mov data detail,limit switch settings & torque switch settings … · 2018-01-30 · calc 5...
TRANSCRIPT
![Page 1: MOV Data Detail,Limit Switch Settings & Torque Switch Settings … · 2018-01-30 · Calc 5 M-ULU-(g5Z~ O Page p of go A~g Std 7/ qR 0/ Existing design documents, modifications and](https://reader030.vdocuments.site/reader030/viewer/2022040811/5e52156d0b887b12965cef55/html5/thumbnails/1.jpg)
I ~ ~CALCULATION COVER SHEET
CALC. NO.-"=vL>
FILE NO R2-Ql
SUPERSEDED BY
SAFETY-RELATED 7k.ASME III OR XI [OTHER QUALITY I'
NON QUALITY
PROJECTER/CTN NO. 402288
DESIGN ACTIVITY/PMR NUMBERPAGE I OF
I
,'ITLE/DESCRIPTION Mpv Data Detail, Li;.i.t Switch Settings and Torque Switch SettingsFor:
flan-
I NQ T-aa, l
'YSTEMS AFFECTED
NRC (veneric Letter 89-10 re~:ed establishnint of a program to provide for the testing|inspection and maintenance of safety-related motor-operated valves. This calculation,'rovides the data details or the valve identified above which will be used to preparethe Data Detail Drawing Y/hich will support the testing, in~ion and maintenanceactivities.
IN
See Section 2.0 for .'methodology.
This calculation serves as the design inputs for drawing 0 Q- l 'l 9 %
See Section 3.0 for'nputs/Heferences.
See Section 6. 0 for results/Conclusions.
CS 233 C9 f78 ~l~r 2 net rr~rjc"C.CE
j (ETO) BINDER AFFECTED'..l. YES-If Yes enter:a
,9ii0i00063 9ii004PDR ADOCK 050003S7-0 PDR .
ND ~aCD
Bhnder 0
Calc. FileVol .
Pgs.
REV. HO. DATE PREPARED BY REV!EHED/CHECKED BY DATE APPROVEO BY DATE
zo-(-'I( r ~zqf !,/ g-zy.q( /t'/@~~
/. g o-P( f//ml s/ frb0061(12)
to 5 'flPZW/~/
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C
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DESIGN INPUTS CHECKLIST
Title 6 No. <-'I'~V lc(~ Zev. 0h. DESIGN INPUTS
INPUTSPage ZofPile R35
~ 4 -Wl-fg
l. APPLICABLE CODES
Codes: ASME, ASBl, AISI. Standards: ANSI, IEEE, AMS, ANS Regulatory Requirements.
2. PERFORMANCE REQUIRBKRXS
A. Input Requirements - For services such as air, vater, electricity,lube oil, etc.
B. Output Requirements - Physical output such as: capacity, pressure,temperature, voltage, velocities of fluids, pressure drops separationand isolation both system and unit, and redundancy requirements ofstructures systems and componenzs.
C. Operational requirements under various conditions, such as plant startup,normal plant operation, plant shutdown, plant emergency operation, specialoz infrequent operation and system abnormal or emergency operation. Thisincludes the overall effect on the plant (i.e., the potential lose of generation).
D. Failure effects requirements of structures, systems and components,including a definition of those events and accidents Mhfch they mustbe designed to withstand.
3. COMPATIBILITY
A. Compatibility and suitability of material selection, such as chemical andphysical characteristics, radiation and heat resistance protectivecoatings and corrosion resistance.
B. Operational interface requirements including definition of thefunctional interface involving structures, systems and components.
4. INSTALLATION (TXEMS MAY APPLY TO ANY DISCIPLINE)
h. Transporting and Storfng - Includes environmental conditions anticfpatedduring storage, construction and operation and handling storage andshipping requirements.
B. Civil - Plant layout and arrangement requirements, escape fromenclosures, anchor bolts, penetrations, equipment foundations.
C. Piping - Thermal expansion or heat restriction zequizements, vibration ordynamic loading considerations, stress, shock, reaction forces and pipe supports.
D. Electrical - Uoltage, source, grounding conduit/raceway requirements.
E. Instrumentation - Instzumentatfon and control requirements includingindicating instruments, control and alarms required for operation,testing and maintenance and calibration.
P. Chemistry - Mater chemistry consfderatfons, including sampling provisions.
5. MAINTAINABILITY
APPLICABLEYES NO
N (1
baal ( 1
(xl ( 1
(K3 ( 1
( 1 bC3
(1 Xl
( 1 fxl
(1 %3
( 1 (Xi
( 1 (xi
W (1%3
( 1 baal
h. Accessibility - Maintenance, ISI and ALARA accessibility requirements.
6. TEST REQUIR1RElCS - Including pre&PS, ISI and LLKC testa.
7. SAFETY - Personnel and public safety including special blocking, zadiationexposures, ALARA environmental concerns, effluents and noise.
8. SECURIXY - Physical security plant considerations.
9. DESIGN CONSIDERATIONS - Porm EPM+h-208BZ and B3.
10. OXHER-
( 1 baal
( 1 (>3
(1 M
'( 3 baal
W
(1 X3
dhc/lfe007i(11)
Form EPM+h 208B, Rev. 5 (1 of 3)
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@tie & No. 4-V'LV- iqB. DESIGN CPNSIDERAIIPNS
INPUTSPage g ofFile %35
c(- ('f-'fr
f-LI-9 /
SBI 'ECZ
l. Dynamic Qual ification
2. Environmental ~lification2.1 Relay Qualified Life
APPLICABLEYS Np
( 1 Pal
Pl (1( 1 (xl
EPM+h-222
EPMQA"222
NPELEAD
CIVVernarr
CIVDerkacsELCNudge
ISSUEDGUIDANCE
GDG-03
SEA-EE-170SEA-EE-171
3. Electrical Separation
4. II over I, Safety Impact
5. Fire Protection
6. Appendix R-6.1 SaEe Shutdovn Analysis6.2 Combustible Loading Anal.
( 1 (xl
( I baal
( 1 teal
(1(1 1A
EPM+h-211 CIVRose
NDI+h-15. 3. 1 EPEPM+A-440 Kohn
ELCBackenstoeCIVDclgado
E-1012
Fire Protection.Manual
EDS %1
CDS 03 &Dwg. C-1929
7. Flooding Protection
8. Jet Impingement
9. Missile Protection
10. Radiation Exposure, ALARA
U.. Physical Separation
12. HVAC Requirements
13. ElectricalLoad/Voltage Study
14. Human Factors Engineering
bQ
(1(1 N
1 1 bc)
( 1 tel
l I [xl
Wl l 1
f 1 Ql
HDI-6.4. 2
NDI-15.3.12
CIVReinsmith
CIVMatchick
CIVRose
ELCSlave/Hudge
EPPatnaude
Memo AM-151DG-G 100
Dog. C-1804
EDG 02EDS 02
Human FactorsSpecifications6 GuidelinesManual
15. Inservice InspectionRequirements
16. Materials Compatibility
17. ASME Code Compliance(See Note 1)
18. Design Assessment
19. Fuel/Core Effects
( 1 fPCI NDI+A-15.3.7
1 1 Wl
[1 M
(1 M
( 1 bCl NDI~A-7.2.2
EPLindberg
EPMillerta
MCHSattar
SEDetaaore
NFEKulick
ISI Manuals
PLI 59437 dated3/31/89
Fora EPM+A-208b, Rev. 5 (2 of 3)'
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Title 6E No. Pf- ~fLt/- Ict 3 p~ 0B. DESIGN CONSIDERATIONS
INPUTSPage 4 ofFile R35
Qv QRR(fo2,/~ Cj/
EUEJECI
20. Heavy Loads
APPLICABLEYES NO
( I bc) M-1435
NPELEAD
MCHKostelnick
ISSUEDGUIDANCE
21. Radvaste Minimization
22. Approved Materials
23. Secondary Containment,Control StzucturepVentilation ZoneBoundary Penetrations
( 1 baal
() . bc)
( ) bc)
NDI+h-15e 3. 9 EPMorgan
MCHAgnew
ihDDPL85-003
Susq. Approved .qf~tl'sPLI-37573 of 1/10/85PLI-45673 of 5/22/86
24. Electrical Load Tracking
25. Computer Program Changeincluding Display Formats
26. Environmental Protection
ELCSieve/Nudge
t 1 bCL EPM-Qh-401 CPU
[ t (anal NDI-Qh"6,3.2 (Nuc. Svcs.-J. S. Fields)
EDS 02
27. Station Blackout (] b4 ELCSieve
GDS-08
NOIR I: Fot sndifications to ANNE III systens/couponents (both papetuork only and physical changes)request in che installation instructions that Plant Etaif prepare tha required docunentacicnpackage per NDI-Qh 5.3.4 and AD-Qh-522.
dc/a186i(11)
Form EPM-Qh-208BP Rev. 5 (3 of 3)
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>JC
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~ ) DESIGN INI UTS (con')5-AV-19'<. 0
I PAQQ ~ QF (0
FILE NO. 0354. t Tfbi 5. 0 ISCJSS ION w red(
~-H-W 3.NO
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4J
Q'J
C)CV
xCL
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Calculation Contents
Calc g M-VLV-~~>
Page 4. of 4'o
g~ f if«1-)I
1.0 Purpose/Scope
2.0 Methodology
2.1 Actuator Sizing Calculation2.2 VOTES Diagnostic Thrust Acceptance Criteria2.3 Limit Switch Settings
2.4 Other Items
3.0 Inputs/References
4.0 Assumptions
5.0 Calculations
5.1 Actuator Sizing Calculation
5.2 VOTES Diagnostic Thrust Acceptance Criteria5.3 Limit Switch Settings
5.4 Other Items
6.0 Results/Conclusions
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Calc N M-VLV-~PS 8. d
Page') of i/v
1.0 pur ose Sco e
The purpose of this calculation is to develope all ofthe information necessary to create a Motor OperatedValve Data Detail Drawing for the subject MOV. Xn orderto meet this end the following specific activities willbe performed in this calculation to complete the MOVDetail Drawing for the subject MOV:
1.1 Research existing design documents and records forthe MOV to determine best available configurationdata. This data will be used as input to the MOVData Detail Drawing as well as to the calculationsto be performed herein.
1.2 An actuator sizing calculation will be performedto determine the required actuator parameters(e.g.actuator size, motor size, spring pack,torque switch settings, etc.).
1.3 Using the results of Item 1.2, diagnostic testacceptance criteria will be established.
1.4 Based on the design function of the MOV, gearedlimit switch settings will be determined. For thepurposes of this calculation, the limit switchfunctions to be considered will be limited to:
a.) Torque switch bypass (open and closedirection)
b.) Full open limit switch
c.) Valve position indication
1.5 A review of previously approved spring packReplacement Item Equivalency Evaluations (RIEE'sor RIE's) will be performed for the particular MOVbeing evaluated. Changes to these RIE's will beprocessed as necessary based on the results ofthis calculation.
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Calc 5 M-ULU-(g5 Z~ OPage p of go
A~g Std 7/qR 0/
Existing design documents, modifications and fieldwork authorizing documents will be reviewed toidentify required inputs to the MOV Data DetailDrawing. Lists of the required inputs as well as across reference to the data source are provided inSection 3.0 of this calculation.2 ~ 1 Actuator ~eizin calculations: These will be
performed usinq the software version ofMechanical Design Standard (MDS) Number 01 (Inputa. ). The following methods will be used tocompliment the techniques used in the softwarepackage:
a.) The active valve stroke length is arequired program input which allows theprogram to calculate a design valvestroke time. The active stroke lengthwill be calculated based on the followingexpression:ACTIVESTROKE = Z * FSLLENGTH
Where:
Z = The setpoint of the full openlimit switch in percent open(typically 974)
FSL = Full Valve Stroke Length fromthe closed position to the fullyopen (backseated) position. IfFSL is not specifically known itcan be calculated using thefollowing expression:
HWT * SLFSL
HGR
Where:
HWT = The number of handwheelturns required for thevalve to travel fromfully closed to fully
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open.
Calc 4 M-VLV-if'.Page g of,~,
d~ fry~r
py v
SL = The valve stem lead.HGR = The overall handwheel
gear ratio.
b.) Program overrides will be used to allowthe calculation to 'reflect the currentconfiguration of the MOV.
c.) Once an expected motor run torque is~ calculated, a typical motor curve will beconsulted to determine an estimatedmidstroke loaded motor speed (RPM). Thecalculation will be rerun using thisvalue as an override, the result being amore representative design stroke time.
d.) For gate valves the calculation will berun using a valve factor of .3.
e.) The calculation will be run with variousacceptable spring packs to allow forflexibilty in future replacement. Onlyspring packs approved on spring packequivalencies we'll be included on the MOVData Detail Drawing.
LJ!the actuator sizing has been completed diagnostictest thrust acceptance criteria will beestablished using the following methodology:
a.) The Minimum Allowable Thrust will beestablished as 11'54 of the designcalculated required thrust. Thxs allowsfor at least 10% error in the diagnostictest results and 5% variation in torqueswitch repeatability.
b.) The Maximum Allowable Running Thrust willbe established as the Stuffing BoxFriction load used in the actuator sizingcalculations.
c.) The Maximum Allowable Thrust will beestablished as the thrust correspondingto the minimum of the following:
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Calc I M-ULU-rQ g.Page ia of ~'y
e-w.f/1.) Actuator thrust rating,2.) 120% of the equivalent thrust
at maximum allowable actuatoroutput torque,
3.) Maximum allowed valve thrust(if available).d.) The acceptance criteria at each torque
switch setting will be specified as theexpected thrust +/-,204
e.) In all cases items a.) and c.) shall takeprecedence over item d.).
calculation will determine the appropriate gearedlimit switch settings for valve control andposition indication. The limit switch settingswill be established per the requirements of MDS-03 (Input b.). The switch settings will bespecified in percentages of physical stem travelfrom either full open or full closed.
2
2.4 ~Othe Items
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Xn ut References
Calc 4 M-VLV-/'P3 8.Page i( of ~!g
~ s>.e
3.1 The principle design inputs for this calculation are:
a.) MDS-01 "Design Standard for the Sizing ofLimitorque Actuators Including ThrustCalculation, Actuator Sizing, Spring PackSelection and Torque Switch SettingDetermination." Revision 1.
b.) MDS-03 "Design Standard for Determining andSetting Valve Motor Actuator Limit Switches."Revision 0.
3.2 Information required for entry on the MOV Data DetailDrawing and as input to this calculation is providedon pages (> through i ~ of this calculation.Reference Numbers are provided for each of theentries. A listing of all references is provided onPage ~ (Note: Copies of references not readilyavailable are provided as attachment to thiscalculation).
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General Valve DesignData Value
CalcPage
g-pe l l3 7u. ~
Reference No.
Valve Manufacturer +c%< >4auu c,
Vendor Drawing Number
Valve Serial Number
Valve Quality Class
Valve ASME Section IIIEdition and Class
Valve Location (Inside/Outside Containment)
Valve Type
Valve Pressure Class
i&St~
Valve Size (Inches)
Valve Seat Area (Inches Squared)
Stem Information:Stem Diameter (Inches):
AtStuffing Box Location
AtThreaded Portion
Thread Pitch/Lead
Stem Material
Original Design Stroke Time (Seconds)
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General Valve Design (Cont.)Data Value
Calc 0 M-VLV-I'IQPage <y c(f q~
t I f fIq-zs-f/'P~- Q
Reference No.
Process Parameters:
Flow iMedium
Design/Maximum Pressure (PSIG) I LSc / t3 7
5'esign/MaximumTemperature ( F) S(s / ~ay
Design/Maximum Flow (GPM or LB/HR)
Throttled Flow (GPM or LB/HR)
Max. Operating Differential Press. (PSID):
Opening Direction
Closing Direction
3ta
Additional Physical Parameters:
Valve Max. Thrust Capability (LBS)
End Connections/Rating
Body Material
Disc Trim Material
5~- 5(:6. Ru
W( Kt t ~j-
Body Seat Trim Material
Guide Rib Facing (Gate Valves Only)
Drain/Bypass Required (Y/N)
+ ( ~ t-L-tr K
I 3
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General:
Actuator Quality Class
Safety Function (Open/Close)
Actuator Manufacturer
~C f,uarar ueSignData Value
t t H '\~gQQ+p
CalcPage
M-VLV-HS W. 0of
Reference Ho.~'t l9'll
Main Unit ( e.g. SMB):
Actuator Order Number
Actuator Serial Number
Actuator Size ~~4 -Qa-td
Gearing Information:
iYIotor Pinion Number of Teeth
Worm Gear Number of Teeth
Worm to Worm Gear Ratio
Overall Actuator Ratio 'tC.c . I
Lost Motion Drive Sleeve (Y/N)
Auxilary Worm/Bevel Gear Unit:
Unit Order Number
Unit Serial Number
Unit Type/Size
Unit Gear Ratio
Overall Handwheel Ratio
Handwheel Orientation (Top or Side Mount)
p ~g:(
5 ter
Handwheel Efficiency
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Electrical/Motor Design InformationData Value
Calc I M-VLV-t13Page I'a of q„
Reference No. f~ gMotor Class (1E/Non1E}
Power Supply Type (AC/DC)
Power Source t 92366+
Voltage Supply/Phase/Frequency
Motor Manufacturer
/3 /daWpt.I~a~
Motor Serial Number
Design Motor Speed (RPM}
Motor Start/Run Torque (ft-lbs}
Motor Horsepower
Service Factor
Motor Type/Frame Size
Motor Frame Design/Enclosure Type
Winding Type (DC Motors)
Motor Duty Rating (ttig, )Insulation Class
Temp. Rise/Ambient Temp. ( C)
Full Load/Locked Rotor Current (Amps) orKVACode (LRIC) at Supply Voltage (See Note 3)
DC Motor Field Current (Amps)
LimitSwitch Comp/Motor Spaceheaters (Y/N)
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References:
l. Anchor Darling Valve Drawing 93-13748(FF 110100 5001), Rev 7
Calc I M-VLV-JV Rer 2-Page 14 of,~~dillg-/. g(
ollN Ip.l.~
Q~ >s.i~t
2. Anchor Darling Letter dated 2/20/90 (copyattached)
3. Valve Specification Data Sheet P10 Sh t (copyattached)
4. Work Authorization 8 8/177 (copy attached)
5. Motor Operator Information Sheet for 38126tX (copyattached)
6. SEL-11, Limitorque Standard Handwheel Ratios (copyattached)
7. SEIS Pipeline Index, Rev 6
8. Anchor Darling Design Report E5853-23D(FF 110101 ~), Rev 1 (copy of referenced pageattached)
9. P & I D M-144 RWCU Sht 1 Rev 28
10. P'pr uS =$
11. SEA-ME-238 Design Basis Development Priority 2Motor Operated Valves, Rev 0 (copy of data sheetattached)
12. Electrical Schematic Dwg. E-/45 Sh 6 Rev/t'3.
Induction Motor Data Sheet 8856-PlOA-l3I (q)-9
14. Anchor Darling Telecopy dated 3/28/91 (copyattached)
geli«a 1-C A p~rlv «4> 't + <+ (>g +44')I<. Pl'g L Gv(cul&iim. H-A4$ -@g g,~gg g~
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Assum tions
Calc 0 M-VLV-//g3Q DPage z~ of ~
< P/ff/v //-H/
1. For the purposes of this calculation, attempts havebeen made to verify design information againstactual as-installed information as documented inPlant Work Authorizations. Where actual as-installed information is unavailable the originaldesign information will be used. Upon completion offield as-'built verification, any discrepencies willbe reconciled and this calculation shall be revisedas appropriate.
2. Stuffing box friction values will be consistent withthe empirical values listed in MDS-01 unlessotherwise noted herein.
3. Unless noted otherwise, the stem factor used hereinwill be based on a coefficient of friction of 0.15(Reference i4 ). This is consistent with theoriginal design seismic analysis. The SSES MOVpreventative maintenance and trending program willensure the valve stems/stem nuts are maintained in amanner which supports this assumption.
4. The minimum voltage available will be assumed to be80% unless noted otherwise. If the electricalvoltage drop calculations show this to beunconservatxve a lower value will be used. If theuse of 80% initially produces unacceptable resultsthe electrical voltage drop calcs will be consultedin an attempt to remove some of the conservatism.
5. Gate valve sizing calculations will be run using avalve factor of .3.
6. During the initial preparation of this calculation,the valve maximum thrust capability may not yet beavailable. In these cases, the maximumthrust/torque shall be based on the following:
M~aximu Torgue
The maximum allowed torque shall be the lesserof the maximum torque calculated by the MDS01software or the torque corresponding to theoriginal design maximum torque switch setting.
gg g~ustThe maximum allowed thrust shall be the lesserof the actuator thrust rating or 120% of theequivalent thrust at the maximum allowableactuator output torque.
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Calc I M-VLV-)'I'3 p„, 6Page ]7 of po
)~A. g.<g ~(
5. 1 Actuator Sizing CalculationThe results of the actuator sizing calculations areprovided as follows:
Run g Conditions Calc. Pacaes
SRixX~ 'pAgg: gag2VWUF QA~g,: p
i+ / u'
~ ~Zinc, 74zaVAL-VF'Ae~i
3 ~
4.
5.2 VOTES Diagnostic Thrust Acceptance Criteria
5 '
The calculation of the thrust acceptance criteria wasperformed per the method outlined in 2.2.
QR '2@v,c~Liait Smitch Settings
F4< <iT.
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Checked by:
4(-vLI/"l g $ Qu,+~q e (Q
PP&L REVISION 1.90226 DATED 08-14-90 — TODAY IS 09-20-1991 15:27-20 Q~qg, z -TlVALVE Info (Input) (TABLE g 1 ) — FILE: 144F001A
+gal cr->wetPage 1 of 2
Calculated by:ValveValveValveValveValveValveValveValveValveValve
MANUFACTURER:TYPE (GATE or GLOBE):SIZE:TAG Number:VENDOR DRAWING number:PP&L Drawing number:LOCATION:SYSTEM:LINE (ie. PXPE LINE I.D.):MAXIMUM Design THRUST:
ANCHOR DARLINGGATE
6HV14 4 F0 0 193-13748
VALVE Data (Input) (TABLE 5 2 ) — FILE: 144F001A
ANCHOR DARLING GATE Tag: HV144F001Valve STEM DIAMETER (Inches):Valve STEM PITCH:Valve STEM LEAD (Inches):Valve SEAT AREA (Sq-Inches):Valve STEM AREA (Default = 0 Sq-Inches):Req'd STEM SPEED (0 or 3-6=Globe or 12-14=Gate):Valve STROKE LENGTH (Inches):Req'd STROKE TIME (Seconds):Valve INLET PRESSURE (PSIG):Valve PRESSURE DROP (PSIG):Valve Factor (.2 or .3=Gate 1.1=Globe):Valve STUFFING BOX FRICTION (Default = 0 Lbs):V lve STEM/NUT Coeff. FRICTION (0 .15 or .2):
Manual ACTUATOR RATIO Selected: 94.29 : 1Manual ACTUATOR Selected: 6
Manual SPRING PAC CURVE Selected: 23
1.5.333.33325.431.76715000 ( 0 Min.)10531053~ 31500.15
MOTOR Data (Input) (TABLE 5 3 ) — FILE: 144F001A
ANCHOR DARLING GATE Tag: HV144F001Motor TYPE (AC or DC):Motor RPM (900 1800 or 3600):Motor REDUCED VOLTAGE Percent (Default=0.8):HIgh TEMPerature application (Y or N):COMPound motor GEAR application (Y or N):AIR MoToRs (Y or N):MODULTRONIC MoToRs (Y or N):HILO Applications (Y or N):Non-Rising Stem — OPERator thrust (Y or N):Non-Rising Stem — VaLVe thrust (Y or N):
Manual MOTOR Selected: 5
AC3600.8
NNNNNNN
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Pap+ p~ o (PP&L REVISION 1. 90226 DATED 08-14-90 — TODAY IS 09-20-1991 15: 27: 20 DPx~g w.gC lculation RESULTS (TABLE 5 4 )
— FILE: 144F001APage 2 of 2
Calculated by: Checked by:ANCHOR DARLING GATE Tag: HV144F001
Valve STEM FACTOR:STUFFING BOX FRICTION:
THRUST:STEM TORQUE:
STEM SPEED:UNIT RPM:
Design STROKE TIME:OVERALL ACTUATOR RATIO:
0.01321500 Lbs11394.15 Lhs150.2606 Ft-Lhs12.00764 Inches/Min.36.05897 RPM0 Seconds94.29
* SMB-00 ACTUATOR selected haying a 43.6 — 109 Ratio RANGE (IACT= 6 )* SMB-00 43.6 — 109 UNIT Efficiencies: PULLOUT= 40 RUN= 55 STALL= 60* * USER Selected ACTUATOR* * USER Selected ACTUATOR Ratioused 3600 Rpm 'AC'otor
APPLICATIONFACTOR'alc.
MOTOR START TORQUE:MIDSTROKE RUN THRUST:
Calc. MOTOR RUN TORQUE:
OPERATING at 3400 Rpm.94.426667 Ft-Lhs3360.809 Lhs.8546311 Ft-Lhs (5 X RUN= 4.273155 )
* 10 Ft-Lhs SMB-00 MOTOR with 102 Maximum Ratio Selected (IMTR= 5 )* * USER Selected MOTOR
evised MOTOR START TORQUE: 6.916667 Ft-LhsSTALL TORQUE: 622.314 Ft-LhsSTALL THRUST: 47189.61 Lhs (2.5 X Rated= 35000 )* * USER Selected Motor SIZE
* 'PRING PAC Curve: SMB-00 OBSOL Selected (ISPG= 23 )* * USER Selected SPRING PAC CurveSPRING PAC No: 60-600-0022-1
BILL of Materials No: NONE
* Calc. SPRING PAC SETTING: 1.730234* Set SPRING PAC to: 1.75Max. SPRING PAC SETTING: 2
Normal TORQUE: 152 Ft-LbsMax. TORQUE: 174 Ft-Lhs
MOTOR SIZE Checks: 10 Ft-Lbs vs 4.426667 Ft-Lbs Calc. Start TORQUE10 Ft-Lbs vs 6.916667 Ft-Lhs Revised Start TORQUE10 Ft-Lbs vs 4.273155 Ft-Lhs 5 X RUN TORQUE
MOTOR STALL Check: 47189.61 Lbs vs 35000 Lhs 2.5 X Actuator THRUST
TORQUE SWITCH Checks: 174 Ft-lbs vs 250 Ft-Lbs Actuator RATING13194 Lhs vs 14000 Lhs Max. Actuator THRUST174 Ft-Lbs vs 622 Ft-Lbs Stall TORQUE2 SETTING vs 3.315 Max. SPRING PAC Setting
* * WARNING — 47189.61 Lbs EXCEEDS 2.5 X Actuator THRUST
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)J; V( U - l g g g„Pop< I(
PP&L REVISION 1.90226 DATED 08-14-90 — TODAY IS 09-20-1991 15:26:22 Q~ $ .Z~.qVALVE Info (Input) (TABLE () 1 ) — FILE: 144F001
Page 1 of 2
Calculated by: Checked by:ValveValveValveValveValveValveValveValveValveValve
MANUFACTURER:TYPE (GATE or GLOBE):SIZE:TAG Number:VENDOR DRAWING number:PP&L Drawing number:LOCATION:SYSTEM:LINE (ie. PIPE LINE I.D.):MAXIMUM Design THRUST:
ANCHOR DARLINGGATE
6HV144F00193-13748
VALVE Data (Input) (TABLE g 2 ) — FILE: 144F001
ANCHOR DARLING GATE Tag: HV144F001Valve STEM DIAMETER (Inches):Valve STEM PITCH:Valve STEM LEAD (Inches):Valve SEAT AREA (Sq-Inches):Valve STEM AREA (Default = 0 Sq-Inches):Req'd STEM SPEED (0 or 3-6=Globe or 12-14=Gate):Valve STROKE LENGTH (Inches):Req'd STROKE TIME (Seconds):Valve INLET PRESSURE (PSIGf:Valve PRESSURE DROP (PSIG):Valve Factor (.2 or .3=Gate 1.1=Globe):Valve STUFFING BOX FRICTION (Default = 0 Lbs):
ve STEM/NUT Coeff. FRICTION (0 .15 or .2):Manual ACTUATOR RATIO Selected: 94.29 : 1
Manual ACTUATOR Selected: 6
1.5.333.33325.431.76715000 ( 0 Min.)10531053.31500.15
MOTOR Data (Input) (TABLE N 3 ) — FILE: 144F001
ANCHOR DARLING GATE Tag: HV144F001Motor TYPE (AC or DC):Motor RPM (900 1800 or 3600):Motor REDUCED VOLTAGE Percent (Default=0.8):HIgh TEMPerature application (Y or N):COMPound motor GEAR application (Y or N):AIR MoToRs (Y or N):MODULTRONIC MoToRs (Y or N):HILO Applications (Y or N):Non-Rising Stem — OPERator thrust (Y or N):Non-Rising Stem — VaLVe thrust (Y or N):
Manual MOTOR Selected: 5
AC3600.8
NNNNNNN
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Calculation RESULTS
Calculated by:
(TABLE 5 4 )— FILE: 144F001
Page 2 ofChecked by:
ANCHOR DARLING GATE Tag: HV144F001
PP&L REVISION 1. 90226 DATED 08-14-90 — TODAY IS 09-20-1991
V.- l/Ll/- (Q3 'j2~ Q
~~pe 22- a
15:26:22 ~t' -e-2
Valve STEM FACTOR:STUFFING BOX FRICTION:
THRUSTSTEM TORQUE:
STEM SPEED:UNIT
RPM'esignSTROKE TIME:OVERALL ACTUATOR RATIO:
0.01321500 Lbs11394.15 Lbs150.2606 Ft-Lbs12.00764 Inches/Min.36.05897 RPM0 Seconds94.29
* SMB-00 ACTUATOR selected having a 43.6 — 109 Ratio RANGE (IACT= 6 )* SMB-00 43.6 — 109 UNIT Efficiencies: PULLOUT= 40 RUN= 55 STALL= 60* * USER Selected ACTUATOR* * USER Selected ACTUATOR Ratioused 3600 Rpm 'AC'otor OPERATING at 3400 Rpm
APPLICATION FACTOR: .9Calc. MOTOR START TORQUE: 4.426667 Ft-Lbs
MIDSTROKE RUN THRUST: 3360.809 LbsCalc. MOTOR RUN TORQUE: .8546311 Ft-Lbs (5 X RUN= 4.273155 )
* 10 Ft-Lbs SMB-00 MOTOR with 102 Maximum Ratio Selected (IMTR= 5 )* * USER Selected MOTOR
evised MOTOR START TORQUE: 6.916667 Ft-LbsSTALL TORQUE: 622.314 Ft-LbsSTALL THRUST: 47189.61 Lbs (2.5 X Rated= 35000 )* * USER Selected Motor SIZE
* SPRING PAC Curve: SMB-00 MEDUM Selected (ISPG= 7 )SPRING PAC No: 60-600-0049-1
BILL of Materials No: 0301-112* Calc. SPRING PAC SETTING: 2.070642* Set SPRING PAC to: 2.25
Max. SPRING PAC SETTING: 2.75MOTOR SIZE Checks: 10 Ft-Lbs vs 4.426667
10 Ft-Lbs vs 6.91666710 Ft-Lbs vs 4.273155
MOTOR STALL Check: 47189.61 Lbs vs 35000
TORQUE SWITCH Checks: 175 Ft-lbs vs 25013270 Lbs vs 14000175 Ft-Lbs vs 6222.75 SETTING vs 3
Normal TORQUE: 156 Ft-LbsMax. TORQUE: 175 Ft-Lbs
Ft-Lbs Calc. Start TORQUEFt-Lbs Revised Start TORQUEFt-Lbs 5 X RUN TORQUE
Lbs 2.5 X Actuator THRUST
Ft-Lbs Actuator RATINGLbs Max. Actuator THRUST
Ft-Lbs Stall TORQUEMax. SPRING PAC Setting
* * WARNING — 47189.61 Lbs EXCEEDS 2.5 X Actuator THRUST
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prr4L Form 2a$ 4 rr0<S3lChr. H'T340l
Dept.
Date 9: k4 19~Designed by
Approved by
M-VLV- tqgSht. No. ~ ~ ofPROJECT MOV Data Detail,
Limit Switch Settings, and
Torque Switch Settings for HV-
PENNSYLVANIAPOWER & LIGHT COMPANY ER No.CALCULATIONSHEET
IIItS ex~~Q l%kJ
PULLOUT TORQUE CALCULATION:(1009o Voltage)
S A&r=rg t- u Q <Tta Q
Pullout Torque (ft-Ibs) Motor Start Torque x Overall Actuator Ratio xStall Efficiency
Pullout Torque (ft-Ibs)
Pullout Torque (ft-Ibs)
Equivalent Thrust (Ibs) zaraz (4.
TORQUE SWITCH SETTING CHECK (cont'd):
Torque (ft-Ibs) at MaxTorque Switch Setting
Vs. Voltage PulloutTorque (ft-Ibs)
Vs.
Tt\r O )4 ( Cq I Qht QKgl (g + +4+~u.~~
w ~~-c Rig c~ ~A~ k ~-u,<mQ84~</ Hi>bo I Co~W~R g~
L-\ MhwLwCjc.Ri~g )g (og '~i~ wc,= i'd% '
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»LL Form 2e54.N83)Cae WT3woe
Dept.
Dare ~l 193!Designed by
Approved by
PENNSYLVANIAPOWER & LIGHT COMPANY ER No.CALCULATIONSHEET a~I-vLv'- k<v 2.
PROJECT Sht. No. ~ of ~>
9 ~(o-c.'tfV ae
C4Q gr gi,ti '~ tf /ve F~cf~ 'xi~8 V7 re l/ f- (A~x p)LVP =
~n"~f'bS-ol 6v 4
+. zz
ttl@c-. F = /Soo4= /77Aq~ "- 25.'/)P = /os3
a p= /052 4*,/ jrr/ig = 8<.gg (Rir ri)
4(va( ~Ar sf~rP 5r~e = /2.< lt-/Ir (@I. Is)
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Ptt KL Form 2454 t $ 0<at)Cat e97S40t
Dept.
Date ~19~Designed by
Approved by
PENNSYLVANIAPOWER & LIGHT COMPANYCALCULATIONSHEET
PROJECT
ER No.
Sht. No. ~+of~~~ Io.t.-'fI
7' Idge«g CrJculafitee vjrj ~va( ~f~ Jj1rf $gvt(file re~Q Ae rr +i kyat iqrggg yevtr-
8&tjVi+JM/ 7i7ue
(84<)
38O I
3879(- l5'oo - (~17 ~S~O)
/o 57
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Geared LimitSwitch SettingsData Value
Calc 0 MVLV-Ig /tv C ~
Page dg of c/„>+> E l>1I g~~ q-is+/
™Reference
No.
Electrical Schematic & Connection Diagram No. E-g5 sx 4 8 -37/- // fP s
Full Stroke Length & Number of Handwheel Turns
Limit SwitchNumber
ZS-1
Function SetpointSee Note 4
Equivalent No. ofHandwheel Turns
ZS-2
ZS-3 c/e~ verZS-4 OPIA/ LZ, I7g o
ZS-5
ZS-6
e ZS-7
ZS-8
OPEN P6r Zgi o
ZS-9
ZS-10
ZS-11
ZS-12
ZS-13
Z-S-14
ZS-15
ZS-16
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Spring Pack/Torque Switch SettingsData Value
t alt" g M-VLV-It'2 W 6Page a5 of Ltto
g ~ q.tqOl
Pgfl xf -Z r-r(fReference
Ho.
Minimum Required Torque (ft-lbs)
Maximum Allowable Torque (ft-lbs)
Original Design Replacement 1 Replacement 2
Spring PaCk Number LO-4oe'-Oo u- l Q -taOO-6OQ't - I
Limitorque B/MNumber
WoQ F ~go (-ItW
Lowest Allowed TorqueSwitch Setting i.1 S
Corresponding ExpectedActuator Output Torque
(ft-lbsl
Highest Allowed TorqueSwitch Setting
Corresponding ExpectedActuator Output Torque
(ft-Ibs)
RIE Number q(C f~/
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~ ~ I ~
~ ~ . ~
t ~ ~
~ ~ ~ ~
~ E ~ ~ ~
4 g ~
~ 4
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6.0 Results Conclusi.ons
Calc I M-VLV- ('tE~"'age
Qg of gq
8-~s «~~ 0 >-I 9l+ NH I.sf-'ll
6.1 All available MOU Data Detail Drawing input hasbeen researched and documented herein. Where itwas determined that information was unavailablefrom existing records, the field has been leftblank. This information will be determined duringthe as-built walkdown.
6.2 The results of the actuator sizing calculations,VOTES diagnostic acceptance criteria calculationsand limit switch setting determination are providedwithin the body of the calculation.
6.3 The following anomolies„have been identifiedthrough the performance of this calculation:
~ H Lc.H
7~&Am
1.)L Als cAL-c, G'~gQ«~g~ ~>~ ~<~@AC &<pch4
6 ~iWcgg ~Ra~ ~KC>Ri Q<wA~
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Anchor/DarlingValve Company
701 FIRST STREETP O. SQX 3428WILLIAMSPORT. PA(717) 327 4800TELEX." 759953
February 20, t990
PENNSYLVANIA POWER 8 LIGHT COMPANYTwo North Ninth StreetAllentown, PA 18$ 0t
Attn: Mr. Ken Anderson, Engineering
SUBJECT: VALVE DATA
Dear Ken,
The valve data you requested at our recent meeting is enclosed.
Please advise if you need further information,
Yours sincerely,
ANCHOR/DARLING VALVE COMPANY
r
R. W. DommersDirector - Marketing 8 Safes
/cff
CC: J, J. ChappellR. J. SIout
encl.
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SUSQUEHANNA STEAM ELECTRIC STATIONUNITS 1 AND 2
PENNSYLVANZA VOMER t LZGHT COMPANY
go SS56
ATTACHMENT NO. 2.
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0
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Y
SUSQUEHANNA WRye 3I
I. PROBLEM ~CRIPTICNINSPECT AND REWORK
THE MOTOR ACTUATOR ASNECESSARY.
UNT ~ ~
RESt.WOR)CO~ am fusacc+
gpA
PatN))er 9/19/88
MODIFICATION RELATED 0 YES NO PMA>
II. WORK CLASSIFICATIONL IMITORg UE EQU(P YES
ACTUATOR
AUTY
TECH Ee r AELIA6LITY 0 YESEPEC, . NO '" AELATEO
ASMECDDE g YES ACCT«ER~ L(X;«Cma./09 4
~ Q
ccc ~\r,
cd'h!
gg
III. WORK PLANNINGA. INVESTIGATION P/3%I
B. WOAK PLAN
PER ATTACHED WORK INSTRUCTIONS
IQ-jthO
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cc.-
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'0N C <.
EAPAEO.
ET YES
Q HO
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HP Oc
IvNc ccfacc fNNhel(0M~a
:!cij cs
C. POST NAINTKNANCLTMTINO RKOUIRENENTSSTROKE VALVEi OBSERVE PROPER OPERATION AHQ INICATION
C«(col hev4w ~ Oe( ~':jp I
Cpereeone A(anonaaon
,'c
IV. ACTION TAKEN EOVIPMENT HIBTOAY sLI
7..(.. ( .I:. iJ 4.„%('up
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LYH I IIYSICS '~P'PHYSI~
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~ ~
'
,p qp g 5'/l774'V"- .3 ~HV ~ydl
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5.9.7. f
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~ orqua Swttch "CLOSE" settingp
Valve Posit)on .,C St(,) St0() ape-"';.@':0 ER
5.9 SN 000/QS 00 Overhaul
prove sleave parts replaced YES ( ) NO ~NAr
Pares Replace:
t'
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5.9.9.0
5.9.9,c
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SEP 24 'I I 8: I 8 F ROt4 PP L t'IA I NTE IIAIICE
~ ALVE ID Bb / ydI.A NO.'STEM
5.13 Acutator TroubLe Shooting.IAMEPLATE/REFERENCE DATA
PAGNE.8838- V<V-I%3 gtq I
RIF W
P~< Za SP VV
.'6 ID
L'AI. LEV
ilANONREEL TURNS / I STROKE 7L
SCAl:FOLD NEEDED (Y/N)
MOTOR =
ACTUATOR: ORDER NOSERIAL NO-SIZEID NO
'MANUFACTURERHORSE POMERVOLTAGESTART TORQUERUN TORQUESTART CURRENTRUN CURRENTINSUL CLASSFRAME SIZEOPERATING TEMPDUTY
/.'<3< Co
/Wm.~ ~
I'OPAQUE SMITCH LIMITORQUEDESIGN INFO AS FOUND AS LEFT INITIALS/DATE
e PEN SETTING
';LOSE SETTING
NORMAL (MIN)
r1AX IMUM
I.XHITER PLATE
i'.AL CHART INSTALLED
SPRING PACK LIMXTORQUEDESIGN INFO
Q0I JO IR
Ng ~~u-
'2 pj2.~5 z~<q
/.v~ /~z. ~ z / ~ ~<97~
AS FOUND AS LEFT
«BIO.10
g-(Z $ (y0
INITIALS/DATE
I'ART NO
aO OF MASHERS
AVG. THICKNESS
SPRING PACK GAP
SPRING PACK PRELOAD ,877
, o7+
. 425
80 d» -C'~-I 6- -"-"'-"-" ~-I oM(- (i 2 /o /8-5'
- 10-'To
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panic',
S ~~~77VALVG 10 ~~~rrrrvv~I3 CT ON TV RAT? S
~, '% ~ g
e,,
Actuator Overall Ratio :'7RVr ''P)n)on Gear to Nrashaft '1rlbrC'
ware ea ware Gean Gaala'iorsto Mora Gear ffl'fc$ency
Hanchfheel to Staa Ratio fHanraraaal ea sees Gff1clency
g Notor P 3 n f on QIar Teeth4 Worashaft Gear Teeth
5. 13.1Z Actuator operates satfsfaqio $y.
Coments:
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As L,ett, Ave Run Stat1t: Currea4! OPII Zi ~
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e
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MOTOR OPERATOR INFORMATION SHEET H-vwI-l9 '3 p . p'RR'I=~Rm~~~ ~
PT .u„LIMITORQUE ORDER NO.: ITEM:
OPERATOR SERIAL NQS.:
S'v 8OPERATOR TYPE: OPERATOR S IZE:
DESIGN UNIT RPM ( AS DEF INED IN LIMITORQUE SEL-3): 39.3
SPR INS PACK NUMBER:
NORMAL TORQUE SWITCH SETTING:
CORRESPONDING INPUT TORQUE (LB-FT):(SEE NOTE 1)
CORRESPONDING OPERATOR OUTPUT TORQUE (LB-FT):
CORRESPONDING OPERATOR OUTPUT THRUST'LBS):
199 ~. ~ <<.
Io.'79$ ~ ss
MAXIMUM TORQUE SWITCH SETT INS:
CORRESPONDING INPUT TORQUE (LB-FT):(SEE NOTE 1)
CORRESPONDING OPERATOR OUTPUT TORQUE (LB-FT):
l3,=-,.
Z3r F'r.
CORRESPONDING QPERATOR OUTPUT THRUST'LBS): [4 wr.
X4C RITZ'NQ oF gv'TSEAR RATIO INFORMATION
MOTOR PINION NUMBER OF TEETH: +I NORM SHAFT SEAR NO. OF TEETH:
WORM TQ WORM SEAR RATIO:
OVERALL ACTUATOR RATIO: 9g.o: l
NOTE 1: INPUT TORQUE IS TORQUE FROM WORMSHAFT ON SMB-00 ~( 000 AND FROMHANDWHEEL ON SM&-0 AND LARGER.
LIMITORQUE S ISNATURE:
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0,
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ORDER NUMBER:
LIMITORQUE MOTOR NAMEPLATE
DATA SHEET
4-v~f-t e3 P .0'i2FF ~ ~))~~ —,
( -p (.
SERIAL NURSER: 2f 3'Qf 7 ~ !59
MOTOR NAME PLATE DATA
IDENTIFICATION NUMBER: 1 I 500 ~
START TORC!UE <LB-FT): ~O < Q~ ~ HORSEPONER:'5
RUN TORCIUE <LB Fl.), g PT j.P.C. S. F.: l.o
TYPE: FRAME: PHASE: P +
ROTOR SPEED <RPH): ~ ~ C 0
VOLTS: WO gC CODE
AMB. C: 4o'NSULATION CLASS: 8 BUTT.-5 Yl ZM.
n
LIMZTORQUE SlGNATURE: WW 'Q'
![Page 46: MOV Data Detail,Limit Switch Settings & Torque Switch Settings … · 2018-01-30 · Calc 5 M-ULU-(g5Z~ O Page p of go A~g Std 7/ qR 0/ Existing design documents, modifications and](https://reader030.vdocuments.site/reader030/viewer/2022040811/5e52156d0b887b12965cef55/html5/thumbnails/46.jpg)
STANDARD HANDHHEEL RATIOS FOR SHB 4 HHB UNITS
UNITSIRE
HANDWHEELRATIO UNIT RATl0 EFF. ~
UNITSIZE
HANlWHEELRATIO UNIT RATIO EFF.a
SMB-000
Sm-00
SHB-0SB-0
SICB- 1Ss-l
SNB-2SB-2
SHB-3SB-3
SHB-4SHB-4TSB-4
SNB-5SHB-5T
laloi. 30'
8.93: 121. le 1
33:154.1:l
10.75:125. 3a 149.0:166.7:1
9:122. 3:140.5al57.4:1
7. 15$ 111.07al28. 37: 139.4:1
55. 36: 1
8.7:113.06:133. 69:139.87:159.13:1
86:1)163. 5: 1)
142.0:1)269. 8: 1)
AllAllhll
11.2"26. 126.4-96.2
- 102.6-150.8158.3-247
11 6-25 627. 2-88. 4
92.4-171.6191. 1-234
10.6-25.526.2-82.5
84.8-150153-212.5
1 l. 1-24. 125. 7-37. 343. 9-95. 598.6-132.8
138.4-186.4
13.4-32.333. 6-48. 451. 8-124.9
131 ~ 8-14 I. 9152. 1-219. 3
61.4-93.4
101.4-230.2
100'00
95
60302525
60302525
60302525
6060302525
6060302525
25
25
HHB-00
HHB-0
HHB-1
19:145 1
15.7:137:158:195:1
14.5:134:166:190:1
9.1-22.02 3. 0-109. 0
11.2-26.126.4-96.2
102.6-150 8158. 3-247
11-6-25.627.2-$ 8.4
92. 4-111.6191.7-234
HHB-2 13.3:133:160:185.1
10.6-27.226.2-82.5
84. 8-150. 0153-212. 5
HHB-3
HHB-4HHB-4T
10. 3:116 1
41:151 1
80:1
12.7:150:158:1
11. 1-24. 125. 7-37. 335. 9-95. 5
98. 6-132. 8138 '-186-4
10. 1-32. 340.0-124.9
131.8-147.9
«This ratio supplied when torque requiredexceeds 65 ft/lbs.
Q For SNB-5 and SHB-5T unit, this ratioprovided as standard. Alternate ratioshcnm provided only on request,
6030
60302525
60302525
60302525
6060302525
603025
SEL 11Section 9Page 2 of 2
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ANCHOR/DARLING VALVE CO.
g vLV 19~ ~u. tlVt=w ~
'3 cl o$ V3
Customer:
Prepared by:
S.O. No.
Vlv.Sfze,Press. h Type
No.Req'd 5 (Item No.)
MOTOR OPERATOR DATA SHEET
S F P.O. No. 5 — - 1O-
Approved by: D< I( I> -~ Sht~of
$ 53
Seat Hean Dfa.In. 5 Area In,
System Desfgn Press. PSI
Design Diff. Press. PSI
~ A ~ .7B54 x J2 ~ 77
Line Pressure P,
s gPUse
Use,
2 ~ 93
l60O
gaoDisc Thrust LBS
Stem Thrust Tent. LBS
Stem End Thrust
Stuff Box Load LBS
Total Stem Thrust LBS
Td A x P (Line 1 x Line 3)
T T x f (Line 4 x Coeff Frfctfon)*~ T ~ .7854 x D x P~ (stem area x Line 2e s~ T
s
F Tt+ e+ sS~. of Lines 5,6 8 7)
80(FFI 22ok
Zga I
J &00
Ig5s9
~Coefffcfent of Frfctfon: Double Dfsc
Flex Medge
.2
Globe Val ve 1.1
![Page 48: MOV Data Detail,Limit Switch Settings & Torque Switch Settings … · 2018-01-30 · Calc 5 M-ULU-(g5Z~ O Page p of go A~g Std 7/ qR 0/ Existing design documents, modifications and](https://reader030.vdocuments.site/reader030/viewer/2022040811/5e52156d0b887b12965cef55/html5/thumbnails/48.jpg)
p, vt'v- [93 . 0Va.w ~ I (
1CLqg ~ g ) llO
PENNSYLVANIA POWER 4 LIGHTSusquegana Steam$leqtric ftation
MO - Design 5asxs Rev eW
VALVE TAG NUMBER HV-144F001 UNIT 1 PRIORITY: 2VALVE DWG NO-FF110100-5001 MFG. ANCHOR DARLING
DESIGN DATA REF NO MATERIAL DIMENSIONAL DATA REF NOValve TypeValve Size 6. 00
Stroke Length ( in)Stroke Time (sec)
6.00028
25
Pressure ClassValve Code
600 3 Orifice Diameter (in) 5.375Stem Diameter (in) 1.5oo
24
24
ElevationLine No.
750'-7"DBA-101
Area/Room 26/I-400 5,10 Stem Pitch (in)Stem Lead (in)Stem Material
0.330.33
A276-4 10
24
24
Normal Valve PosActuator Size SMB-00-10Valve Orientation H
Stem Mod of Elasticity 29.2003 Stem Mod of Rigidity 11.300
Valve Thrust Capability
2626
Stem OrientationPower Supply 18236053
Dsk Guide Fac MatDsk Seat Surf Mat
sA105IISTELLITE
Revork Window SEE TS 4.4.4
DEF1NITZON OF SAFETY RELATED FUNCTIONHV-144F001 IS THE REACTOR WATER CLEANUP SYSTEM INBOARD CONTAINMENTISOLATION VALVE. THIS VALVE IS NORMALLY OPEN AND WILL CLOSE ON REACTORLOW LEVEL OR ON IND CATION F AN RWCU LINE BREAK. THE VALVES SAFETYFUNCTION IS TO CLO ON RE CTOR LOW VEL, UPON INDICATION OF AN RWCULINE BREAK.Race,ve.q ~~ Maps.t«~i~g ig ud ~ ques s,~We @~is vcilM i 5 ~c4 c[~s5i Pine+S f05 j l'I~ cha~qeai4te
VALVE OPERATIONAL DATALrcre Brk Smal BrkLOCA LOCh
Max Diff Press oBBckoQ~t
NA
LOOP Fire ZnadvertOper
Dir Diff Press .
Flov RateLine Press(psig p
.FluidProcess Temp(F)
',Duty CycleTi.me Line (sec)Envr Profile(F)Initiate SignalValve CycleNormal Cond
310
542
340
310
558
340L2
NA
NA
NA
NA
NA
NA
NA
NA,
.NA
436to$3 ~M
563
15oFl
NA
551
150
O,C
310]esp 3%85
551
150
![Page 49: MOV Data Detail,Limit Switch Settings & Torque Switch Settings … · 2018-01-30 · Calc 5 M-ULU-(g5Z~ O Page p of go A~g Std 7/ qR 0/ Existing design documents, modifications and](https://reader030.vdocuments.site/reader030/viewer/2022040811/5e52156d0b887b12965cef55/html5/thumbnails/49.jpg)
Ancher(DarlingVatw Company
701 WAST STRAIT1.0. SOX 44+WILLJAlNPOAT, JIA 17701@i&(717) 547~TARQ 75004$
FAX: (717) 3274805To
ocs1 or xerox reiecoaier 7410 ~ 3-2~1 '4:SS 71744444~ ITS 77e TS3y
YLV-Iyg g,v gRcP. gi/
Phg1 1/q,P Qg
Date 3 zs ~
Fax 2is-~v -7Ss
TO: oC
SUBJ.'OW,r >'odor k a%
or S O. )
Signed:
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I ~ I~ ~
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