gas engine spec
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S3 / S6 COMPRESSOR STATIONS
SPECIAL SPECIFICATION
C E D O C U M E N T E S T N O T R E P R O P R I E T E E T N E D O I T E T R E N I U T I L I S E , N I R E P R O D U I T S A N S N O T R E A
U T O R I S A T I O N E C R I T E .
T H I S D O C U M E N T I S O U R P R O P E R T Y A N D S H A L L
N O T B E U S E D N O R R E P R O D U C E D W I T H O U T O U R W R I T T E N A U T H O R I Z A T I O N
NATIONAL IRANIAN GAS COMPANY
(N.I.G.C.)
GAS ENGINE GENERATOR PACKAGE
Date :
22/05/00
Etablis./ Establ.
Ph. SAINTE-FOI
Projet/ Project
Ph. PEZE
EMISSION POUR/ ISSUE FOR
First issue
0 1 . 2 4 Rév./ Amend.
0Vérif/Check MC. CAUSSIN
Approbat./ Approval R. ORTIGER
N° RC291.SP.000.0300.0001 Page 1/32
92/98 bd Victor Hugo
92115 CLICHY - FRANCE
Téléphone 01.41. 06.30.00Télex 620 428 SOFRGAZFax 01.47.37.16.27
E-mail [email protected]
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REVISION RECORD
Revision Date Established Checked Project Approved Issue for
0 22/05/00 PSF MCC PZE ROR First issue
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CONTENTS
1. GENERAL
1.1 PURPOSE
1.2 DEFINITION OF TERMS
1.3 DEFINITION OF SUPPLY
1.3.1 Duty
1.3.2 Altitude, ambient temperature
1.3.3 Fuel composition
1.3.4 Power
1.3.5 Dual operating voltage 380 V / 400 V
1.3.6 Installation
1.4 EXTENT OF SUPPLY
1.4.1 Option
1.4.2 Limits of supply
1.4.3 Exclusions from supply
1.5 UNIT AND LANGUAGE
2. APPLICABLE CODES, NORMS AND STANDARDS
3. NOx, CO AND HC
4. FACTORY TESTS
5. TECHNICAL REQUIREMENTS
5.1 SKID
5.2 ENGINE REQUIREMENT
5.3 SYNCHRONOUS GENERATOR
5.3.1 General data
5.3.2 Information to fill out
5.4 PROTECTIVE RELAYS
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5.5 GAS ENGINE GENERATOR SET CONTROL PANEL
6. ASSOCIATED SUPPLIES
7. ASSOCIATED SERVICES
7.1 GENERAL
7.2 DOCUMENTATION AND DOCUMENTS
7.2.1 Documentation
7.2.2 SUPPLIER documentation
7.2.3 Reviewed documents
7.2.4 Good and as built documentation
7.2.5 Test procedure documentation
8. WARRANTIES
8.1 WARRANTIES AGAINST FAULTY DESIGN
8.2 PERIOD OF WARRANTIES
9. QUALITY CONTROL
10. OTHER INFORMATION
10.1 CABLES SPECIFICATION AND PROCUREMENT
10.2 EARTHING SYSTEM
10.3 FIRE AND GAS DETECTION
11. APPENDICES
APPENDIX 1 - GAS ENGINE AND GENERATOR DATA SHEET
FOR S3 STATION
APPENDIX 2 - GAS ENGINE AND GENERATOR DATA SHEET
FOR S6 STATION
APPENDIX 3 - GENERATOR BUILDING DRAWING
APPENDIX 4 - MAP
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1.
GENERAL
1.1 PURPOSE
The purpose of this document is to provide the minimum technical requirement for
the supply of two gas engine-generator sets, and the associated supply and services.
The two gas engine generator sets shall be installed at two different sites :
- S3 station , at 2061 m elevation : 2000 kW
- S6 station, at 1371 m elevation : 1500 kW.
The thermal mover will be a natural gas fueled reciprocating engine.
The generator set will be used to provide an emergency power in case of failure of
normal grid supply.
This document applies exclusively to : S3 compressor station and S6 compressor
station, a project of NIGC, Iran.
1.2 DEFINITION OF TERMS
Within the context of this document, the following words shall have the meanings
stated :
- N.I.G.C. : means National Iranian Gas Company
- SHALL : indicates a mandatory requirement
- SHOULD : indicates a recommendation or that which is advised
but not required
- CONTRACTOR : means the Company that will place the order
-
SUPPLIER : mean the manufacturer or the company whichSUPPLIES the two gas engine generator sets
-
PACKAGE : means a complete equipment assembly.
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1.3
DEFINITION OF SUPPLY
1.3.1 Duty
This generator set has a stand-by role. A prime power for electrical production is not
required. Grid outage may last as long as 8 hours. Cumulative grid outage is
presumably less than 500 hours a year.
Therefore, the generator set will be built as follows :
- temperature equilibrium : continuous running duty, S1 as per IEC 34-1 or
ISO 8528-1,
-
engine wear : light duty,
-
10 %, 1 hour overload : yes.
1.3.2 Altitude, ambient temperature
Both compressor stations are located at high altitude :
S3 Station S6 Station
Altitude, above mean sea level 2061 m 1373 mAmbient temperature minimum - 19 °C - 14 °C
Ambient temperature maximum + 37 °C + 43 °C
Design temperature for de-rating 32.2 °C 37.8 °C
Design temperature for coolers 35 °C 40 °C
A de-rating factor will be advised and applied by manufacturer, hereafter called
"SUPPLIER" to a dependable and proven product to get the required output.
1.3.3 Fuel composition
- Methane : 88 %
- Nitrogen : 4.8 %
- Ethane : 4.8 %
- Carbon dioxide : 0.3 %
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1.3.4 Power
Power requirements are :
- 2000 kW for S3 station,
- 1500 kW for S6 station.
These ratings are understood as :
- after de-rating factor due to altitude,
- continuous running service,
- at generator terminals,
- at design temperature as specified (paragraph 1.3.2),
- fed by natural gas as above,
- 10 % overload 1 hour.
1.3.5 Dual operating voltage 380 V / 400 V
Required voltage is : 380 V / 400 V, 3 phases, 4 wires, 50 Hz.
400 V is the standard operating voltage for new low voltage systems (IEC 38 – 1983,
20 years to change progressively from 380 V to 400 V).
The existing system is 380 V, 50 Hz.
These generator sets will operate at 380 V. It would be wiser to use a standard
manufactured generator 400 V and complete the AVR by a set point selector to
allow operation at either 380 V or 400 V.
AVR with a continuous setting knob (potentiometer) would be acceptable.
1.3.6
Installation
The generator set will be installed indoor, inside a generator building (drawing in
Appendix 2). Generator buildings are identical at both sites.
The radiator will be outside the generator building.
Exhaust gas will be evacuated through the building roof.
[Continue on paragraph 4 : technical requirements]
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1.4
EXTENT OF SUPPLY
The supply includes :
- two natural gas fueled engine-generator set built on skid :
. power as per dedicated paragraph,
.
400V / 230 V, 3 phases, 4 wires, 50 Hz,
-
AVR :
. regulation range : from 360 V to 420 V,
- starting system : pneumatic or by battery per SUPPLIER's Standard,
-
control panel with PLC and remote control feature,
- protective relays and current transformers,
- control cables and small power cables within generator set package,
- fuel gas inlet unit with flexible hose to the engine,
- outdoor radiator (if any) : warm and hot water piping network to the engine,
-
exhaust system with flexible bellows and exhaust pipe to the building roof,
-
generator circuit breakers :
. S3 Station : > 4200 A, 3 phases, 4 poles, 55 kA
.
S6 Station : > 3200 A, 3 phases, 4 poles, 55 kA,
- factory routine test per IEC and ISO standards, witnessed by CONTRACTOR,
- site test when option is ordered,
-
installation studies based on CONTRACTOR's generator building drawings,
-
documentation,
-
site commissioning if option is ordered and as built drawings,
- consumable for start-up (except fuel gas),
- list of spare parts for two years (1000 hours) of operation,
- sea worthy packing, SEI standard for thermal engine,
- packing list
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1.4.1 Option
Associated optional supplies are :
- sound traps and louvers for sound attenuation to 75 dB outside building.
- capital spare parts (sensitive and hard to find parts for reparation when far away
from SUPPLIER factory),
- special tools for erection and for regular maintenance,
- erection supervision,
- site and acceptance test by SUPPLIER,
-
training,- fire and gas detection,
-
load test in factory (see paragraph 4).
1.4.2 Limits of supply
The limits of supply are :
-
Tie in point : fuel gas inlet flange of gas inlet unit, 150 Lbs, according to
ASME/ANSI B16.5 (raised face, stock finish).
-
Tie out point : generator circuit breaker, outside connection pads.
- Heater : terminal box on engine.
- Remote control : control panel terminal blocks.
- Generator frame to earth : 2 earthing studs, minimum.
-
Generator neutral : star point (star point formation by SUPPLIER).
-
Neutral CT : supplied loose.
Within limits of supply, the generator set shall be :
-
operational manually,
- operational when receives remote start / stop signals.
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1.4.3 Exclusions from supply
They are :
- local erection work,
- civil works,
-
power cables outside package such as generator main cables, neutral to earth
cable.
1.5 UNIT AND LANGUAGE
English is the contractual language.
Metric system shall be used.
2. APPLICABLE CODES, NORMS AND STANDARDS
The following codes and standards shall be applied :
INTERNATIONAL STANDARD ORGANIZATION
- ISO 8528 : Reciprocating internal combustion engine driven
alternating current generating sets.
-
ISO 3046-1 to 7 : Reciprocating internal combustion engines.
INTERNATIONAL ELECTROTECHNICAL COMMISSION
- IEC 60034-1 : Rotating electrical machine : rating and performance.
- IEC 60034-9 : Rotating electrical machine : noise limits.
-
IEC 60034-22 : Rotating electrical machine : Ac generators for reciprocating internal combustion engine.
-
IEC 60947-2 : Low voltage circuit breakers.
This listing is not limitative.
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3.
NOX, CO AND HC
At the exhaust, the maximal values for NOx, CO and HC shall not be greater than
the following :
- NOx : 350 mg / Nm3
-
CO : 650 mg / Nm3
-
HC : 150 mg / Nm3
These values of NOx, CO and HC shall be understood with a residual oxygen
concentration of 5 %, in the exhaust gas.
4. FACTORY TESTS
- IEC and ISO routine tests.
- Standard SUPPLIER tests certificates.
- Load tests (optional) :
.
1 hour at 50 % nominal load,
.
1 hour at 785 % nominal load,
. 4 hours at 100 % nominal load,
.
½ hour at 110 % nominal load,
. synchronizing simulation.
- Test report – Witness with customer.
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5.
TECHNICAL REQUIREMENTS
5.1 SKID
The gas engine generator sets shall be made of the following components :
- base frame, common for engine and generator, made of rugged structural steel,
- anti-vibrations mounts,
-
flexible hoses, flexible bellows (for outside connections : fuel gas, exhaust gas,
coolant waters, lube oil drain, crank case breather filter drains),
-
gas engine with built on governor,
- synchronous generator, brushless,
- flexible coupling engine / generator (torque damper),
- auxiliary generator with DC output to charge the starting battery,
-
or else pneumatic starting system with air compressor and air reservoir,
-
preheating system (the gas engine generator sets shall be ready to start at 40 °C)
with resistance fed by normal AC source,
- generator set termination boxes, sensors, controls, heaters.
5.2 ENGINE REQUIREMENT
- Power rating : see paragraph 1.2.4.
. Combustible : see paragraph 1.2.3.
. Temperature : see paragraph 1.2.2.
- Service : see paragraph 1.2.1.
-
Over load : see paragraph 1.2.4.
-
Noise limit : IEC and ISO standards.
-
Cycle : 2 or 4 stroke (quick start advantageous).
- Casing : mono block.
- Speed : 1500 rpm.
- Governor accuracy : – 0.5 % to + 0.5 %, digital type, reliable
and proven product from a well-known
SUPPLIER.
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- AVR accuracy : – 0.5 % to + 0.5 %, digital type, reliable
and proven product from a well-known SUPPLIER.
- Generator : see paragraph 4.4.
- Operating time meter : in hours and 1/100 of hours.
-
Starting system : pneumatic
.
Store energy : 6 complete starting sequences
. Alternate system : DC motor
Air compressor (or battery charger) shall
be supplied including adequate air
reservoir (or maintenance free lead acid battery capacity)
-
Fuel gas supply : the pressure reducing valve from
compression station pressure to engine
pressure will be provided by
CONTRACTOR.
-
Sparking system :
.
Principle : electronic
. Spark : one per cylinder
. Coil : one per head cylinder
- Gas intake system : SUPPLIER's standard (3.5 bars)
. Filter : standard of SUPPLIER
. Duct : required
. Joint : anti-vibrating, or outside mounted with
flexible hose.
- Air intake system
. Principle : turbo-charged, engine mounted
. Filter : dry
. Cooling : air / water.
- Exhaust system
. Exhaust : one per engine
.
Noise limit : 75 dB (at 1 m from building wall)
.
Silencer : standard of SUPPLIER
.
Flexible bellows : included (standard)
. Exhaust conduit : by SUPPLIER's installation study,
. Safety : waste gas valve
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- Lubrication
.
System : under pressure. Main pump : crankshaft driven
. Pre lube oil pump : if any
. Post oil pump : not required
.
Oil cooling : standard of SUPPLIER
.
Filter : required
.
Preheating : standard of SUPPLIER
. Oil consumption : 0.5 g / kWh maximum
. Oil (tank) : in the crankcase
.
Oil refilling during running : not required. Temperature metering : 2 steps (alarm + fault)
. Pressure metering : 2 steps (alarm + fault)
- Cooling system : water
. Principle : air coolers, closed circuit
.
Main pump : direct driven or belt driven
.
Other pump : electric driven if any
.
Preheating : standard of SUPPLIER
. Temperature metering : 2 steps (alarm + fault)
-
Air coolers : standard of SUPPLIER . Location : outside generator building
. Water pipes : by SUPPLIER's installation study
- Additional mechanical meters for oil and water on the engine itself
. Water cooling system : temperature only
. Oil cooling system : temperature and pressure
- Temperature sensors
. In the exhaust : one (standard of SUPPLIER)
.
Cylinder head : one per cylinder
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5.3
SYNCHRONOUS GENERATOR
5.3.1 General data
The minimum requirements of the synchronous generator shall be as follows :
-
rated power, 3 phases, 50 Hz :
. S3 station, after de-rating : 2500 kVA, pf 0.8
. S6 station after de-rating : 1875 kVA, pf 0.8
At sea level altitude, catalogue rating must be above these figures.
- frame : IP 23, self ventilated
- efficiency : ≥ 96 %
- rated voltage : 380 V / 400 V, phase to phase
(see paragraph 1.3)
- operating voltage :
phase to phase : 380 V, + 10 % / – 10 %
-
phase winding : 6 terminals to bring out
- insulation
. stator : class H
.
rotor : class H
- heating, temperature rise : class F
- number of bearings : 2
5.3.2 Information to fill out
Independently of data sheet in Appendix 1, SUPPLIER is requested to fill out and /
or confirm the following information :
S3 Station S6 Station- apparent power rating (kVA) :
- current rating of stator (A) :
- voltage rating of stator Un between phases :
- voltage rating of stator Un between phase and neutral :
- power rating factor : Cos phi :
- short circuit ratio : Kcc :
- longitudinal synchronous reactance : Xd/ :
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S3 Station S6 Station
-
transversal synchronous reactance : Xq % :
- longitudinal transient reactance : X'd % :
- longitudinal sub-transient reactance : X"d % :
- transversal sub-transient reactance : X"q % :
- zero sequence reactance : Xo % :
- armature leakage reactance : Xs % :
- reverse reactance : X2 % :
- zero sequence resistance : R0 % :
- DC resistance of winding, per phase of the stator
at 20 °C Ra ohms :
- direct resistance : R1 % :
- resistance of rotor Winding at 20 °C Rf : ohms :
- constant of longitudinal transient time in short
circuit : t'd's :
- constant of longitudinal sub-transient time in
short circuit : t"d's :
-
transversal sub-transient time constant inshort circuit : t"q's :
- time constant in short circuit of stator :
- Number of probes
. PT 100 embedded in the winding :
.
Bearing, thermocouple :
The following drawings, graphs, data sheets and descriptive bulletins shall be
provided :
-
outline dimension drawing,-
voltage, excitation curve,
-
V curve,
-
P / Q graph,
- generator data sheet,
- governor data sheet,
- AVR data sheet,
- protection relays descriptive bulletin,
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5.4
PROTECTIVE RELAYS
One multifunction digital relay will be provided.
The relay shall be programmable.
Multi-threshold must be available by program for each of the following protective
functions :
- generator differential : 87
- overload : 49
-
reversed power : 32- short circuit, voltage restraint : 51 V
- zero sequence current : 51 N
- over-voltage : 59
- under-voltage : 27
- loss of excitation : 78
-
over-frequency : 80 O
-
under-frequency : 80 U
Being alone, distance relay 21 (out of step) and negative sequence current relay 46
are not required.
The relay will be also a metering device.
Through a key board, electrical quantities may be read at any time with an accuracy
of 0.2 % :
- phase current : I1, I2, I3
-
phase voltage : U12, U23, U31
-
neutral voltage : V1, V2, V3
-
active power : P
- reactive power : Q
- power factor : pf
- active energy : kWh
- reactive energy : Kvarh
and many other quantities.
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This device shall have serial port for link to the DCS (RS 485 and other protocols)
transmitted signals are : measurements, relay operation signals, status signals, circuit
breaker control commands, etc.
The device shall not be sensitive to CT saturation phenomena. Matching CTs for
differential protection shall not be required.
One set of 3 CTs, ring core type, In/5A, 10 VA 10P10 will be provided for over-
current and differential protection.
One set of 3 CTs, ring core type, In/5A 10VA 10P10 will be provided on neutral side
of phase windings for differential protection.
One set of 3 CTs, ring core type, In/5A class 0.2 will be provided for discrete
components of the control panel.
(In = 4000 A of S3 for S3 Station and 3000 A for S6 Station).
One CT, ring core type, provided loose for site mounting, 250/5 5VA 10P10, for
ground fault detection.
5.5 GAS ENGINE GENERATOR SET CONTROL PANEL
The control functions are :
- start and stop of the generator set,
-
manual operation and automatic operation,
-
remote start / stop is required : once command is given, the plant PLC takes over
the control of the generator set operation.
The synchronoscope is not required ; synchrocoupler is not required. The generator
set shall be able to automatically start upon loss of 400 V mains (through generator
PLC). The generator PLC shall carry out the loading sequence according to user's
program.
The control principle is as follows :
-
the generator set is full automatic,
-
the generator set is full manual, with a mode selector switch.
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The control principle shall be as per the following sketch :
Typical principle
In front of the control panel :
- Metering for output voltages, currents and frequency, they are :
. one voltmeter (with a seven positions switch) for :
. voltage phase 1 / phase 2
. voltage phase 2 / phase 3
.
voltage phase 3 / phase 1.
voltage phase 1 / neutral
. voltage phase 2 / neutral
. voltage phase 3 / neutral
. stop
.
three meter (connected on three current transformers) :
. current in phase 1, expanded scale 250°
. current in phase 2, expanded scale 250°
. current in phase 3, expanded scale 250°
. one frequency meter (connected on synchronous generator)
-
Generator protective and metering device (see paragraph 5.5) to implement in this panel in order to read other electrical quantities
- Switch, push-buttons and key loads :
. one control-panel for the engine
. one switch : emergency shut-down (locked by key, color red)
. one switch : normal stop of the generator set
. one switch control speed : lamps and led test
. one push-button : alarm stop
Control cabinet Air cooler
Control of gas
the engine
(mechanical)
Control & AVR
of generator
(electrical)
Gas engine Synchronous
generator Breaker
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. one push-button : alarm clear
.
key board for gas engine control
- Pilot lights and / or panel vues, they are :
. panel vue : for all gas engine status (as per the standard of the gas engine
SUPPLIER, if any)
. one pilot light red : fault
. one pilot light green : running
. one pilot light yellow : normal stop and ready to start
- One buzzer
- Input / output status to be sent to the control station :
.
by TOR contacts wired on terminal block :
. stop/start or running
. local/remote
.
general fault
. by serial link (RS282 or RS485)
. stop/start or running
.
local/remote
.
oil pressure
. water temperature
.
electrical relay operates. engine emergency shutdown
The control panel and material inside shall be designed for continuous operation,
+ 35 °C design temperature.
Inside wiring and components will not exceed 70 % of panel volume.
The general construction shall be designed to prevent spreading or damage due to
fire or electrical faults and to completely exclude accidental contact with live parts.
The control panel shall have front access for operations.
It shall be as per standard of SUPPLIER. However freestanding with a frame of steel
profiles covered by sheet steel shall be preferred, IP 31.
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6.
ASSOCIATED SUPPLIES
The intent of this specification is a complete gas engine generator package. All
relevant items not mounted on the skid shall be supplied. They are :
- starting system :
. pneumatic : complete skid with an electric air compressor, air reservoir
30 bars, the skid is complete by itself including air pipe.
Electrical wire to motor box is out of supply, paragraph 10.1)
. DC starter : fully integrated on the skid including auxiliary charging
generator.
- noise limiting device :
sound trap will be proposed as an option based on generator building drawing in
Appendix 2. Louvers for air entrance shall be proposed.
- Fuel gas intake :
Fuel gas intake unit shall be included in the supplies (paragraph 5.2). External
fuel gas pipe will be arranged by CONTRACTOR up to generator building wall.
Remaining supply all the way up to the engine is part of associated supplies.
7.
ASSOCIATED SERVICES
7.1 GENERAL
The SUPPLIER shall provide engineering standards, mounting instructions including
correct quantities of pipes, cables and accessories.
Examples of installation engineering are :
- linking pipes from engine to radiator (outdoor), warm water, hot water,
- exhaust pipes from engine to the building roof,
-
interface with fuel gas arrival,
- other loose supplies and site mounted equipment such as neutral CT,
- heater cable from distribution panel to engine box,
- radiator cables from distribution panel to fans,
- cable list,
Engineering studies will be based on CONTRACTOR's information and drawings.
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In case erection is also carried out by SUPPLIER, SUPPLIER will provide as built
drawings.
7.2 DOCUMENTATION AND DOCUMENTS
7.2.1 Documentation
English is the contractual language.
The drawings shall be under hard copy (paper) and electronic copy (Microstation, E-
mail or diskette).
No definitive drawing shall be issued before the corresponding first reviewed issue is
reviewed, and no assembly started before construction drawings are approved, unless
notified justification of the SUPPLIER to meet contractual delivery schedule.
The documents shall be up to date for construction (as built) and shall include the
installation, user and maintenance manuals.
7.2.2 SUPPLIER documentation
All part of the generator set shall be fully documented. They include the following :- The complete gas engine,
- the complete generator set,
-
all components of the generator set (engine, generator, air coolers, starter, etc.)
- power connections drawings,
- terminal assembly drawings,
- detailed drawings,
- cable book,
-
system hardware list (if any),-
system software list,
- list of application programs (if any)
- programs (if any)
- factory acceptance test procedures,
- site acceptance test procedure (if applicable),
- project schedule,
-
data sheets in appendices (paragraph 11).
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7.2.3 Reviewed documents
These documents shall be submitted by the SUPPLIER after the supply contract, for
review prior to fabrication.
No fabrication is allowed without the documents having first been reviewed by the
CONTRACTOR.
Documents, which are part of the bid proposal, are not considered as reviewed
documents.
The SUPPLIER shall submit its design, study reports, analysis, workshop drawings
with bills of equipment and documents as listed in the requisition to theCONTRACTOR for review.
The CONTRACTOR shall return one print with comments and / or review.
7.2.4 Good and as built documentation
Before erection, SUPPLIER shall certify all his drawings "Good for construction".
If delivered equipment fails to conform to these drawings or documents, SUPPLIER
shall correct such failures to the satisfaction of CONTRACTOR.
After erection, and if ordered, SUPPLIER shall resubmit "as built drawings".
As-built drawings are those submitted at the end of the job, and reflect the as-
fabricated, as-installed and as-tested condition of the equipment. They shall meet the
requirements of the project specification.
7.2.5 Test procedure documentation
The SUPPLIER shall give a complete documentation for the factory : test of the
supply (and for the site and acceptance test if applicable) of the supply.
These documents shall describe the following :
- the proceeding,
- tools and equipment for proceeding and measurements,
- the data of the supply,
- the attempts data and measurements.
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8.
WARRANTIES
In this document the effect of the warranties are limited to the technical warranty.
The SUPPLIER shall provide his generator set in full operation order.
The SUPPLIER shall ensure that all sub-suppliers comply with all applicable parts
of this specification and related documents, standards and code and the selected
quality level.
Compliance with the provisions of this specification does not relieve SUPPLIER of
the responsibility of supplying equipment and accessories of the proper design.
The SUPPLIER is responsible of the following :
- manufacture, procurement of his components, supply, factory acceptance test,
packing,
-
when applicable : transportation, site acceptance tests, precommissioning,
commissioning, start-up of all equipment and materials include in the supply,
- the warranties against faulty design and construction of the generator set,
- the performance warranties for the consumption of one generator set shall be not
greater than the following table.
Load
50 % 60 % 65 % 70 % 75 % 80 % 85 % 90 % 95 % 100 %
a) Typical value 100 100 100 100 100 100 100 100 100 100
b) Acceptable in %as per ISO
5 5 5 5 5 5 5 5 5 5
Total a + b 105 105 105 105 105 105 105 105 105 105
c) Not acceptable
consumption in %
2.5 2 2 2 1.5 1.5 1.5 1 1 1
Total not acceptable 107.5 107 107 107 106.5 106.5 106.5 106 106 106
The calcul of the consumption of gas shall be based on 85.5 % of methane
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8.1
WARRANTIES AGAINST FAULTY DESIGN
The availability shall be 97 %. However, the following shall be applicable, in case of
repetitive faults, without extra cost.
The consequences on repetitive fault shall be as per the following table :
Number of fault Consequences
For all parts of the gasengine
6 identical faults per year or 12 faults per year during
period of warranties
Replacement of thecomplete engine
For all electrical parts of the gas engine
6 identical faults per year or 12 faults per year during
period of warranties
Replacement of all theelectrical parts
For the synchronousgenerator
6 identical faults per year or 12 faults per year during
period of warranties
Replacement of thecomplete generator
For the output breakers 6 identical faults per year
or 12 faults per year during period of warranties
Replacement of the breaker
For the PLC's 6 identical faults per year or 12 faults per year during
period of warranties
Replacement of all thePLC's, by up graded
material
For the control cabinets 6 identical faults per year or 12 faults per year during
period of warranties
Replacement by up gradedmaterial
For the installation ingeneral
6 identical faults per year
or 12 faults per year during period of warranties
Replacement by up gradedmaterial
8.2 PERIOD OF WARRANTIES
The periods of warranties are per the following :
- Duration as per purchasing conditions or 2500 hours (500 h of operation per year)
whichever occurs the first.
This duration applies to all parts :
-
gas engine parts,
- synchronous generator parts,
- PLC,
-
control panel.
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The warranty shall include defective parts, replacement, instructions and
transportation of parts from SUPPLIER 's place to site without extra cost.
Oil and water filling shall not be considered.
The warranties are not applicable on the synchronous generator and on the breakers,
in case of short-circuit current due to an external fault.
9. QUALITY CONTROL
The SUPPLIER shall implement a Quality assurance Program in accordance with
ISO 9001. This Quality assurance program shall be submitted to CONTRACTOR
for approval in writing. SUPPLIER's general Quality assurance and Quality Control
Procedures shall be available at the time requested in the requisition. They shall
include namely the Quality Objectives.
SUPPLIER shall submit the details of the proposed Quality Assurance Program to be
followed for the work. It shall include all raw materials, active and passive
components, fabricated assemblies, wiring, interconnections, enclosures, and
software. SUPPLIER shall obtain and forward the Quality Assurance Program for
equipment / work / software supplied by his sub-suppliers.
CONTRACTOR may assign quality control personnel to SUPPLIER's
manufacturing facilities / offices, who will work with SUPPLIER's quality control
personnel in witnessing tests and control measures.
CONTRACTOR representative shall have the right to inspect and test each piece of
equipment at all stages of production and commissioning of the system. The
inspection and testing shall include but not be limited to raw materials, components,
sub-assemblies, prototypes, produced units, guaranteed performance specifications,
software, etc.
During all inspection periods, SUPPLIER shall provide all items necessary for CONTRACTOR's quality control personnel. These items include space, test
equipment, and SUPPLIER's quality control and technical personnel for consultation
and for test performance.
CONTRACTOR's representative shall have free access and entry to any parts of
SUPPLIER's manufacturing facility as it relates to the production of the equipment /
work / software provided under this specification.
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It shall be explicitly understood by all parties, that under non circumstances, any
approval of CONTRACTOR representative shall relieve SUPPLIER of
responsibility for material, design, quality assurance and guaranteed performance of
the equipment / work / software supplied under this specification.
SUPPLIER shall notify to CONTRACTOR's representative of the date equipment /
work/ software is ready for testing. Notification, required manuals, approved
drawings, test procedures and other pertinent documents shall be made available in
sufficient time to allow contractor's representative to prepare for participation in the
test.
10.
OTHER INFORMATION
10.1 CABLES SPECIFICATION AND PROCUREMENT
All electrical cables shall be specified by SUPPLIER (see paragraph 5.7).
Power cables which have one end in the package and the other end outside of the
package such as generator cables, cooler fan cables, neutral cable, etc., shall be
specified (quantity and quality, see paragraph 5.6.1) by SUPPLIER and procured by
CONTRACTOR.
All inside package cables, specifically control cables, will be specified and procured
by the SUPPLIER (SUPPLIER's scope of supply) and installed by others (i.e. by
CONTRACTOR's subcontractor along with the equipment itself).
10.2 EARTHING SYSTEM
The TNC-S scheme shall be used (20/0.4 kV transformers).
The neutral point of generator shall also be directly connected to the earth.
The maximal resistance value of the electrical earth mat will be no more than
5 ohms. The earthing system will be built by others.
10.3 FIRE AND GAS DETECTION
Out of scope. However, the SUPPLIER shall define the fire and gas detection
required in order to protect the generator set as an option.
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11.
APPENDICES
APPENDIX 1 - GAS ENGINE AND GENERATOR DATA SHEET
FOR S3 STATION
APPENDIX 2 - GAS ENGINE AND GENERATOR DATA SHEET
FOR S6 STATION
APPENDIX 3 - GENERATOR BUILDING DRAWING
APPENDIX 4 - MAP
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APPENDIX 1
GAS ENGINE AND GENERATOR DATA SHEET
FOR S3 STATION
No. RC291.DS.300.0300.0001
SUPPLIER is requested to fully fill out data sheets even if some information
are already stated elsewhere.
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APPENDIX 2
GAS ENGINE AND GENERATOR DATA SHEET
FOR S6 STATION
No. RC291.DS.600.0300.0001
SUPPLIER is requested to fully fill out data sheets even if some information
are already stated elsewhere.
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APPENDIX 3
GENERATOR BUILDING DRAWING
S3 STATION : No. C-022-C-203551
S6 STATION : No. D-022-C-203978
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APPENDIX 4
GEOGRAPHIC MAP