JET 4.10a shots

Following simulations are available for JET machine in UAL 4.10a:

The shots can be accessed from the private data bases of IMP3 contributors by selecting the TOKAMAKNAME = jet and the UAL version = 4.10a

There are two ways to copy the data to your local data base:
You can copy them directly from the data provider data base as it is mentioned in the table:

cp ~user/public/itmdb/itm_tree/jet/4.10a/mdsplus/0/euitm_ShotRun.* $MDSPLUS_TREE_BASE_0/.

You can check out the data from svn:

svn co --force https://gforge6.eufus.eu/svn/keplerworkflows/trunk/4.10a/imp3/DATA/JET $(MDSPLUS_TREE_BASE_0)

ETS input shots

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These are copies of shots, generated originaly with other codes or containing the experimental data, which were migrated to the ITM-Gateway machine with the tools like Exp2ITM
These are used to start the ETS run and, therefore, might not provide the comlete set of consistent data.


Shot Run CPOs user generated with description
71827 1 equilibrium
coreprof
denka JETTO/EFIT ETS input shot used to test inputs from experimental profiles
77922 2 equilibrium
coreprof
denka JETTO/EFIT ETS input shot used to test inputs from experimental profiles
81856 1 equilibrium
coreprof
denka JETTO/EFIT ETS input shot used to test inputs from experimental profiles
82794 1 equilibrium
coreprof
denka JETTO/EFIT ETS input shot used to test inputs from experimental profiles

ETS interpretative runs

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These are ETS simulations, in which the evolution of the main plasma profiles was disabled (usually only EQUILIBRIUM+Current equation were simulated).
Nonetheless, these runs should provide the complete consistent set of data (although some signals might be filled with 0.0) and might be very convinient for testing purposes. Especially, if you need steady state test bed shot.


Shot Run CPOs user generated with description
77922 4 equilibrium
coreprof
coresource
coretransp
denka ETS/EMEQ ETS interpretative run
[time: 48.01-49.01; composition: e,D; ip=1,7MA Bt=2.3T, ; predictive equations: Jpar; sources: OFF; Transport: OFF]
77922 5 equilibrium
coreprof
coresource
coretransp
denka ETS/SPIDER ETS interpretative run
[time: 48.01-49.01; composition: e,D; ip=1,7MA Bt=2.3T, ; predictive equations: Jpar; sources: OFF; Transport: OFF]
77922 6 equilibrium
coreprof
coresource
coretransp
denka ETS/CHEASE ETS interpretative run
[time: 48.01-49.01; composition: e,D; ip=1,7MA Bt=2.3T, ; predictive equations: Jpar; sources: OFF; Transport: OFF]

ETS predictive runs

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These are ETS simulations, in which some physics study was done.
Short description of the run configuration is available in the table below. Nonetheless, we strongly advise you to contact the run author for the details.


Shot Run CPOs user generated with description
76791 11 equilibrium
coreprof
coresource
coretransp
coreimpur
coreneutrals
denka ETS/CHEASE/BGB/NTMETS ETS run with NTM
[time: 49.9-50.9; composition: e,D; ip=1.6MA Bt=2.0T, ; predictive equations: Jpar,ni,Ti,Te; sources: NBI[10MW]; Transport: BGB+BG+MHD]
77922 12 equilibrium
coreprof
coresource
coretransp
coreimpur
coreneutrals
denka ETS/CHEASE/GEM/BBNBI/NEUTRALS ETS run with GEM
[time: 48.04-48.22; composition: e,D; ip=1,7MA Bt=2.3T, ; predictive equations: Jpar,ni,Ti,Te,n0; sources: NBI[10MW], Neutrals[2*10²² 1/s]; Transport: GEM(256 cores)+BG]
81856 4 equilibrium
coreprof
coresource
coretransp
coreimpur
coreneutrals
denka ETS/CEASE/BGB/BBNBI /IMPURITY/NEUTRALS ETS run with impurity
[time: 52.2-53.2; composition: e,D,Be,W; ip=2.45MA Bt=2.56T, ; predictive equations: Jpar,ni,Ti,Te,n0,nZ; sources: NBI[10MW]; Transport: BGB+BG]
81856 5 equilibrium
coreprof
coresource
coretransp
coreimpur
coreneutrals
denka ETS/CEASE/BGB/BBNBI /IMPURITY/NEUTRALS
Mgnetic axis: Zmag=+15 cm
ETS run with impurity
[time: 52.2-53.2; composition: e,D,Be,W; ip=2.45MA Bt=2.56T, ; predictive equations: Jpar,ni,Ti,Te,n0,nZ; sources: NBI[10MW]; Transport: BGB+BG]
81856 6 equilibrium
coreprof
coresource
coretransp
coreimpur
coreneutrals
denka ETS/SPIDER/BGB/Gauss /IMPURITY/NEUTRALS
Mgnetic axis: Zmag=+15 cm
ETS run with impurity
[time: 52.2-53.2; composition: e,D,Be,W; ip=2.45MA Bt=2.56T, ; predictive equations: Jpar,ni,Ti,Te,n0,nZ; sources: Gauss[10MW]; Transport: BGB+BG]

last update: 2019-01-31 by g2dpc