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8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
http://slidepdf.com/reader/full/gba-mpd-20080901-trn-ppt-sentry-module01 1/57
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
http://slidepdf.com/reader/full/gba-mpd-20080901-trn-ppt-sentry-module01 2/57
S e n t r y : B a s i c s
"
GeoBalance
Introduction
• DAS schematic
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
#
GeoBalance
Agenda
Background
Theory of Operation
Functional Description
1
2
!
"
#$
%
Feature Tour Operation
&egion Specific
'ersion(s)
*nstallation
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
$
GeoBalance
Learning Objectives
• By the end of this presentation you +ill ,e a,le to: - Define
. /hat is Sentry
- 0plain
. o+ data flo+s through Sentry
. o+ Sentry +orks
. 3alculations used in Sentry
- Do
. *nstall Sentry
. 3onfigure Sentry
. Sa4e Sentry configurations
. Open Sentry configurations
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S e n t r y : B a s i c s
%
GeoBalance
Background• A Bit of istory 5
S3A6
7B
7B
8ogger
6et+ork
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S e n t r y : B a s i c s
&
GeoBalance
Theory of Operation• Today
De4ice 91
7B
De4ice 92 5 6
O3 Ser4er 91
O3 Ser4er 92 5 6
O 3 3 l i e n t
S e n t r y
* 6 S * T 0
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
'
GeoBalance
Sentry: hat is it!
;icrosoft /indo+s (3<) Application
Data Ac=uisition System
Functions
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"unctional #escription $"#%
Input
#ata
&rocessing '
Logic
(D8O)
Output
(Destination)
(alc &rop
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: Input
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
*0
GeoBalance
"#: #LO
(ondi
tionin
g
)nits &rops
Signal
"lo*s
(u+u
lative
s
(alcul
ations
,ealt
h-onit
or
,eart
beat
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
**
GeoBalance
"#: (o++on: )nits
• *6S*T0 Base >nits - Specific units Base units
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S e n t r y : B a s i c s
*"
GeoBalance
3alc
6oise A4eraging Scaling
8inear iece+ise 8inear olynomial
(onditioning
"#: (o++on: (onditioning
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
*#
GeoBalance
"#: (: (: .oise Averaging
)(
)()(
ba
xb xa x
avg in
avg +
⋅+⋅=
( ) ( )( )ba
xb xa x
avg in
avg +
×+×=
Theoretical
here:
0ample
a ? >ser defined integer
(@ 1) 1
b ? >ser defined integer
(@ 9) !
/in ? *nput 4alue
/avg ? 8astest noise a4eraged4alue
(a4g ? in for 1st run)
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S e n t r y : B a s i c s
*$
GeoBalance
"#: (: (: Scaling: Linear
( )11 xm yb ×−=
( )( )12
12
x x
y ym
−
−=
( ) b xm y inin +×=
Theoretical
here:
0ample
1 2
y1
y2
/ $ra*%
y
$ s c a l e d %
$/01y0% ? >ser defined scaling pt 1
( is ra+C y is scaled 4al)
$/21y2% ? >ser defined scaling pt 2 ( is ra+C y is scaled 4al)
+ ? radient of scaling line
b ? Eintercept of scaling line
/in ? *nput 4alue
yin ? Scaled 4alue
( )( )12
12
x x
y ym
−−=
in
yin
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S e n t r y : B a s i c s
*%
GeoBalance
"#: (: (: Scaling: & Linear
Theoretical 0ample
/ $ra*%
y
$ s c a l e d %
$/i1 yi% ? >ser defined scaling pt i
( is ra+C y is scaled 4alue)
i ? 1 519 (min ? 2 ptsC ma (6) ? 19 pts)
+ℓ ? radient of scaling line o4er inter4al ℓ
bℓ
? Eintercept of scaling line o4er inter4al ℓ
/in ? *nput 4alue
yin ? Scaled 4alue
in
yin
Same as 8inear for each segment
( )
( )
( )
( )
>
<
≤≤
+×==
−
−−
N in N N
in
iiniii
ininin
x xif x x
x xif x x
x x xif x x
b xm x f y
,],[
,],[
,],[
1
121
11
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
*&
GeoBalance
"#: (alc: Scaling: &olyno+ial
)(
)()(
ba
xb xa x
avg in
avg +
⋅+⋅=
f xe xd xc xb xa y inininininin +×+×+×+×+×=12345
Theoretical
here:
0ample
a ? >ser defined coefficient
b ? >ser defined coefficient
c ? >ser defined coefficient
d ? >ser defined coefficient
e ? >ser defined coefficient
f ? >ser defined coefficient
/in ? *nput 4alue
yin ? Scaled 4alue
&olyno+ial $degree 3%
/ $ra*%
y
$ s c a l e d %
in
yin
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
*'
GeoBalance
"#: (o++on: &roperties
1
Fluid as
&rop
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S e n t r y : B a s i c s
*
GeoBalance
"#: (o++on: &rop: "luid
Shrinkage
G
SolidsG
/aterG
A*
(3orrected)
A*(>ncorrected)
*
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
*
GeoBalance
S(H #9F
1!I$ psia)
2S
(ppm)
"#: (o++on: &rop: Gas
Ar
e
O2
3O
2
2O
n31922
n3J29
n3%1% n3$1#
n3#1!
n3"12
i3"12
n3!19
i3!19
3%
32#
3!
623O2
"0
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
"0
GeoBalance
"#: #LO
Signals 3alculations
ealth ;onitorsFlo+s
3umulati4e eart Beats
#LO
"*
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
"*
GeoBalance
"#: #LO: Signals
Signals
DAS AS ulse Signal
Analog &ate
""
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S e n t r y : B a s i c s
""
GeoBalance
"#: #LO: Signals
• Direct Analog Signal (DAS)
"#
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S e n t r y : B a s i c s
"#
GeoBalance
"#: #LO: Signals
• rocessed Analog Signal (AS)
"$
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S e n t r y : B a s i c s
"$
GeoBalance
"#: #LO: Signals
• Analog &ate
"%
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
"%
GeoBalance
"#: #LO: Signals
• ulse Signal
"&
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
"&
GeoBalance
"#: #LO: "lo*s
Flo+s
as Orifice
Oil /ater
Tank
"'
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S e n t r y : B a s i c s
"'
GeoBalance
"#: #LO: "lo*s
• Oil
"
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: "lo*s
• /ater
"
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: "lo*s
• as
#0
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: "lo*s
• Orifice
#*
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: "lo*s
• Tank
#"
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (u+ulatives
3umulati4es
3umulati4es
##
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (u+ulatives
• 3um
#$
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (alculations
3alculations
Summation Difference &atio
Analog &ate
* Separator Total Surface
'olume
TotalSurface/atre it Acti4e 'olume 6et as &ate 6et +ater roduced as 6et Oil 6et 8i=uid
A n a l o g & a t e
#%
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (alcs: Su++ation
• Total Surface /ater 'olume
• Acti4e it 'olume
∑= All
ume PitTankVol olume PitActiveV (barrels)(barrels)
∑= All
Total WaterTankserVolumeSurfaceWat (barrels)(barrels)
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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#'
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (alcs: 4atio
• /ater 3ut
• as Oil &atio
• as Fraction
• /ater Oil &atio
Total
Total
#e !i"uidStag
$WaterStageWater%ut =
Net
Net Ratio
il
GasGasil =
Net
Net &raction
!i"uid
GasGas =
Total
Total Ratio
$ilStage$WaterStageWateril =
#
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (alcs: &I
• as *
• Oil *
• /ater *
• Total *
P'd servoir Re
InGasutGas
(ra'do'n
servoirGas Re
Gas P P
))
P
) PI
−
−=
∆
∆=
P'd servoir Re
Inil util
(ra'do'n
servoiril Re
il P P
))
P
) PI
−
−=
∆
∆=
P'd servoir Re
InWater utWater
(ra'do'n
er servoirWat Re
Water P P
))
P
) PI
−
−=
∆
∆=
P'd servoir Re
Inut
(ra'do'n
servoir Re
P P ))
P ) PI
−−=
∆∆=
#
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (alcs: Separator
• Sep 1 'olume
• Sep 2 'olume
bm !evel #Stage !evel #Se*arator +×= (inches)(barrels)
bm !evel $Stage !evel $Se*arator +×= (inches)(barrels)
$0
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: (alcs: Total5ol
• Total Surface Oil 'olume∑ ++= All
Total il #Stage !i"uid $StageilTanksVolumeSurfaceil (barrels)(barrels)
$*
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: ,eart Beat
eart Beat
eart Beat
$"
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: ,eart Beat
• B
$#
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: ,ealth -onitor
ealth ;onitor
ealth ;onitor
$$
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S e n t r y : B a s i c s
GeoBalance
"#: #LO: ,ealth -onitor
• ;
$%
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"#: Output
$&
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S e n t r y : B a s i c s
GeoBalance
Installation
• *nstallation - Turn off *6S*T0
$'
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
• >*
$
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
$
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
%0
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
%*
" T
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
%"
" t T
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
%#
" t T
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
%$
" t T
8/18/2019 GBA MPD 20080901 Trn Ppt Sentry Module01
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
%%
" t T
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S e n t r y : B a s i c s
GeoBalance
"eature Tour
%&
O ti
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S e n t r y : B a s i c s
GeoBalance
Operation
• 8aunching the Sentry Application• 8oad 0isting 3onfiguration
- Open - *mport
• Start 6e+ (or 0dit 0isitng) 3onfiguration - Specify *nputs
. O3K Select O3 Ser4er K Set O3 *nputs
. *6S*T0K Select *6S*T0 Ser4er K Set *6S*T0 *nputs
- Specify Output
. O3
. *6S*T0 - 3onfiguration
. Fluid
. as
. Special 'alues
. Signals
. Flo+s
. ealth ;onitor
. 3umulati4es
. >BA 3alculations
. Sentry 0tensions
- lo,al arameters
- eart Beat - Depth L TD Acti4ity - 'ie+s - 8ayouts
• Data Ac=uistion - Data 8ogging - >ser 3omments
• Sa4ing - Sa4e - 0port
• 0iting the Sentry Application
%
Th 6 d
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S e n t r y : B a s i c s
The 6nd
• The 0nd