Alcator C-Mod Run 950322 Information

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Miniproposals
Miniproposal:
Date Filed:
Title:
First Author:
Session Leader:Ian Hutchinson (shots 1-33)

Operators
Session leader(s):Ian Hutchinson
Physics operator(s):Steve Wolfe
Engineering operator(s):Joe Daigle,Vinny Bertolino

Engineering Operator Run Comment
s. wolfe

Session Leader Plans

Physics Operators Plans

Session Leader Summaries
Entered: Jul 7 2004 03:49:12:757PM
Author: To Be Determined
Session Summary 950322

Upper X-points: Initial Experiments

SL Hutch
PO Wolfe
EO Bertolino

Summary.
_______
Essentially all the objectives were achieved plus far more data than
we had dared to hope for. Clear reversal of the plume was observed for
CII and CIII with Methane injection. Data was also obtained for H, and
HeI,II. Densities of NL=1.5, 0.8 and 0.5 were studied.


The objective of establishing a well-controlled top-xpoint plasma was
achieved by
Shot 1. A few tweaks improved the bottom shape in 2-3 and
the Mo injections faded away.
Shot 4 all the predictors and controllers were recalculated using shot 3
as reference. this made no obvious difference.
Shots 6-11 had a STRKPSI sweep in and then out again from 0.5 to 0.9s.
Shots 13-15 were used to tune up a shot with all the coil Vs copied in from
shot 4. Initially EF2s railed and caused a VDE. Tweaked the EF2 Vs to
correct.
Shots 16-19 were x-bottom shots for comparison. They show generally stronger
asymmetry in the opposite direction.
Shots 20-28 were density and NINJA scans.
Shots 29-31 explored increased clearin.
Shots 32-33 Attempted to switch from x-top to xbottom in mid shot. 33 got
a beautiful transition as programmed and the NINJA plume reversed in one
TV frame.

Table of Relevant shots with x-top: (needs to be checked; use as guidance)
__________________________________
Filter:
nL04/NINJA CII CIII Ha HeI HeII

.8/CH4 6 10 7-9
.8/H 3-5
.8/He 26 27
1.5/CH4 11 29-33 12 13-15
1.5/He 28
.5/CH4 23 25 20 22

x-bot: 16-19

Scorecard
_________
1 1.587 0.841 2 1.560 0.841
3 1.600 0.843 4 1.548 0.843
5 1.401 0.843 6 1.227 0.843
7 1.509 0.846 8 1.212 0.843
9 1.306 0.841 10 1.489 0.841
11 1.148 0.843 12 1.128 0.838
13 0.360 0.745 14 0.370 0.835
15 1.324 0.879 16 1.015 0.882
17 1.044 0.835 18 0.000 0.024
19 1.128 0.830
21 0.000 0.024 22 1.510 0.851
23 1.082 0.851 24 0.000 0.024
25 1.110 0.851 26 1.261 0.856
27 1.157 0.856 28 1.269 0.851
29 1.314 0.859 30 0.609 0.859
31 1.261 0.856 32 0.408 0.432
33 1.316 0.851
Finished summary for 950322 Total of 33 shots.
33 shots. 29 plasmas. 3 fizzles. 1 duds.
Fizzle = gt 17 lt 50kA.

Details
_______
Start from 950317010 as a segment 2 basis shot.
Wolfe did all the swaps and stuff as detailed in the plan. Upper x-point
reference. STRKPSI control at the top

1 Pla Miraculously good. Strike point control excellent. Upper x diverted
from .35s. A vertical position thrash at .2 sec our main worry.
some Moly injections but not too bad.

Move RXL out. Feathered in the STRKPSI gain.
2 Pla Rounded the plasma bottom fairly well. A big moly injection at .7s
but it recovers. Position thrash is improved.

Argon. Ninja D2 5 psi inner wall midplane.
Increased clearin integral gain later. Move RXL out some more.
3 Pla Moly much better. Radiation a bit higher (Argon). Ninja TV view
shows little flow.

Recalculate predictors and controllers using shot 3 as reference.
Double NINJA to 10 psi. More Argon.
4 Pla Nothing obvious changed.

NINJA to 20 psi RXL 1 cm further out.
5 Pla Signs of a H2 plume on TV but density was actually higher: NL 1.2

NINJA to 5psi Methane. Install a 3mm inward sweep on STRKPSI .5-.9s.
Permit Low power RF at .8s.
6 Pla Clear plume on TV. Predominantly in the upward direction along the
field. Density back at .8. STRKPSI sweep visible but small.
Disrupts at 1.2s during ramp-down.

Increased STRKPSI sweep to 5mm. All else the same.
7 Pla Injection at .75s. Near the peak of the inward sweep.

Increased Ar to .035s puff.
8 Pla Disrupted @1.2s. Smaller injection. @pi bolo to 300kW due to Argon.

Repeat.
9 Pla Disrupts at 1.3s. No injection.
Conclusion looking at the Methane with different filters:
CII plumes asymmetrically. CIII not. HI not.

Drop Ar to .025s. Double NINJA to 10psi Methane.
10 Pla No disruption. Clear CII plume asymmetry.
Direction of CII plume reverses when the recycling light drops
below the probe at the rampdown.

Raise NL to 1.4.
Second NINJA puff at top of lower divertor cone.
11 Pla Disrupts @1.15s due to EF2 zeroing.
Plume very clear in CII.

Removed STRKPSI ramp. Removed rampdown gas puff.
Second NINJA to top of machine.
12 Pla Disrupts @1.14s. EF2 again.
CIII is now asymmetric. Top NINJA gave little or nothing.

Changed rampdown of clearin trying to fix disruption.
Copied all coil voltages (M_outs) to Vs.
13 Pla Disrupts at .4s, due to EF2 railing @.25s.
Appears to be caused by thrashes on the voltages copied in.
Halpha

Remove voltage thrashes.
14 Pla Similar problem.

Copied back the EF2 Voltages. Cleaned up some of the other traces.
15 Pla Ran to 1.3s. Slight overshoot on the current.

Reload 950317010 but with the density trace from 15.
Standard x-lower configuration.
16 Pla Disrupt at start of rampdown.
CII plume clearly reverses. More asymmetric than the x-top config.

Lower xpoint 1 cm to nominal zero.
Removed rampdown puff. Tweak clearin rampdown.
17 Pla Disrupt at 1.05s.
CIII very asymmetric.

NINJA to 20psi D2.
zxl lowered to -.005.
18 Fiz
19 Pla Disrupt @ 1.13s.
Halpha slight asymmetry.
Igor hang some lost data

Reload shot 15 return to x-up.
20 Ran to 1.3s
Halpha slight asymmetry.
Magnetics data inaccessible. Big pause to reconfigure MDSplus.

Nl04to .5, NINJA to 10psi methane. Ar pulse 35ms.
21 Fiz Tweak Br and P_0.
22 Pla Long. Small Mo injection at .4s.
Halpha very slightly asymmetric.

Raise Ar puff to 60ms
23 Pla Disrupt at 1.08s. 2pi=300kW.
CII moderate asymmetry.

Shape Tweaks.
24 Fiz Lower p_O.
25 Pla Disrupts at 1.1s.
CII moderate asymmetry.

NINJA to 5psi He.
NL04 to .7. AR to 25ms.
26 Pla Ran to 1.25s.
HeI symmetric.

27 Pla Ran to 1.14s.
HeII very faint.

NL04=1.4, 10psi He.
28 Pla Ran to 1.27s.
HeII rather symmetric.

NINJA to 5psi Methane.
ZXU to -.005. Idea to get a greater clearance and more singleness.
Clearin increased to .01 from .005.
29 Pla Ran to 1.3s. Moly injections at .4, .8s.
Inner Gap 1.9cm, as advertized. Still not very single-nullish.
CII asymmetric, reverses at 1.1s.

ZXL to -.015, Clearin to .013m.
30 Pla Disrupt at .6s. EF2L railing.
CII asymmetric.

Draw ZCUR +.5cm to 1.5cm.
31 Pla Ran to 1.3s even though EF2L rails.
CII asymmetric. Flips during ramp.

Program x-top to x-bot transition at .6-.75 sec.
32 Pla Runaway. Disruption at .4s.

Raise fill
33 Pla Ran to 1.3s.
Superb controlled top to bottom transition.
CII strong flow asymmetry reverses in one frame.

Physics Operator Summaries
Entered: Jul 7 2004 04:36:53:600PM
Author: To Be Determined
Physics Operator Summary for 950322

MP098 Upper x-point equilibria
SL: Hutch
PO: Wolfe
EO: Bertolino/Daigle

The goal of this run was to obtain an upper null equilibrium and make a
preliminary study of the behavior of the edge flows by looking at plumes from
the midplane NINJA puff. A more detailed run plan is found in the LOGBOOK, and
probably in the Session Leader's summary. The run was extremely successful,
with all goals being met and then some.

We started from a previously prepared shot, somewhat based on 950317010. All
relevant predictors and controllers were recalculated using a reference xpoint
with RXA=+0.394. STRKPSI was run with a reference point of
rsout,zsout=(.685,.6), a place 1.5 cm in from the gusset corner. This was
loaded as shot #1 and ran pretty much as designed. Density called for
NL_04=.7e20 and got between .7 and .8e20

Shots #1-3 were spent fine tuning the upper x-point equilibrium, and starting
the NINJA puffs with D2.

Shot #4 had the predictors and controllers reloaded using shot #3 as the
reference equilibrium (SHOT_NO=950322003); this worked, but it wasn't clear
there was much of an improvement. At any rate these predictors were used for
all the subsequent upper nulls in this run.

Shot #5 had a tweak to RXL to get it off the nose, and a larger NINJA puff.

Shots #6-10 had a sweep in STRKPSI and CH4 puffing from NINJA.

Shot 11-12 were the first part of a series at NL_04=1.4e20
Shot 13 we tried cutting in the MOUT signals from shot#4 into the power supply
V feedforwards. This resulted in a disruption, as EF2's railed early; similar
effect on #14, on which some but not all of the thrashes in the MOUT were
removed.
Shot 15 we replaced the EF2 voltage programming with the original, and removed
more of the spikes and thrashes. This ran, but still had more marginal EF2
than the original.

Shot 16 returned to lower x-point configuration, basically 950317010 with
density from 950322015. The plume was observed to reverse (back to normal).
Shots 17,19 were lower x-point, with x-point adjusted some from 16. #18
fizzled.

Shot 20 was back to upper null, a reload of #15 with lots more weeding out of
the V program signals. This one ran ok, but there is some problem with the
magnetics data causing the data file to lock up. The following shot was
delayed by almost 45 minutes and the shot #20 data file was still locked
following the run.

Shot 21 fizzled.

Shot 22-23 were at 0.5e20, with CH4 NINJA puffing.
Shot 24 fizzled
shot 25 was at 0.4e20
shot 26-28 were at 0.7e20, with He puff from NINJA.
Shot 29 had larger CLEARIN (.01), and NINJA back to CH4
Shot 30 was an attempt at even larger CLEARIN (.013) that disrupted in
flattop with a VDE.
Shot 31 had ZCUR raised to .015, and that ran successfully.

On shot 32, we attempted to program a transition from upper null to lower null
in the middle of the shot, starting from #28 and switching between .6 and
.75sec. Shot 32 was a runaway screamer, but #33 (with higher fill and no other
changes) ran just fine, and the plume observed on the TV indeed reversed
direction at the transition.

Problems:
---------
There were two data system delays, one on STORE of DAQ1 CAMAC, one in
Secondary data acquisition when the magnetics data got locked.

Joe reported a possible supply problem on shot #30, OH2 prior to the
disruption.

Shot 32 was a bad runaway shot. There was one mild runaway shot earlier in the
day, both traceable to low fill, which was being used following disruptions.

The 28 and 18 peaks were high this morning, but this may not have had any
impact. CII signals at breakdown were up to .008mW/cm2/ster on #24, which
followed a disruption and lots of NINJA CH4 puffing.

I made one Br_0 tweak on #22, following a fizzle on shot#21

Scorecard:
----------
Plasmas 30
Fizzles 3
Duds 0
Tests 0
------ --
Total 33




Session Leader Comments

Physics Operator Comments
Mar 22 1995 07:44:36:850AMSteve WolfeRun plan for 950322:
---------------------
MP098 Upper x-point equilibria
SL: Hutch
PO: Wolfe

Engineering setup from 950315002
Set A-side plenum pressure to 19psi D2. Determine initial fill pressure in the
morning.

Use Segment 1 from 950315002; add NL_04 and Bz_0 wires (MP101) but with zero
gains.

Start from Modified 950317010 as a segment 2 basis shot. Can move
ZCUR to 0. later if desired.

Combined shot is now in PCS$WOLFE:PCS_950322901.*
("PCS$WOLFE" ="USER9:[WOLFE.MDS.SHOTS.HYBRID.PCS]")

Mar 22 1995 07:49:58:800AMSteve WolfeSession Leader's Plan for 950322
Upper X-point Divertor Configuration: Initial Experiments


(1) Implement controllers appropriate to an upper x-point. This will need
some fiddling with PCS. This is done. All variations are now available
as keywords in fluxihh.

(2) Establish that they can be made to work and control the plasma. It is
proposed that initially the strike-point radius on the upper plate
should be controlled instead of the x-point radius (or perhaps in
addition, using an overdetermined set). This will help to ensure that
the separatrix is kept away from the gusset plates.

Prior to run set up controllers as follows but based on shot 950317010

The x-point reference position proposed is (.564,.394) the standard
upper x-point position.
Call CLEARIN, using predictor and controller keywords:
rxa=.564,zxa=.394 (Done - needed to rescale factor slightly)

Mar 22 1995 07:50:26:230AMSteve Wolfehe STRKPSI reference position for strike-point is proposed
to be either:
(.7,.6), the corner where the gusset plates meet the flat plate,
Call STRKPSI using predictor and controller keywords:
rxz=.564,zxa=.394, rsout=.700, zsout=.600

or rsout,zsout=(.685,.6), a place 1.5 cm in from the gusset corner.
** Use this one to start
zxa=.394,rsout=.685,zsout=.600
Factor needed to drop by a factor of 3.
Need to change the controller call to make ortho to ZXL,RXL not (ZXU,RXU)
ONly get 77/sec on Physics PID, instead of 120. Leave Integral at 200/sec^2
This may be because the higher strike point has lower factor. Can check
whether this is better or worse for alternate rsout->.7

This choice will be used with a programmed value of
0 for STRKPSI, which, given the flux expansion ratio of typically 3
between the equivalent of this position and the midplane for present
lower divertor plasmas, translates to putting $\rho= 5$mm at the
corner. For the former choice the programmed value for STRKPSI would
be -5 mm. However, this may be impermissible due to Hybrid
limitations. Either way, the idea is to keep the $\rho$ of the gusset
corner at least 5 mm.

Mar 22 1995 07:50:51:320AMSteve WolfeOther estimators/controllers can be standard (RCUR, ZCUR, RXL, ZXL,
RXU, ZXU).
The gains must be exchanged top to bottom on x-points, together with
the programmed values.

Draw sensible values in the parameters. (Exchanged RXL,ZXL <-> RXU,ZXU
waveforms and gains; flipped sign of ZXL,ZXU. Flipped ZCUR.

Tune PCS and the plasma so that routine operation can be considered to be
established. Verify that the upper x-point-based controllers are working.
Meanwhile inject some nitrogen (or hydrogen or methane) in the NINJA
for purposes of viewing the plume entrainment. Use the wide-angle TV.
If disruptions plague us due to impurity influx, try 0.6MA current.

Two or three shots will be taken at each of two densities. This will
enable those interested in neutrals to attempt a preliminary comparison.
It will also give some opportunity to compare the plume at different
densities.
Start at nl04=.7 then move to 1.2

Observe marfe behaviour.

Mar 22 1995 08:44:54:090AM950322001Steve WolfeShot#950322001

Starting from previously prepared 950322901,
reduce RXL gain to 25/sec. Set NL_04 in Seg 1 controller to 3.5e-19.
Load at 22-Mar-1995 07:49:29.00
Coldstart ran ok.
RGA 28 and 18 peaks were up about 20% from yesterday before ECDC
Fill at 1.8e-5 Torr

Ran all the way through, looked good on the TV!
Big excursion on ZCUR at 200msec before crossover
Got a pretty good looking upper xpoint discharge

Mar 22 1995 09:09:39:110AM950322002Steve WolfeShot#950322002

Move RXL from -.035 to -.02 later, -.04 to -.032 early
Step STRKPSI gain up to 77 at 350msec, 36.9 from 200 to 350.

Ran fine again, still an early thrash, not as bad?

Mar 22 1995 09:32:48:520AM950322003Steve WolfeShot#950322003

Enable 20msec Ar puff, NINJA 5psi D2
Move RXL out another cm to -.01
Delay CLEARIN integral gain until 400ms, raise to 200/sec2 at .55sec

Ran fine again. Looks good, I'm going to recalculate the predictors &
controllers using this as a reference.

Mar 22 1995 10:03:01:370AM950322004Steve WolfeShot#950322004

Recalculate predictor and controllers for
CLEARIN
RXL
ZXL
RXU (increase factor from 2.5e-5 to 5e-5, still have room
ZXU
STRKPSI (Wire 9)
Widen Ar puff to 25msec
Double NINJA plenum pressure to 10.5psi D2

Ran fine. Looks very similar.

Mar 22 1995 10:12:57:820AM950322005Steve WolfeShot#950322005

MOve RXL another cm further out (0.0)
Double NINJA pressure to 20.2psi

Ran ok. Density went to 1.e20 from NINJA puff

Mar 22 1995 10:36:13:630AM950322006Steve WolfeShot#950322006

Put in a sweep in strkpsi -3mm starting at .5 sec
NINJA will be in CH4 at 5psi

Ran, but had a disruption in rampdown 1.22 sec
Can hardly see the sweep

Mar 22 1995 10:36:37:530AM950322006Steve WolfeShot#950322006

Put in a sweep in strkpsi -3mm starting at .5 sec
NINJA will be in CH4 at 5psi

Ran, but had a disruption in rampdown 1.22 sec
Can hardly see the sweep

Mar 22 1995 10:47:14:220AM950322007Steve WolfeShot#950322007

INcrease sweep amplitude to -5e-3
Ran ok.
Note EF2U is zeroing at 1.1 sec, but we live through it
Had a big Mo injection at 0.74sec

Mar 22 1995 11:14:25:750AM950322009Steve WolfeShot#950322009

No changes, completing a scan.
Ran ok.

Mar 22 1995 11:27:51:500AM950322010Steve WolfeShot#950322010

reduce Ar puff width to 25msec
Double CH4 NINJA pressure to 10psi

Ran all the way through (no disruption)

Mar 22 1995 11:44:09:430AM950322011Steve WolfeShot#950322011

Raise NL_04 to 1.4e20 at 600msec
Increase EF4 program from 1500 to 1900

Disrupted in ramp-down.
EF2U goes to zero before the disruption

Mar 22 1995 11:58:10:430AM950322012Steve WolfeShot#950322012

Get rid of ramp-down gas puff
Leave RXU constant in ramp-down
Get rid of STRKPSI sweep
Ramp EF4 down faster in rampdown
Enable upper NINJA 5psi CH4

Ran, but still disrupted

Mar 22 1995 12:16:10:430PM950322013Steve WolfeShot#950322013

Slow down rampin of CLEARIN during rampdown
Raise Upper NINJA to 10psi
Copy MOUT values into all supply voltages from shot 950322004

Disrupted early; railed EF2L

Mar 22 1995 12:27:27:560PM950322014Steve WolfeShot#950322014

Get rid of early spikes in new V programming
Reduce fill to 1.7e-5

Same early disruption. Still railed EF2L, upper now off te rail.
This one went up

Mar 22 1995 12:35:37:390PM950322015Steve WolfeShot#950322015

Copy old voltages back into EF2's, get rid of a more spikes and wiggles
in the others

That worked. Ran all the way through.
I should remoce more points on the other traces, though.

Mar 22 1995 01:04:34:220PM950322017Steve WolfeShot#950322017

Lower x-point to zero, fix rampdown along the lines of what I
did earlier.
Previous shot almost got lost early, a bounce at 28msec.

Made it further into rampdown, but stil disrupted.
EF2U railed briefly at 1sec.

Mar 22 1995 01:18:27:240PM950322018Steve WolfeShot#950322018

Lower x-point to -.005; slow CLEARIN ramp even further
Purge and turn off Upper Divertor NINJA plenum
Purge Lower NINJA PLenum and fill to 20psi D2

Fizzle.

Mar 22 1995 01:26:00:020PM950322019Steve WolfeShot#950322019

Lower fill to 1.8e-5 and try again
Lower x-point to -.005; slow CLEARIN ramp even further
Purge and turn off Upper Divertor NINJA plenum
Purge Lower NINJA PLenum and fill to 20psi D2

Ran, still disrupted in rampdown.

Mar 22 1995 01:50:19:390PM950322020Steve WolfeShot#950322020

Reload shot 15 (back to upper null)
Weed out a lot of points on voltages.
Lots of data was lost on DAQ1 on the previous shot.

Ran ok, EF2's are off the rail. Disrupted at 1.25sec

Mar 22 1995 02:32:53:620PM950322021Steve WolfeShot#950322021

NINJA to 10psi CH4
NL_04 to .5e20
Ar puff to 35msec
There is a problem with accessing the magnetics data from the last shot.
This shot is going to be very late; finally into INIT at 14:25

Fizzle. I knew it!
Looks like a Br problem

Mar 22 1995 02:43:58:000PM950322022Steve WolfeShot#950322022

Br_0 0.5mTesla more positive, (6.5to 7.0mT)
Fill to 1.6e-5 (risk the hards, the CII level was really high on 21)
NINJA to 10psi CH4
NL_04 to .5e20
Ar puff to 35msec

OK, ran all the way through
Breakdown is still a bit late

Mar 22 1995 02:52:53:490PM950322023Steve WolfeShot#950322023

Increase Ar width to 60msec (against my better judgment)
Disrupted late (1.08). 2pi is at 300 during flattop
EF2L rails at 800msec

Mar 22 1995 03:07:45:650PM950322024Steve WolfeShot#950322024

Raise EF4 to 2400A
NL_04 to .4e20
ZXU to 0.0, and raise its gain to 25 at .55sec
Raise fill to 1.8e-5

Fizzle. CII level is at .008mw/cm2/ster

Mar 22 1995 03:16:34:720PM950322025Steve WolfeShot#950322025

Drop fill to 1.6e-5 and try again.
Raise EF4 to 2400A
NL_04 to .4e20
ZXU to 0.0, and raise its gain to 25 at .55sec

Got it back, still disrupts in ramp-down

Mar 22 1995 03:32:07:620PM950322026Steve WolfeShot#950322026

Raise NL_04 to 7e19
Chnage NINJA to He @5psi
Ar width back to 25msec

Ran ok, got hards.

Mar 22 1995 03:42:39:610PM950322027Steve WolfeShot#950322027

Raise fill to 1.8e-5
No other changes

Still disrupting on ramp-down.

Mar 22 1995 03:52:15:640PM950322028Steve WolfeShot#950322028

10psi on He NINJA
NL_04 to 1.4e20
Tweak rampdown
Drop ZXU gain to 3.0 in rampdown

Ran though ok. Now for more changes

Mar 22 1995 04:08:49:670PM950322029Steve WolfeShot#950322029

Drop ZXU to -.005
Increase CLEARIN by .005 to +.01
NINJA back to CH4 @5psi

Ran fine. Disrupts at 1.3+ sec
EF2L goes to zero at 1.27

Mar 22 1995 04:25:51:140PM950322030Steve WolfeShot#950322030

Speed up the EF4 rampdown
Slow down CLEARIN rampdown
ZXL down by 1cm
CLEARIN to .013

Disrupted in mid flattop
Looks like a VDE. EF2L is on the rail from .35 to .58

Mar 22 1995 04:34:56:800PM950322031Steve WolfeShot#950322031

Raise ZCUR to .015
Ran through. EF2L is on the rail for the whole shot.

Mar 22 1995 04:54:57:310PM950322032Steve WolfeShot#950322032

Reload shot #28, set up for a transition from upper to lower .6 : .75
Move plasma, x-points, drop upper gains, raise lower gains.
If this goes, it'll be a miracle.

Bad runaway, early disruption.

Mar 22 1995 05:04:35:950PM950322033Steve WolfeShot#950322033

Raise fill to 2.0e-5 and try again:
Reload shot #28, set up for a transition from upper to lower .6 : .75
Move plasma, x-points, drop upper gains, raise lower gains.

Miracles happen! Ran all way through.
Claims of flip in plume direction emanate from our videophiles.

Engineering Operator Comments
ShotTimeTypeStatusComment
108:32:28:650AMPlasmaOkno faults
208:58:32:550AMPlasmaOkno faults
309:28:09:920AMPlasmaOkNo Faults.
409:53:11:060AMPlasmaOkno faults
510:08:15:090AMPlasmaOkno faults
610:23:43:310AMPlasmaOkNo Faults.
710:41:26:890AMPlasmaOkno faults
810:56:42:790AMPlasmaOkno faults
911:12:26:290AMPlasmaOkno faults
1011:23:25:710AMPlasmaOkno faults
1111:39:32:060AMPlasmaOkno faults
1211:55:09:710AMPlasmaOkno faults
1312:07:12:180PMPlasmaOkno faults
1412:19:39:160PMPlasmaOkno faults
1512:31:02:230PMPlasmaOkno faults
1612:43:56:270PMPlasmaOkno faults
1712:54:38:090PMPlasmaOkno faults
1801:13:47:400PMPlasmaOkno faults
1901:22:26:710PMPlasmaOkNo Faults.
2001:46:44:510PMPlasmaOkNO Faults.
2102:28:16:260PMPlasmaOkno faults
2202:37:26:500PMPlasmaOkNo Faults.
2302:48:25:880PMPlasmaOkNo Faults.
2403:04:18:360PMPlasmaOkno faults
2503:12:48:470PMPlasmaOkNo Fault
2603:27:51:020PMPlasmaOkNo Faults.
2703:38:49:160PMPlasmaOkNo Faults.
2803:50:32:140PMPlasmaOkNo Faults.
2904:05:27:860PMPlasmaOkNo Faults.
3004:17:58:620PMPlasmaOkComm Fault OH2L & OH1
3104:31:44:440PMPlasmaOkNo Faults.
3204:49:24:880PMPlasmaOkNo Faults.
3305:01:07:340PMPlasmaOkNo Faults.