Separate cave into segments, air all sides and replace SKADI side wall with heavy concrete
This commit is contained in:
10
e2-estia.i
10
e2-estia.i
@@ -137,7 +137,7 @@ ext:n 0 0 0.5V2 0 0.5V2 0 8r 0.5V2 7r 0 0.5V2 0 0.5V2 8r 0 0.5V2 0 0.5V2 0
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0 0.5V2 0 0.5V2 0 0 0.5V2 0 0.5V2 0 0.5V2 0 0.5V2 0 22r
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0.5V2 10r 0 4r 0.5V2 3r 0 0.5V2 13r 0 82r
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-0.5V1 49r 0 24r -0.1V1 4r 0 13r 0.1V3 9r $ chopper pit to bunker wall
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0 2r 0.1V3 1r 0 43r
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0 2r 0.1V3 1r 0 56r
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c exponential transform reference vectors: origin, selene 1, inst. shutter
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vect v1 0 0 0 v2 1000 -1394 -6.5 v3 1282 -1793 -13
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c
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@@ -146,15 +146,15 @@ c -------------------------------------------------------
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c --------------- PHYSICS CARDS --------------------------
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c -------------------------------------------------------
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c dbcn 375642321 j j j j j j j j j j j 15291711
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nps 2e6
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nps 2e8
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c histp
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mode n p n h / d t s a
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c volume calculated for tally cells (spheres)
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c and set for chopper disk/spindle and stages x1/x2/z1/z2/rot
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vol 1 506r 11j 1 183r 3848.5 10104 1j 1 7r 479.5 479.5 913 913 1734
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1 81r $ wall segments
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imp:h,/,d,t,s,a 0 0 1 797r
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imp:n,p 0 0 1 797r
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1 94r $ wall segments
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imp:h,/,d,t,s,a 0 0 1 810r
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imp:n,p 0 0 1 810r
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cut:h,/,d,t,s,a 1e+08 1e-3
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phys:n 3000 0
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phys:p 100
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@@ -8,6 +8,7 @@ c Main ESS plant geometry without the instrument
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#(8709 8720 112 -104 8703 8701)
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#(-104 112 72 8710 8209 8203)
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#( 104 8708 8707 8710 8703 8701)
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#( 104 610 8720 8721 8703 8203)
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#(68 -72 8209 -70 -104 -2)
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3 118 0.122325 24 4 -19
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4 0 159 -137 -21 153 -154
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@@ -1,16 +1,7 @@
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c Experimental cave
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c First largest area: up-stream/down-stream/roof/floor/walls
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c then cut corner and add extended roof
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8701 49 0.074981 ((8709 8710 8701 8703 8706 8707 8708 8709 8710 (-8302 : 8705))
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:(8709 8710 8702 8703 8711 8712)
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:(8709 8701 8703 -8302 8805 8806))
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#((-8809 -8810 -8801 -8803 -8806 -8807 -8808 -8809 -8810)
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:(-8809 -8810 -8802 -8803 -8811 -8812)
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:(-8311 8312 8709 8809 -8313 -8803)
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:(-8801 -8803 -8809 8815 8312 8806))
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#(( 72 -8101 8201 8202 8203 8204 3)
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:(8101 -8709 8301 -8302 8303 8304 3))
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8702 4 -1.2E-3 ((-8809 -8810 -8801 -8803 -8806 -8807 -8808 -8809 -8810
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8701 4 -1.2E-3 ((-8809 -8810 -8801 -8803 -8806 -8807 -8808 -8809 -8810
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(-8806 : -8815))
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:(-8809 -8810 -8802 -8803 -8811 -8812)
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:(-8311 8312 8709 8809 -8313 -8803)
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@@ -18,11 +9,30 @@ c then cut corner and add extended roof
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:(-8312 -8302 8809 8709 -8701 -8313)) 3
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#(8621 8622 8623 8624 8626)
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#6111 #8501 #8511 #9001
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8702 4 -1.2e-3 104 610 8721 8703 8203 -8708
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8703 4 -1.2e-3 -8707 8710 8721 8703 8203 8708
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8704 4 -1.2e-3 104 -8710 8720 8721 8703 8203
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c floor
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8711 49 0.074981 8703 8803 8707 8708 8709 (8706:(8805 -8302)) 8710
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c walls
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8712 49 0.074981 -8803 -8801 8709 -8705 -8312 -8302
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8713 49 0.074981 -8803 -8801 -8302 8806 8705 8805
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8714 200 -3.9 -8803 -8801 -8805 -8810 8806 8706 $ heavy concrete
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8715 49 0.074981 -8803 -8801 8706 8707 8810 8710
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8716 49 0.074981 -8803 -8801 -8810 8707 8807 -8808
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8717 49 0.074981 -8803 -8801 8707 8808 8708 8709
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8718 49 0.074981 -8803 -8801 8311 8809 8709 -8808
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c ceiling
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8719 49 0.074981 8801 8701 8710 8707 (8706:(8805 -8302)) 8708 8709
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#(8712 -8810 8711) #(-8311 8809 8312)
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8720 49 0.074981 8801 8702 8709 8712 8711 8710
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#(-8810 -8812 -8811 -8802) #(-8311 8809 8312)
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8721 49 0.074981 8313 8702 8709 8809 8711 8712
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c sample position
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9001 19 -8.65 -9002 9003 -9004
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c 9001 4 -1.2E-3 -9001
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c area around cave
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9900 4 -1.2E-3 8709 8710 -104 (-8708:-8707) 8703 8701
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9900 4 -1.2E-3 8709 8710 -104 (-8708:-8707) 8703 8203
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9901 4 -1.2E-3 8709 8710 112 (8302:-8805) 8703 8701 -8706
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9902 4 -1.2E-3 8720 -8710 112 -104 8703 8701
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c visualize Selene gamma sources (comment for real runs)
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@@ -146,7 +146,7 @@ c Selene 2 Vacuum tank (stainless steel)
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c #(8626 8636 -8932)
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c Air outside the guide shielding
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8601 4 -1.2E-3 ((72 -8709 -104 -8201 8203 8204)
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:(-8701 8203 8710 8709 -104 -8302))
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:(-8701 8203 8710 8709 8708 8707 -8302))
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#(101 -610 -67) #(-8305 -610)
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#(-8302 8702 ((8712 8711):(8809 -8311 -8313)))
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#708
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@@ -681,9 +681,12 @@ c Inside
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8803 p 0.000000 0.000000 -1.000000 166.960
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8804 p 0.813101 0.582123 0.000000 102.134
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8805 p -0.582123 0.813101 0.000000 -3414.795
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8806 p 0.736097 0.676876 0.000000 -236.513
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8807 p -0.813101 -0.582123 0.000000 637.866
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8808 p -0.981311 0.192430 0.000000 -1964.017
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c 8806 p 0.736097 0.676876 0.000000 -236.513
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c 8807 p -0.813101 -0.582123 0.000000 637.866
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c 8808 p -0.981311 0.192430 0.000000 -1964.017
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8806 p 0.736097 0.676876 0.000000 -246.513
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8807 p -0.813101 -0.582123 0.000000 627.866
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8808 p -0.981311 0.192430 0.000000 -1974.017
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8809 p -0.582123 0.813101 0.000000 -3059.795
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8810 p 0.582123 -0.813101 0.000000 4314.795
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8811 p 0.813101 0.582123 0.000000 82.134
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@@ -2,7 +2,7 @@ c large and detailed mesh tally covering the beamline from monolith to full cave
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tmesh
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rmesh1:n dose 1 trans 1
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cora1 500 10i 1000 40i 1500 60i 4500
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corb1 -715 13i -65 24i 55 13i 705
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corb1 -715 13i -65 24i 55 15i 805
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corc1 -200 1i -100 40i 100 5i 600
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c Official ESS dose conversion factors from n/cm²/s to Sv/h
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c Is described in ESS-0019931
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@@ -2,7 +2,7 @@ c large and detailed mesh tally covering the beamline from monolith to full cave
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tmesh
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rmesh1:n dose 1 trans 1
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cora1 500 10i 1000 40i 1500 60i 4500
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corb1 -715 13i -65 24i 55 13i 705
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corb1 -715 13i -65 24i 55 15i 805
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corc1 -200 1i -100 40i 100 5i 600
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c Official ESS dose conversion factors from n/cm²/s to Sv/h
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c Is described in ESS-0019931
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@@ -44,7 +44,7 @@ c Is described in ESS-0019931
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c
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rmesh11:p dose 2 trans 1
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cora11 500 10i 1000 20i 1500 60i 4500
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corb11 -715 13i -65 12i 55 13i 705
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corb11 -715 13i -65 24i 55 15i 805
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corc11 -200 2i -100 20i 100 5i 600
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c Official ESS dose conversion factors from gamma/cm²/s to Sv/h
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c Is described in ESS-0019931
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@@ -2,7 +2,7 @@ c large and detailed mesh tally covering the beamline from monolith to full cave
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tmesh
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rmesh1:p dose 1 trans 1
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cora1 500 10i 1000 40i 1500 60i 4500
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corb1 -715 13i -65 24i 55 13i 705
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corb1 -715 13i -65 24i 55 15i 805
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corc1 -200 1i -100 40i 100 5i 600
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c Official ESS dose conversion factors from gamma/cm²/s to Sv/h
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c Is described in ESS-0019931
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