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Avoid overlap with EMCAL mother volume.
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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
eeacf08b 16/* $Id$ */
4c039060 17
eeacf08b 18//-------------------------------------------------------------------------
19// Beam pipe class
20// Default version
21// Author: A.Morsch
22//-------------------------------------------------------------------------
fe4da5cc 23
88cb7938 24#include <Riostream.h>
25
26#include <TSystem.h>
27#include <TVirtualMC.h>
28
7bd7faf8 29#include "AliConst.h"
30#include "AliMagF.h"
88cb7938 31#include "AliPIPEv0.h"
32#include "AliRun.h"
4951e003 33#include "AliLog.h"
fe4da5cc 34
35ClassImp(AliPIPEv0)
36
37//_____________________________________________________________________________
b8032157 38AliPIPEv0::AliPIPEv0()
fe4da5cc 39{
b43eb0dc 40// Constructor
765e9e1a 41 SetPipeMaterial();
fe4da5cc 42}
43
44//_____________________________________________________________________________
45AliPIPEv0::AliPIPEv0(const char *name, const char *title)
46 : AliPIPE(name,title)
47{
b43eb0dc 48// Constructor
765e9e1a 49 SetPipeMaterial();
fe4da5cc 50}
51
52
53//___________________________________________
54void AliPIPEv0::CreateGeometry()
55{
fe4da5cc 56//Begin_Html
57/*
1439f98e 58<img src="picts/pipe.gif">
fe4da5cc 59*/
60//End_Html
61
62
63//Begin_Html
64/*
1439f98e 65<img src="picts/tree_pipe.gif">
fe4da5cc 66*/
67//End_Html
68
4951e003 69 AliDebugClass(1,"Create PIPEv0 geometry");
fe4da5cc 70
fe4da5cc 71
7bd7faf8 72 Int_t *idtmed = fIdtmed->GetArray();
b0090333 73 Float_t ppcon[90], ptube[3], pbox[3];
7bd7faf8 74 Int_t i=0;
75
7bd7faf8 76
77 Int_t idrotm[2099];
78 AliMatrix(idrotm[2001],90.,240., 0., 0., 90.,150.);
79 AliMatrix(idrotm[2002],90., 0., 0., 0., 90.,270.);
80 AliMatrix(idrotm[2003],90.,120., 0., 0., 90., 30.);
81 AliMatrix(idrotm[2004],90.,315., 90., 45., 0., 0.);
82 AliMatrix(idrotm[2005],90.,270., 90., 0., 0., 0.);
83 AliMatrix(idrotm[2006],90.,225., 90.,315., 0., 0.);
84 AliMatrix(idrotm[2007],90.,180., 90.,270., 0., 0.);
85 AliMatrix(idrotm[2008],90.,135., 90.,225., 0., 0.);
86 AliMatrix(idrotm[2009],90., 90., 90.,180., 0., 0.);
87 AliMatrix(idrotm[2010],90., 45., 90.,135., 0., 0.);
88 idrotm[2011] = 0;
89 AliMatrix(idrotm[2012],90.,180., 90., 90.,180., 0.);
90 AliMatrix(idrotm[2013],90., 0., 90., 90.,180., 0.);
614dff1c 91//
92// Bellow
93//
22811e34 94// distance between bellows
614dff1c 95// total size of bellow section
d013be8e 96 const Float_t kdzb = 14.6;
614dff1c 97// size of undulated region
b63a407c 98//
99// Absorber side
100//
101// distance between bellows
d013be8e 102 const Float_t kdzbbA = 4.6;
b63a407c 103// total size of bellow section
d013be8e 104 const Float_t kdzbA = 14.6;
b63a407c 105// size of undulated region
106 const Float_t kdzubA = 3.75;
614dff1c 107
108// half-lengths of various beam pipe sections
109// central Be-Pipe
110 Float_t hlenQbbe1 = 40.;
111 Float_t hlenQbbe2 = 36.5;
112 Float_t hlenQbbe = (hlenQbbe1+hlenQbbe2)/2.;
113//
114//
115// Float_t hlenQbt1 = 5.5/2.;
116//
d2c19024 117// Pipe outside central region (non-absorber side)
118 Float_t hlenQbab = 157.5 + 23./2.;
614dff1c 119//
120// Flange non-absorber side
121 Float_t hlenQb29 = 11.5/2.+1.75 + 5.0;
122//
123// Bellow element
b63a407c 124 Float_t hlenQbe0 = kdzbA;
614dff1c 125//
126// Inox pipe between Be and Bellow (absorber side)
d013be8e 127 Float_t hlenQb24[3] = {11.3/2., 1.8, 3.3};
614dff1c 128//
129//
130 Float_t hlenQb28 = (800.-hlenQbbe1-2.*hlenQbab-4.*hlenQb29-2.*hlenQbe0)/2.;
131//
132// Position of the pump
eeacf08b 133 Float_t zPump = hlenQbbe1+2.*hlenQbab+2.*hlenQb29+kdzb;
614dff1c 134//
135// Inner beam pipe radius
ed9bfb0d 136// Be
eeacf08b 137 const Float_t kRinBe = 2.9;
ed9bfb0d 138// Steel
139 const Float_t kRinSt = 2.9;
140// Bellow
141 const Float_t kRinSB = 2.92;
614dff1c 142//
ed9bfb0d 143// Outer beam pipe radius
144// Be
eeacf08b 145 const Float_t kRoutBe = 2.98;
ed9bfb0d 146// Steel
147 const Float_t kRoutSt = 2.98;
148// Bellow
149 const Float_t kRoutSB = 3.00;
614dff1c 150
151//
152 Float_t dz;
7bd7faf8 153
fe4da5cc 154//
155// The peam pipe up to the Front Absorber
fe4da5cc 156//
7bd7faf8 157// Mother Volume QBPM
614dff1c 158 ppcon[0] = 0;
159 ppcon[1] = 360;
b0090333 160 ppcon[2] = 20;
161// 1
614dff1c 162 ppcon[3] = -90.;
163 ppcon[4] = 0.;
b0090333 164 ppcon[5] = 3.1;
7bd7faf8 165// 2
b0090333 166 ppcon[6] = -84.;
614dff1c 167 ppcon[7] = 0.;
b0090333 168 ppcon[8] = 3.1;
7bd7faf8 169// 3
b0090333 170 ppcon[9] = -84.;
614dff1c 171 ppcon[10] = 0.;
b0090333 172 ppcon[11] = 4.4;
173// 4
174 ppcon[12] = -90+2.*hlenQb24[2]+2.8+2.*hlenQb24[1];
614dff1c 175 ppcon[13] = 0.;
b0090333 176 ppcon[14] = 4.4;
177// 5
178 ppcon[15] = ppcon[12];
614dff1c 179 ppcon[16] = 0.;
b0090333 180 ppcon[17] = 4.1;
22811e34 181// 6
b63a407c 182 ppcon[18] = ppcon[15] + 2.5 + 2.*kdzubA+0.2;
614dff1c 183 ppcon[19] = 0.;
b0090333 184 ppcon[20] = 4.1;
185// 7
186 ppcon[21] = ppcon[18];
614dff1c 187 ppcon[22] = 0.;
b0090333 188 ppcon[23] = 3.2;
189// 8
b63a407c 190 ppcon[24] = ppcon[21] + 2.* kdzbbA-0.4;
614dff1c 191 ppcon[25] = 0.;
b0090333 192 ppcon[26] = 3.2;
7bd7faf8 193// 9
b0090333 194 ppcon[27] = ppcon[24];
195 ppcon[28] = 0.;
196 ppcon[29] = 4.1;
22811e34 197// 10
b0090333 198 ppcon[30] = -44.;
199 ppcon[31] = 0.;
200 ppcon[32] = 4.1;
22811e34 201// 11
b0090333 202 ppcon[33] = -44.;
7bd7faf8 203 ppcon[34] = 0;
b63a407c 204 ppcon[35] = 3.06;
22811e34 205// 12
b0090333 206 ppcon[36] = 38.;
207 ppcon[37] = 0;
b63a407c 208 ppcon[38] = 3.06;
614dff1c 209// 13
b0090333 210 ppcon[39] = 38.;
211 ppcon[40] = 0;
ed9bfb0d 212 ppcon[41] = 4.1;
22811e34 213// 14
b0090333 214 ppcon[42] = hlenQbbe1+2.*hlenQbab-0.1;
614dff1c 215 ppcon[43] = 0.;
ed9bfb0d 216 ppcon[44] = 4.1;
614dff1c 217// 15
218 ppcon[45] = ppcon[42];
219 ppcon[46] = 0.;
ed9bfb0d 220 ppcon[47] = 4.1;
22811e34 221// 16
b0090333 222 ppcon[48] = ppcon[45]+2.*hlenQb29-5.;
614dff1c 223 ppcon[49] = 0.;
ed9bfb0d 224 ppcon[50] = 4.1;
22811e34 225// 17
b0090333 226 ppcon[51] = ppcon[48];
22811e34 227 ppcon[52] = 0.;
b0090333 228 ppcon[53] = 56.;
22811e34 229// 18
eeacf08b 230 ppcon[54] = ppcon[51]+2.*kdzb+10.;
22811e34 231 ppcon[55] = 0.;
b0090333 232 ppcon[56] = 56.;
233// 19
234 ppcon[57] = ppcon[54];
235 ppcon[58] = 0.;
ed9bfb0d 236 ppcon[59] = 4.1;
b0090333 237// 20
238 ppcon[60] = 800.;
239 ppcon[61] = 0.;
ed9bfb0d 240 ppcon[62] = 4.1;
7bd7faf8 241
b0090333 242 gMC->Gsvolu("QBPM", "PCON", idtmed[kAir], ppcon,63);
614dff1c 243
244
7bd7faf8 245//
cd9c4f3a 246// volume definitions of various sections
247//
cd9c4f3a 248
614dff1c 249//
250// The Vacuum
251 gMC->Gsvolu("QBVA","TUBE", idtmed[kVac], ptube, 0);
252 ptube[0] = 0.0;
eeacf08b 253 ptube[1] = kRinSt;
614dff1c 254 ptube[2] = (90.-hlenQbbe2)/2.;
255 dz = -90. + ptube[2];
256 gMC->Gsposp ("QBVA", 1, "QBPM", 0., 0., dz , 0, "ONLY", ptube, 3);
257 dz = dz + ptube[2];
258
eeacf08b 259 ptube[1] = kRinBe;
614dff1c 260 ptube[2] = hlenQbbe+hlenQbab;
261 dz = dz + ptube[2];
262 gMC->Gsposp ("QBVA", 2, "QBPM", 0., 0., dz , 0, "ONLY", ptube, 3);
263 dz = dz + ptube[2];
264
eeacf08b 265 ptube[1] = kRinSt;
614dff1c 266 ptube[2] = (800.-hlenQbbe1-2.*hlenQbab)/2.;
267 dz = dz + ptube[2];
268 gMC->Gsposp ("QBVA", 3, "QBPM", 0., 0., dz , 0, "ONLY", ptube, 3);
cd9c4f3a 269
614dff1c 270//
271// Be Pipe in central Alice
eeacf08b 272 ptube[0] = kRinBe;
273 ptube[1] = kRoutBe;
cd9c4f3a 274 ptube[2] = hlenQbbe;
7bd7faf8 275
276 gMC->Gsvolu("QBBE","TUBE", idtmed[kBe], ptube, 3);
7bd7faf8 277
278//
614dff1c 279// Support Ring
7bd7faf8 280//
614dff1c 281 // Mother
ed9bfb0d 282 ptube[0] = kRoutSB;
283 ptube[1] = 4.0;
284 ptube[2] = 0.6;
285 gMC->Gsvolu("QBSR", "TUBE", idtmed[kAlu], ptube,3);
286 // Inner support
287 ptube[0] = kRoutSB;
288 ptube[1] = 3.5;
289 gMC->Gsvolu("QBSS", "TUBE", idtmed[kPA], ptube,3);
290 gMC->Gspos("QBSS", 1, "QBSR", 0.0, 0.0, 0.0, 0, "ONLY");
7bd7faf8 291
614dff1c 292 gMC->Gspos("QBSR", 1, "QBPM", 0.0, 0.0, 40., 0, "ONLY");
293 gMC->Gspos("QBSR", 2, "QBPM", 0.0, 0.0, 150., 0, "ONLY");
294 gMC->Gspos("QBSR", 3, "QBPM", 0.0, 0.0, 260., 0, "ONLY");
295 gMC->Gspos("QBSR", 4, "QBPM", 0.0, 0.0,- 46., 0, "ONLY");
7bd7faf8 296//
614dff1c 297// Flange and Fixed Point: non absorber side
7bd7faf8 298//
614dff1c 299// ---------->
300//
301// Mother
302 ppcon[0] = 0;
303 ppcon[1] = 360;
304 ppcon[2] = 4;
305// 1:
306 ppcon[3] = -hlenQb29;
eeacf08b 307 ppcon[4] = kRinSt;
614dff1c 308 ppcon[5] = 5.8;
309// 2
310 ppcon[6] = ppcon[3]+3.6;
eeacf08b 311 ppcon[7] = kRinSt;
614dff1c 312 ppcon[8] = 5.8;
313// 3
314 ppcon[9] = ppcon[6];
eeacf08b 315 ppcon[10] = kRinSt;
614dff1c 316 ppcon[11] = 3.6;
317// 4
318 ppcon[12] = hlenQb29;
eeacf08b 319 ppcon[13] = kRinSt;
614dff1c 320 ppcon[14] = 3.6;
7bd7faf8 321
614dff1c 322 gMC->Gsvolu("QB29", "PCON", idtmed[kAir], ppcon,15);
7bd7faf8 323
7bd7faf8 324
614dff1c 325// Flange
eeacf08b 326 ptube[0] = kRinSt;
614dff1c 327 ptube[1] = 5.7;
328 ptube[2] = 1.75;
329 gMC->Gsvolu("QF29","TUBE", idtmed[kInox], ptube, 3);
330 gMC->Gspos("QF29", 1, "QB29", 0.0, 0.0, -hlenQb29+1.75, 0, "ONLY");
331// Pipe
eeacf08b 332 ptube[0] = kRinSt;
b63a407c 333 ptube[1] = 3.06;
cd9c4f3a 334 ptube[2] = hlenQb29;
614dff1c 335 gMC->Gsvolu("QS29","TUBE", idtmed[kInox], ptube, 3);
336 gMC->Gspos("QS29", 1, "QB29", 0.0, 0.0, 0., 0, "ONLY");
337// Fixed point
eeacf08b 338 ptube[0] = kRinSt;
614dff1c 339 ptube[1] = 3.5;
340 ptube[2] = 0.3;
341 gMC->Gsvolu("QP29","TUBE", idtmed[kInox], ptube, 3);
342 gMC->Gspos("QP29", 1, "QB29", 0.0, 0.0, -hlenQb29+9.75+3., 0, "ONLY");
22811e34 343
614dff1c 344//
7bd7faf8 345//
cd9c4f3a 346// Inox beam pipe: final section on non-absorber side
7bd7faf8 347
eeacf08b 348 ptube[0] = kRinSt;
349 ptube[1] = kRoutSt;
cd9c4f3a 350 ptube[2] = hlenQb28;
7bd7faf8 351
352 gMC->Gsvolu("QB28","TUBE", idtmed[kInox], ptube, 3);
7bd7faf8 353
2196bc42 354
355// Al-Be (40-60 wgt%, rho=2.7 g/cm**3) beam pipe
356//
614dff1c 357// This section is under study (A.M. 1/2/2002)
765e9e1a 358//
359
eeacf08b 360 ptube[0] = kRinBe;
765e9e1a 361 if (fPipeMaterial == kAlu) {
b63a407c 362 ptube[1] = 3.06;
765e9e1a 363 } else if (fPipeMaterial == kBe) {
eeacf08b 364 ptube[1] = kRoutBe;
765e9e1a 365 } else if (fPipeMaterial == kInox){
eeacf08b 366 ptube[1] = kRoutSt;
765e9e1a 367 }
cd9c4f3a 368 ptube[2] = hlenQbab;
2196bc42 369
765e9e1a 370 gMC->Gsvolu("QBAB","TUBE", idtmed[fPipeMaterial], ptube, 3);
2196bc42 371
cd9c4f3a 372// 2.5 mm thick SS tube for hanging pump
614dff1c 373/*
374 ptube[0] = Rin;
7bd7faf8 375 ptube[1] = 3.15;
cd9c4f3a 376 ptube[2] = hlenQb26;
7bd7faf8 377
cd9c4f3a 378 gMC->Gsvolu("QB26","TUBE", idtmed[kInox], ptube, 3);
614dff1c 379*/
7bd7faf8 380//
381// Bellows
fe4da5cc 382//
22811e34 383//
7bd7faf8 384// Mother Volume
614dff1c 385 Float_t pconQBE0[33];
386 pconQBE0[ 0]= 0;
387 pconQBE0[ 1]= 360;
b63a407c 388 pconQBE0[ 2]= 10;
614dff1c 389// 1
b63a407c 390 pconQBE0[ 3] = -kdzbA;
ed9bfb0d 391 pconQBE0[ 4] = kRinSB;
392 pconQBE0[ 5] = kRoutSB;
b63a407c 393//
394 pconQBE0[ 6] = -kdzbA+2.5;
ed9bfb0d 395 pconQBE0[ 7] = kRinSB;
396 pconQBE0[ 8] = kRoutSB;
b63a407c 397// 2
398 pconQBE0[ 9] = -kdzbA+2.5;
ed9bfb0d 399 pconQBE0[10] = kRinSB;
b63a407c 400 pconQBE0[11] = 3.60;
614dff1c 401// 3
b63a407c 402 pconQBE0[12] = -kdzbA+2.5+2.*kdzubA;
ed9bfb0d 403 pconQBE0[13] = kRinSB;
b63a407c 404 pconQBE0[14] = 3.60;
614dff1c 405// 4
b63a407c 406 pconQBE0[15] = -kdzbA+2.5+2.*kdzubA;
ed9bfb0d 407 pconQBE0[16] = kRinSB;
408 pconQBE0[17] = kRoutSB;
b63a407c 409// 5
410 pconQBE0[18] = -kdzbA+2.5+2.*kdzubA+2.*kdzbbA;
ed9bfb0d 411 pconQBE0[19] = kRinSB;
412 pconQBE0[20] = kRoutSB;
614dff1c 413// 6
b63a407c 414 pconQBE0[21] = -kdzbA+2.5+2.*kdzubA+2.*kdzbbA;
ed9bfb0d 415 pconQBE0[22] = kRinSB;
b63a407c 416 pconQBE0[23] = 3.60;
417// 7
418 pconQBE0[24] = -kdzbA+2.5+4.*kdzubA+2.*kdzbbA;
ed9bfb0d 419 pconQBE0[25] = kRinSB;
b63a407c 420 pconQBE0[26] = 3.60;
614dff1c 421// 8
b63a407c 422 pconQBE0[27] = -kdzbA+2.5+4.*kdzubA+2.*kdzbbA;
ed9bfb0d 423 pconQBE0[28] = kRinSB;
424 pconQBE0[29] = kRoutSB;
b63a407c 425// 9
426 pconQBE0[30] = -kdzbA+5.0+4.*kdzubA+2.*kdzbbA;
ed9bfb0d 427 pconQBE0[31] = kRinSB;
428 pconQBE0[32] = kRoutSB;
b63a407c 429
614dff1c 430 gMC->Gsvolu("QBE0", "PCON", idtmed[kAir], pconQBE0, 33);
431//
432// Undulated piece mother
ed9bfb0d 433 ptube[0] = kRinSB;
b63a407c 434 ptube[1] = 3.60;
435 ptube[2] = kdzubA;
7bd7faf8 436 gMC->Gsvolu("QBEM","TUBE", idtmed[kAir], ptube, 3);
b63a407c 437 dz = -kdzbA+kdzubA+2.5;
614dff1c 438 gMC->Gspos("QBEM", 2 ,"QBE0", 0.0, 0.0, dz, 0 , "ONLY");
439 gMC->Gspos("QBEM", 1 ,"QBE0", 0.0, 0.0, -dz, idrotm[2012], "ONLY");
440//
441 Float_t pund[30];
442 Float_t uw = 0.02;
b63a407c 443 Float_t ur = 2.*kdzubA-36.*uw;
444 Float_t uz = ur/37.;
614dff1c 445 Float_t ut = uz+uw;
446
447 pund[ 0] = 0;
448 pund[ 1] = 360;
13a638e8 449 pund[ 2] = 8;
614dff1c 450
451 pund[ 3] = -ut;
ed9bfb0d 452 pund[ 4] = kRinSB;
453 pund[ 5] = kRinSB+uw;
614dff1c 454
455 pund[ 6] = -ut+uz;
456 pund[ 7] = pund[4];
457 pund[ 8] = pund[5];
458
459 pund[ 9] = pund[6];
460 pund[10] = pund[4];
b63a407c 461 pund[11] = 3.6;
614dff1c 462
463 pund[12] = pund[9]+uw;
464 pund[13] = pund[10];
465 pund[14] = pund[11];
466
467 pund[15] = pund[12];
b63a407c 468 pund[16] = 3.6-uw;
614dff1c 469 pund[17] = pund[14];
470
471 pund[18] = pund[12]+uz;
472 pund[19] = pund[16];
473 pund[20] = pund[17];
474
475 pund[21] = pund[18];
ed9bfb0d 476 pund[22] = kRinSB;
614dff1c 477 pund[23] = pund[20];
478
479 pund[24] = pund[21]+uw;
480 pund[25] = pund[22];
481 pund[26] = pund[23];
614dff1c 482
13a638e8 483 gMC->Gsvolu("QBEU", "PCON", idtmed[kInox], pund, 27);
614dff1c 484
b63a407c 485 for (i = 0; i < 18; i++)
614dff1c 486 {
b63a407c 487 dz = -kdzubA+(1+2*i)*ut;
614dff1c 488 gMC->Gspos("QBEU", i+1 ,"QBEM", 0.0, 0.0, dz, 0 , "ONLY");
7bd7faf8 489 }
ed9bfb0d 490 ptube[0] = kRinSB;
491 ptube[1] = kRinSB+uw;
614dff1c 492 ptube[2] = uz;
493 gMC->Gsvolu("QBEW","TUBE", idtmed[kInox], ptube, 3);
b63a407c 494 gMC->Gspos("QBEW", 1 ,"QBEM", 0.0, 0.0, kdzubA-uz, 0 , "ONLY");
495
7bd7faf8 496//
614dff1c 497// BeamPipe
498 gMC->Gsvolu("QBEP","TUBE", idtmed[kInox], ptube, 0);
ed9bfb0d 499 ptube[0] = kRinSB;
500 ptube[1] = kRoutSB;
b63a407c 501 ptube[2] = 1.25;
502 gMC->Gsposp("QBEP", 1 ,"QBE0", 0.0, 0.0, -kdzbA+1.25, 0 , "ONLY", ptube, 3);
503 gMC->Gsposp("QBEP", 2 ,"QBE0", 0.0, 0.0, kdzbA-1.25, 0 , "ONLY", ptube, 3);
504 ptube[2] = kdzbbA;
614dff1c 505 gMC->Gsposp("QBEP", 3 ,"QBE0", 0.0, 0.0, 0., 0 , "ONLY", ptube, 3);
506//
614dff1c 507//
508// ----> End Bellow
509//
510// **** Placement of various sections on non-absorber side ****
7bd7faf8 511//
cd9c4f3a 512 //
614dff1c 513 // first the beryllium section
514 Float_t zpos = -(hlenQbbe2-hlenQbbe1)/2;
cd9c4f3a 515 gMC->Gspos("QBBE", 1, "QBPM", 0., 0., zpos, 0, "ONLY");
516
517 // next meta-metal transition QBT1 on on-absorber side
614dff1c 518// zpos = zpos + hlenQbbe + hlenQbt1;
519// gMC->Gspos("QBT1", 1, "QBPM", 0., 0., zpos, 0, "ONLY");
cd9c4f3a 520
521 // Aluminium OR Al-be alloy section
614dff1c 522 zpos = hlenQbbe1+hlenQbab;
cd9c4f3a 523 gMC->Gspos("QBAB", 1, "QBPM", 0.0, 0.0, zpos, 0, "ONLY");
614dff1c 524 //
cd9c4f3a 525 // inox flange at the start of bellow
cd9c4f3a 526 zpos = zpos + hlenQbab + hlenQb29;
614dff1c 527 gMC->Gspos("QB29", 1, "QBPM", 0.0, 0.0, zpos, idrotm[2012], "ONLY");
528 //
cd9c4f3a 529 // bellow section
cd9c4f3a 530 zpos = zpos + hlenQb29 + hlenQbe0;
614dff1c 531 gMC->Gspos("QBE0", 2 ,"QBPM", 0.0, 0.0, zpos, 0, "ONLY");
532 //
cd9c4f3a 533 // inox flange at the end of bellow and start of thick inox for pump
cd9c4f3a 534 zpos = zpos + hlenQbe0 + hlenQb29;
614dff1c 535 gMC->Gspos("QB29", 2, "QBPM", 0.0, 0.0, zpos, 0, "ONLY");
536 //
cd9c4f3a 537 //last inox section till 800 cm
cd9c4f3a 538 zpos = zpos + hlenQb29 + hlenQb28;
539 gMC->Gspos("QB28", 1, "QBPM", 0.0, 0.0, zpos, 0, "ONLY");
614dff1c 540
ed9bfb0d 541//******** end of placement on non-absorber side *********
cd9c4f3a 542 //
543 // **** Absorber side *****
544 //
545 //
614dff1c 546//
547// Beam pipes between elements
ed9bfb0d 548//
614dff1c 549 gMC->Gsvolu("QB24","TUBE", idtmed[kInox], ptube, 0);
eeacf08b 550 ptube[0] = kRinSt;
551 ptube[1] = kRoutSt;
614dff1c 552 ptube[2] = hlenQb24[0];
ed9bfb0d 553 Float_t bpbe[33];
554 bpbe[ 0] = 0.;
555 bpbe[ 1] = 360.;
556 bpbe[ 2] = 10.;
557 // 1
558 bpbe[ 3] = -hlenQb24[0];
559 bpbe[ 4] = kRinSB;
560 bpbe[ 5] = kRoutSB;
561 // 2
562 bpbe[ 6] = hlenQb24[0] - 5.8;
563 bpbe[ 7] = kRinSB;
564 bpbe[ 8] = kRoutSB;
565 // 3
566 bpbe[ 9] = hlenQb24[0] - 5.8;
567 bpbe[10] = kRinSt;
568 bpbe[11] = 3.05;
569 // 4
570 bpbe[12] = hlenQb24[0] - 4.5;
571 bpbe[13] = kRinSt;
572 bpbe[14] = 3.05;
573 // 5
574 bpbe[15] = hlenQb24[0] - 4.5;
575 bpbe[16] = kRinSt;
576 bpbe[17] = kRoutSt ;
577 // 6
578 bpbe[18] = hlenQb24[0] - 3.5;
579 bpbe[19] = kRinSt;
580 bpbe[20] = kRoutSt ;
581 // 7
582 bpbe[21] = hlenQb24[0] - 3.5;
583 bpbe[22] = kRinSt;
584 bpbe[23] = 3.05;
585 // 8
586 bpbe[24] = hlenQb24[0] - 3.0;
587 bpbe[25] = kRinSt;
588 bpbe[26] = 3.05;
589 // 9
590 bpbe[27] = hlenQb24[0] - 3.0;
591 bpbe[28] = kRinSt;
592 bpbe[29] = kRoutSt;
593 // 10
594 bpbe[30] = hlenQb24[0];
595 bpbe[31] = kRinSt;
596 bpbe[32] = kRoutSt;
597
598 gMC->Gsvolu("QA24","PCON", idtmed[kInox], bpbe, 33);
599
600 dz = hlenQbbe2 + hlenQb24[0];
601
602 gMC->Gspos("QA24", 1 ,"QBPM", 0.0, 0.0, -dz, 0, "ONLY");
614dff1c 603//
604// Bellow on absorber side
ed9bfb0d 605
b63a407c 606 dz = dz+hlenQb24[0] + kdzbA;
614dff1c 607 gMC->Gspos("QBE0", 1 ,"QBPM", 0.0, 0.0, -dz, 0, "ONLY");
608//
609 ptube[2] = hlenQb24[1];
eeacf08b 610 dz = dz + kdzb + ptube[2];
614dff1c 611 gMC->Gsposp("QB24", 2 ,"QBPM", 0.0, 0.0, -dz, 0, "ONLY", ptube, 3);
612 dz = dz + ptube[2];
7bd7faf8 613
7bd7faf8 614//
7bd7faf8 615// Flange
616//
617// Mother Volume
ed9bfb0d 618 ptube[0] = kRinSB;
7bd7faf8 619 ptube[1] = 4.300;
614dff1c 620 ptube[2] = 1.4;
7bd7faf8 621
614dff1c 622 gMC->Gsvolu("QFA0","TUBE", idtmed[kInox], ptube, 3);
623 dz = dz + ptube[2];
624 gMC->Gspos("QFA0", 1 ,"QBPM", 0.0, 0.0, -dz, 0, "ONLY");
625 dz = dz + ptube[2];
7bd7faf8 626//
614dff1c 627//
ed9bfb0d 628 ptube[0] = kRinSB;
629 ptube[1] = kRoutSB;
614dff1c 630 ptube[2] = hlenQb24[2];
631 dz = dz + ptube[2];
632 gMC->Gsposp("QB24", 3 ,"QBPM", 0.0, 0.0, -dz, 0, "ONLY", ptube, 3);
cd9c4f3a 633
fe4da5cc 634// --- Place the PIPE ghost volume (QBPM) in its mother volume (ALIC)
cd9c4f3a 635// by rotating it to 180 deg. and make it invisible
fe4da5cc 636//
df7d6d39 637 gMC->Gspos("QBPM",1,"ALIC", 0, 0, 0, 0, "ONLY");
fddcf8f7 638 gMC->Gsbool("QBPM", "L3DX");
639 gMC->Gsbool("QBPM", "L3O3");
640 gMC->Gsbool("QBPM", "L3O4");
7bd7faf8 641
cd9c4f3a 642
7bd7faf8 643//
cd9c4f3a 644// ******** Ion Pump volume description starts here ******
7bd7faf8 645//
7bd7faf8 646 //
647 // Getters ->
648 pbox[0] = 6.50;
649 pbox[1] = 6.75;
650 pbox[2] = 15.60;
651 gMC->Gsvolu("QI32","BOX", idtmed[kInox], pbox, 3);
652
653 pbox[0] = 5.90;
654 pbox[1] = 6.15;
655 pbox[2] = 15.00;
656 gMC->Gsvolu("QI42","BOX", idtmed[kGetter], pbox, 3);
657 gMC->Gspos("QI42", 1, "QI32", 0.0, 0.0, 0.0, 0, "ONLY");
658// <-
659
660 ptube[0] = 0.0;
661 ptube[1] = 19.0;
662 ptube[2] = 2.5;
663 gMC->Gsvolu("QI33","TUBE", idtmed[kInox], ptube, 3);
664
665
666 ptube[0] = 0.0;
667 ptube[1] = 15.0;
668 ptube[2] = 2.5;
14b75006 669 gMC->Gsvolu("QI43","TUBE", idtmed[kAir], ptube, 3);
7bd7faf8 670 gMC->Gspos("QI43", 1, "QI33", 0.0, 0.0, 0.0, 0, "ONLY");
671//
672// Connecting tube ->
673 ptube[0] = 0.0;
d013be8e 674 ptube[1] = 4.5;
cd9c4f3a 675 ptube[2] = 14.6;
7bd7faf8 676 gMC->Gsvolu("QI34","TUBE", idtmed[kInox], ptube, 3);
677
678 ptube[0] = 0.0;
d013be8e 679 ptube[1] = 3.9;
cd9c4f3a 680 ptube[2] = 14.6;
14b75006 681 gMC->Gsvolu("QI44","TUBE", idtmed[kAir], ptube, 3);
7bd7faf8 682 gMC->Gspos("QI44", 1, "QI34", 0.0, 0.0, 0.0, 0, "ONLY");
683// <-
684
685 //
686 // Flange ->
d013be8e 687 ptube[0] = 4.6;
7bd7faf8 688 ptube[1] = 7.30;
689 ptube[2] = 2.15;
690 gMC->Gsvolu("QI35","TUBE", idtmed[kInox], ptube, 3);
7bd7faf8 691// <-
cd9c4f3a 692 gMC->Gspos("QI32", 1, "QBPM", 0.0, -44.25, zPump, 0, "ONLY");
693 gMC->Gspos("QI33", 1, "QBPM", 0.0, -35.00, zPump,idrotm[2002], "ONLY");
694 gMC->Gspos("QI34", 1, "QBPM", 0.0, -17.90, zPump,idrotm[2002], "ONLY");
695 gMC->Gspos("QI35", 1, "QBPM", 0.0, -24.35, zPump,idrotm[2002], "ONLY");
fe4da5cc 696
22811e34 697 gMC->Gsatt("QBPM", "SEEN", 1);
698 gMC->Gsatt("QBEM", "SEEN", 1);
fe4da5cc 699}
700
cd9c4f3a 701
fe4da5cc 702
703//___________________________________________
704void AliPIPEv0::CreateMaterials()
705{
7bd7faf8 706 //
13391c3e 707 // Define materials for beam pipe
7bd7faf8 708 //
13391c3e 709
4951e003 710 AliDebugClass(1,"Create PIPEv0 materials");
7bd7faf8 711 Int_t isxfld = gAlice->Field()->Integ();
712 Float_t sxmgmx = gAlice->Field()->Max();
2196bc42 713 // Steel (Inox)
7bd7faf8 714 Float_t asteel[4] = { 55.847,51.9961,58.6934,28.0855 };
715 Float_t zsteel[4] = { 26.,24.,28.,14. };
716 Float_t wsteel[4] = { .715,.18,.1,.005 };
2196bc42 717 // AlBe - alloy
718 Float_t aAlBe[2] = { 26.98, 9.01};
719 Float_t zAlBe[2] = { 13.00, 4.00};
720 Float_t wAlBe[2] = { 0.4, 0.6};
ed9bfb0d 721 //
722 // Polyamid
723 Float_t aPA[4] = {16., 14., 12., 1.};
724 Float_t zPA[4] = { 8., 7., 6., 1.};
725 Float_t wPA[4] = { 1., 1., 6., 11.};
002b3738 726 //
727 // Air
728 //
729 Float_t aAir[4]={12.0107,14.0067,15.9994,39.948};
730 Float_t zAir[4]={6.,7.,8.,18.};
731 Float_t wAir[4]={0.000124,0.755267,0.231781,0.012827};
732 Float_t dAir = 1.20479E-3;
d013be8e 733 Float_t dAir1 = 1.20479E-10;
002b3738 734
7bd7faf8 735 //
736 // Berillium
737 AliMaterial(5, "BERILLIUM$", 9.01, 4., 1.848, 35.3, 36.7);
738 //
739 // Carbon
740 AliMaterial(6, "CARBON$ ", 12.01, 6., 2.265, 18.8, 49.9);
741 //
742 // Aluminum
743 AliMaterial(9, "ALUMINIUM$", 26.98, 13., 2.7, 8.9, 37.2);
744 //
745 // Air
002b3738 746 AliMixture(15, "AIR$ ", aAir, zAir, dAir, 4, wAir);
7bd7faf8 747 //
748 // Vacuum
d013be8e 749 AliMixture(16, "VACUUM$ ", aAir, zAir, dAir1, 4, wAir);
7bd7faf8 750 //
751 // stainless Steel
752 AliMixture(19, "STAINLESS STEEL$", asteel, zsteel, 7.88, 4, wsteel);
753 //
754 // reduced density steel to approximate pump getter material
755 AliMixture(20, "GETTER$", asteel, zsteel, 1.00, 4, wsteel);
2196bc42 756 // Al-Be alloy
757 //
758 AliMixture(21, "AlBe$", aAlBe, zAlBe, 2.07, 2, wAlBe);
ed9bfb0d 759 // Polyamid
760 //
761 AliMixture(22, "PA$", aPA, zPA, 1.14, -4, wPA);
7bd7faf8 762 //
ed9bfb0d 763
7bd7faf8 764 // ****************
765 // Defines tracking media parameters.
766 //
767 Float_t epsil = .001; // Tracking precision,
768 Float_t stemax = -0.01; // Maximum displacement for multiple scat
769 Float_t tmaxfd = -20.; // Maximum angle due to field deflection
770 Float_t deemax = -.3; // Maximum fractional energy loss, DLS
771 Float_t stmin = -.8;
772 // ***************
773 //
774 // Beryllium
775
776 AliMedium(5, "BE", 5, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
777
778 // Carbon
779 AliMedium(6, "C", 6, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
780 //
781 // Aluminum
782 AliMedium(9, "ALU", 9, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
783 //
784 // Air
785 AliMedium(15, "AIR", 15, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
786 //
787 // Vacuum
788 AliMedium(16, "VACUUM", 16, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
789 //
790 // Steel
791 AliMedium(19, "INOX", 19, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
792 //
793 // Getter
794 AliMedium(20, "GETTER", 20, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
2196bc42 795 //
796 // AlBe - Aloy
797 AliMedium(21, "AlBe" , 21, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
ed9bfb0d 798 //
799 // Polyamid
800 AliMedium(22, "PA" , 22, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
2196bc42 801
fe4da5cc 802}
803
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