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Page 1: GBA MPD 20080901 Trn Ppt Sentry Module01

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   S  e  n   t  r  y  :   B  a  s   i  c  s

"

GeoBalance

Introduction

• DAS schematic

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#

GeoBalance

Agenda

Background

Theory of Operation

Functional Description

1

2

!

"

#$

%

Feature Tour Operation

&egion Specific

'ersion(s)

*nstallation

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$

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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%

GeoBalance

Background•  A Bit of istory 5

S3A6

7B

7B

8ogger 

6et+ork

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&

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

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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

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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

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GeoBalance

"#: Input

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*0

GeoBalance

"#: #LO

(ondi

tionin

g

)nits &rops

Signal

"lo*s

(u+u

lative

s

(alcul

ations

,ealt

h-onit

or 

,eart

beat

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**

GeoBalance

"#: (o++on: )nits

• *6S*T0 Base >nits - Specific units  Base units

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*"

GeoBalance

3alc

6oise A4eraging Scaling

8inear iece+ise 8inear olynomial

(onditioning

"#: (o++on: (onditioning

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*#

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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*$

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

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*&

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

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*'

GeoBalance

"#: (o++on: &roperties

1

Fluid as

&rop

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*

GeoBalance

"#: (o++on: &rop: "luid

Shrinkage

G

SolidsG

/aterG

 A*

(3orrected)

 A*(>ncorrected)

 

*

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*

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

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"0

GeoBalance

"#: #LO

 

Signals 3alculations

ealth ;onitorsFlo+s

3umulati4e eart Beats

#LO

"*

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"*

GeoBalance

"#: #LO: Signals

Signals

DAS AS ulse Signal

 Analog &ate

""

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""

GeoBalance

"#: #LO: Signals

• Direct Analog Signal (DAS)

"#

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"#

GeoBalance

"#: #LO: Signals

• rocessed Analog Signal (AS)

"$

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"$

GeoBalance

"#: #LO: Signals

•  Analog &ate

"%

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"%

GeoBalance

"#: #LO: Signals

• ulse Signal

"&

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"&

GeoBalance

"#: #LO: "lo*s

Flo+s

as Orifice

Oil /ater  

Tank

"'

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"'

GeoBalance

"#: #LO: "lo*s

• Oil

"

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GeoBalance

"#: #LO: "lo*s

• /ater 

"

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GeoBalance

"#: #LO: "lo*s

• as

#0

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GeoBalance

"#: #LO: "lo*s

• Orifice

#*

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GeoBalance

"#: #LO: "lo*s

• Tank

#"

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GeoBalance

"#: #LO: (u+ulatives

3umulati4es

3umulati4es

##

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GeoBalance

"#: #LO: (u+ulatives

• 3um

#$

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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

#%

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GeoBalance

"#: #LO: (alcs: Su++ation

• Total Surface /ater 'olume

•  Acti4e it 'olume

∑= All 

ume PitTankVol olume PitActiveV  (barrels)(barrels)

∑= All 

Total    WaterTankserVolumeSurfaceWat  (barrels)(barrels)

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#'

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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    =

#

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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 

−−=

∆∆=

#

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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

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GeoBalance

"#: #LO: (alcs: Total5ol

• Total Surface Oil 'olume∑   ++= All 

Total    il #Stage !i"uid $StageilTanksVolumeSurfaceil  (barrels)(barrels)

$*

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   S  e  n   t  r  y  :   B  a  s   i  c  s

GeoBalance

"#: #LO: ,eart Beat

eart Beat

eart Beat

$"

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GeoBalance

"#: #LO: ,eart Beat

• B

$#

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GeoBalance

"#: #LO: ,ealth -onitor 

ealth ;onitor 

ealth ;onitor 

$$

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GeoBalance

"#: #LO: ,ealth -onitor 

• ;

$%

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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

$'

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GeoBalance

"eature Tour 

• >*

$

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GeoBalance

"eature Tour 

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GeoBalance

"eature Tour 

%0

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GeoBalance

"eature Tour 

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GeoBalance

"eature Tour 

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GeoBalance

"eature Tour 

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GeoBalance

"eature Tour 

%$

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GeoBalance

"eature Tour 

%%

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GeoBalance

"eature Tour 

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O ti

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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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The 6nd

• The 0nd