dcone6[1] = dcone5[3];
494 dcone6[2] = dcone5[4];
b43eb0dc 495 dcone6[3] = dcone6[1] - kConst1 * pitch;
77289c85 496 dcone6[4] = dcone6[3] + thick;
497 dcone7[0] = dcone6[0];
498 dcone7[1] = dcone6[3];
499 dcone7[2] = dcone6[4];
500 dcone7[3] = dcone5[3];
501 dcone7[4] = dcone5[4];
502
503 dcone8[0] = dcone5[0];
504 dcone8[1] = dcone7[3];
505 dcone8[2] = dcone7[4];
506 dcone8[3] = dcone5[1];
507 dcone8[4] = dcone5[2];
508
a2ff21a6 509 gMC->Gsvolu(cone[0], "CONE", idtmed[2018], dcone1, 5);
510 gMC->Gsvolu(cone[1], "CONE", idtmed[2018], dcone2, 5);
511 gMC->Gsvolu(cone[2], "CONE", idtmed[2018], dcone3, 5);
512 gMC->Gsvolu(cone[3], "CONE", idtmed[2018], dcone4, 5);
513 gMC->Gsvolu(cone[4], "CONE", idtmed[2018], dcone5, 5);
514 gMC->Gsvolu(cone[5], "CONE", idtmed[2018], dcone6, 5);
515 gMC->Gsvolu(cone[6], "CONE", idtmed[2018], dcone7, 5);
516 gMC->Gsvolu(cone[7], "CONE", idtmed[2018], dcone8, 5);
cfce8870 517 gMC->Gsatt(cone[0], "SEEN", 0);
518 gMC->Gsatt(cone[1], "SEEN", 0);
519 gMC->Gsatt(cone[2], "SEEN", 0);
520 gMC->Gsatt(cone[3], "SEEN", 0);
521 gMC->Gsatt(cone[4], "SEEN", 0);
522 gMC->Gsatt(cone[5], "SEEN", 0);
523 gMC->Gsatt(cone[6], "SEEN", 0);
524 gMC->Gsatt(cone[7], "SEEN", 0);
77289c85 525
526 // DEFINE AN IMAGINARY TUBE VOLUME FOR UNDULATED CHAMBER, FILL WITH VACUUM
527
528 nwave = Int_t (zundul / (pitch * 2) + .1);
529 dundul[2] = pitch * 2 * nwave;
530 dundul[1] = rundul + pitch + thick * 2;
531 //
532 dundul[0] = 1e-4;
cfce8870 533 gMC->Gsvolu(undul, "TUBE", idtmed[2015], dundul, 3);
77289c85 534
535 xc = 0;
536 yc = 0;
537 zc = -dundul[2] + dcone1[0];
538 for (j = 1; j <= nwave; ++j) {
cfce8870 539 gMC->Gspos(cone[0], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 540 zc = zc + dcone1[0] + dcone2[0];
cfce8870 541 gMC->Gspos(cone[1], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 542 zc = zc + dcone2[0] + dcone3[0];
cfce8870 543 gMC->Gspos(cone[2], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 544 zc = zc + dcone3[0] + dcone4[0];
cfce8870 545 gMC->Gspos(cone[3], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 546 zc = zc + dcone4[0] + dcone5[0];
cfce8870 547 gMC->Gspos(cone[4], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 548 zc = zc + dcone5[0] + dcone6[0];
cfce8870 549 gMC->Gspos(cone[5], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 550 zc = zc + dcone6[0] + dcone7[0];
cfce8870 551 gMC->Gspos(cone[6], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 552 zc = zc + dcone7[0] + dcone8[0];
cfce8870 553 gMC->Gspos(cone[7], j, undul, xc, yc, zc, 0, "ONLY");
77289c85 554 zc = zc + dcone8[0] + dcone1[0];
555 }
556}