Neutron Imaging Detectors Installed Worldwide
TU Munich |
ENEA Casaccia |
KFKI Budapest |
AI Vienna |
Uni Fribourg |
CEA Saclay |
PSI |
HMI |
Lebedev Institute Moscov |
|
country |
Germany |
Italy |
Hungary |
Austria |
Switzerland |
France |
Switzerland |
Germany |
Russia |
neutron source |
FRM-I |
reactor @ Cassacia |
KFKI-reactor |
AI-reactor |
SINQ |
ORPHEE |
SINQ |
BER-II |
RRT |
source type |
MTR-reactor |
TRIGA-reactor |
WWS-reactor |
TRIGA-reactor |
spallation source |
MTR-reactor |
spallation source |
MTR-reactor |
Light water reactor |
neutron energy |
thermal |
thermal |
thermal |
thermal |
cold |
cold |
thermal |
cold+monoenergetic |
monoenergetic 2-6 A |
L/D |
500 |
54 (estimated) |
170 |
125 |
550 |
340 |
100 |
||
flux level [cm-2 s-1] |
1.00E+05 |
5.00E+05 |
1.00E+08 |
1.00E+05 |
1.00E+08 |
3.00E+06 |
1.00E+04 |
2.00E+05 |
|
detector type |
CCD-camera |
CCD-camera |
CCD-camera |
CCD-camera |
CCD-camera |
not yet decided |
CCD-camera |
CCD camera |
CCD camera |
number of pixel x |
512 |
192 |
512 |
512 |
1248 |
512 |
512 |
1024 |
|
number of pixel y |
512 |
165 |
512 |
512 |
1024 |
512 |
512 |
1152 |
|
field of view in x [cm] (min to max) |
6 to 28 |
1,5 to 12 |
1 to 10 |
4 to 21 |
2 |
2 to 30 |
0.1 - 2 |
0.5 to 35 |
|
field of view in y [cm] (min to max) |
6 to 28 |
1,2 to 10 |
1 to 10 |
4 to 21 |
5 |
2 to 30 |
0.1 -2 |
0.5 to 35 |
|
exposure time / frame |
20 - 120 s |
40 ms |
20 - 180 s |
750 ms |
10 - 60 s |
200 -2000 s |
variable |
||
number of projections |
200 |
200 |
360 |
200 |
400 |
200 |
30-100 |
variable, up to 180 |
|
max. weight [kg] |
20 |
1 |
1 |
1 |
20 |
5 |
depends on modification, up to 17 |
||
method for reconstruction |
filtered backprojection |
filtered backprojection |
filtered backprojection |
filtered backprojection (Shepp-Logan) |
filtered backprojection |
filtered backprojection, ART |
filtered backprojection + maximum likelihood method |
||
tools for visualization |
MIRA, VG Studio |
AC3D |
own software |
IDL, VG Studio |
Sclicer, VG Studio |
Own + Slicer |
|||
planned improvements |
reactor FRM-II, new facility and setup |
New CCD at new collimator |
start of operation after set up |
neutron lens for enlargement |
higher resolution, lower exposure |
new math. Tools larger CCD - camera |
Optimization for fast neutron tomography on portable neutron sources |
||
applications |
adhesives, moisture, defects, reverse engineering |
R&D |
hydrogen in Zr tubes |
tooth, batteries |
explosives, initiators |
turbine blades, moisture distribution, ceramics |
defects, new imaging signals , R&D |
Investigation of perspective application |
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