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124 MW GE Gas Turbine Power Plant

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Description

Product Description

124 MW GE Gas Turbine Power Plant

The Advantages of the Frame GE PG 6 Gas Turbine:

  • The GE frame 6 turbine is used worldwide in in a wide range of applications; such as simple cycle, cogeneration, and combined-cycle.
  • The combustion supports low cost gas and liquid fuels, including process gases, low calorific gases, and up to 30 percent hydrogen, 50 percent ethane, 100 percent propane, and 50 percent nitrogen
  • The standard combustion supports heavy oils, naphtha, bioethanol, methanol, synthetic gases, and steel mill gases and capable up to 95 percent hydrogen, or heavy fuel oil with up to 200ppm vanadium
  • The GE frame 6 gas turbine is a heavy duty, rugged, durable and flexible gas turbine that provides long service between 32,000 hour maintenance intervals.

Brief description 124 MW GE PG 6591 Gas Turbine Power Plant

This Combined Cycle Power Plant consists of two (2) 42.3 MW GE PG 6591 Gas Turbines, 39.9 MW GE Steam Turbine, HRSG, Dual Fuel: Natural Gas Fuel or Diesel, 50 HZ, 11.5 KV, Commissioned in 2005, upgrades to the plant in 2012 and 2013. Hours run since major maintenance was performed: 8,000 to 10,000 hrs. Plant is in very good condition and has been very well maintained since new. Plant can be seen running at the time of inspection and all service records can be viewed on site. 

124 MW GE PG 6591 Gas Turbine Power Plant

124 MW GE PG 6591 Gas Turbine Power Plant PDF

 

 

 

 

 

Exhibit A- General Information and Technical Specification of Plant
1. Plant
1.1 Unit Unit 1 Unit 2 Unit 3
2. General information of the units
       
2.1 Name of plant Production Plant
2.2 Name of the unit GTG 1A GTG 1B S T
2.3 Installed Capacity MW 42.3 42,3 39,888
2.4 Average production / year (last 3 years) MWh 186683.4218 190415.9963 190955.4036
2.5 Type (gas turbine – GT, steam turbine – ST, cogeneration – CG/ST, CG/GT) GT, ST GT GT ST
2.6 Number of groups 1 2 3
2.7 Concession AAAA
2.8 Year of commissioning AAAA 2005 2005 2005
2.19 Comments  
3 Power plant design
 
3.1 Year of production AAAA 2003 2003 2003
3.2 Name of manufacturer of the main unit General Electric General Electric General Electric
3.3 Name of the contractor General Electric General Electric General Electric
3.4 Engineering department General Electric General Electric General Electric
3.5 Turnkey project yes/no No No No
 
4 Plant occupancy
 
4.1 Net plant output MW 40 40 40
4.2 Equivalent Operating Hours 2012 5925 6434,9 6423,82
Equivalent Operating Hours 2011 6296 6547,8 6542,66
Equivalent Operating Hours 2010 EOHs 6082 5633 6286
Equivalent Operating Hours 2009 EOHs 7208 8305 7474
Equivalent Operating Hours 2008 EOHs 7380 6557 7496
Equivalent Operating Hours 2007 EOHs 7730 8021 8281,6
Equivalent Operating Hours 2006 EOHs 7016 6480 9597,1
4.3 Total operating hours since commissioning (@end of 2013) h 57058.00 55818.00 58312.00
4.4 Number of starts 2012 166 182 177
Number of starts 2011 166 182 161
Number of starts 2010 237 205 185
Number of starts 2009 25 25 20
Number of starts 2008 25 19 69
Number of starts 2007 16 23 13
Number of starts 2006 63 32 42
4.5 Total starts since commissioning  (@end of 2013) 1178.00 1058.00
4.6 Maintenance cycle by hours, starts or years hours/starts/years hours hours hours
4.7 Maintenance cycle – small maintenance (e.g. every 8.000 h, etc.) 12000-CI 12000-CI
Maintenance cycle – large maintenance (e.g. every 32.000 h, etc.) 24000-HGPI 24000-HGPI 24000.00
Overhaul Cycle-Major Maintenance 48000-MI 48000-MI 48000.00
4.8 Equivalent Operating Hours after Last Inspection EOHs 9372.00 10034.00 9915.00
Number of starts after Last Inspection 445.00 435.00
Last Inspection Scope (HGPI,Major Inspection) MI MI MI
Year of last extensive inspection AAAA 2012 2012 2012
4.9 Electrical Frequency Hz 50 50 50
7. Storage of combustible
 
7.1 Size of storage yes/no No No No
7.2 Storage volume
7.3 Year of construction AAAA
7.4 Year of last extensive inspection or reconstruction AAAA
7.5 Expected remaining useful lifetime AA
7.6 Actual condition
7.7 Comments
8. Gas turbine
8.1 Year of construction AAAA 2003 2003
8.2 Manufacturer GE GE
8.3 Model P G 6 5 9 1 C P G 6 5 9 1 C
8.4 Type Frame 6 C Frame 6 C
8.5 Production MWe 42.3 42.3
8.6 Pressure ratio 1/16,4 1/16,4
8.7 Flow rate lb./sec 110 110
8.8 Turbine speed rpm 7100 7100
8.9 Exhaust gas temperature °C o F 600 600
8.10 Dry low Nox combustor yes/no Yes Yes
8.11 Air quench cooler yes/no No No
8.12 Specific consumption Th PCS/Mwh 310 Sm3/Mwh 310 Sm3/Mwh
8.13 Water injected yes/no No No
8.14 Dry yes/no No No
8.15 Distillate fuel yes/no Yes Yes
8.16 One axl / two axls 2 2
8.17 Dual fuel combustion yes/no Yes Yes
8.18 Fast start capacity yes/no No No
8.19 Comments
9. Steam turbine
9.1 High, medium or low pressure High
9.2 Year of construction AAAA 2003
9.3 Manufacturer GE
9.4 Model Vacumend
9.5 Type (e.g. VHP/HP/IP0) HP
9.6 Production MWe 40,8
9.7 Entry pressure bar 56
9.8 Outlet temperature °C o F 48 oC
9.9 Turbine speed rpm 3000
9.10 Dual fuel combustion yes/no No
9.11 Actual condition Good
9.12 Comments
10. HRSG
10.1 Year of construction AAAA 2004 2004
10.2 Manufacturer NEM NEM
10.3 Model HRSG HRSG
10.4 Type (e.g. horizontal, circulation) horizontal horizontal
10.5 Gas temperature entry °C o F 598 598
10.6 Gas temperature exit °C o F 102 102
10.7 Steam pressure kg/cm² 58  –  5 58  –  5
10.8 Hight of chimeney or stck m 29 29
10.9 Number of pressure levels 2 2
10.10 Pressure in stages HP, MP, LP bar HP:58  LP:5 HP:58  LP:5
10.11 Production of steam t/h 65 65
10.12 Actual condition Good Good
10.13 Comments
11. Generator
11.1 Manufacturer VATEC-ELIN VATEC-ELIN VATEC-ELIN
11.2 Model Outdoor Outdoor Outdoor
11.3 Type 2Poles 3 Phase WYE CONN 50 Hz 2Poles 3 Phase WYE CONN 50 Hz 2POLES 3 PHASE WYE CONN. 50 Hz
11.4 Cooling system air / water air air water
11.5 Rating MW 39 39 40,8
11.6 Voltage kV 11,5 11,5 11,5
11.7 Power factor cos Æ 0,8 0,8 0,8
11.8 Output MVAR 39 39 40
11.9 Year of construction AAAA 2003 2003 2003
11.10 Year of last extensive inspection or reconstruction AAAA 2008 2008 2008
12. Transformer
12.1 Manufacturer A B B A B B A B B
12.2 Model 1ZTR231900 1ZTR231900 1ZTR231900
12.3 Type/ voltage level high/ low 1ZTR231900  High/Low 1ZTR231900  High/Low 1ZTR231900  High/Low
12.4 Load MVA 54 54 54
12.5 Year of construction AAAA 2004 2004 2004
12.6 Tranformation ratio 154/11,5 154/11,5 154/11,5
12.7 Comments
13. Cooling system
13.1 Fluid cooling yes/no Yes Yes Yes
13.2 Cooling tower si o no No No No
13.3 Manufacturer G E A G E A G E A
13.4 Type FIN FAN COOLER FIN FAN COOLER A C C
13.5 Hight m 3,967 3,967 22,24
13.6 Material Concrete/steel Steel Steel Steel
13.7 Diameter of cooling tower m
13.8 Cooling capacity MW *) 40
13.9 Cooling-water entry temperature °C
13.10 Cooling-water exit temperature °C
13.11 Cooling-water flow m³/h
13.12 Thermal ratio dry/wet A:B
13.13 Number of cooling cells 8 8 12
13.14 Diameter of vents m 1,25 1,25 10,225
13.15 Revoluciónes del ventilador rpm 705 705 104,9  – 52,6
13.16 Herbicide for biological pollution yes/no No No No
13.17 Year of construction AAAA 2005 2005 2005
13.18 Year of last extensive inspection or reconstruction AAAA 2008 2008 2005
13.19 Estimate for market price for new unit
13.20 Comments
14. Specific Site Requirement (Other facilities/other extensive buildings); Please describe them (eg. No./Manufacture/Model/Type/Other Explanation/Actual Condition)
15. Please provide data concerning modernization activities performed in the past (e.g. upgrades etc.) or are planned for the near future for the main components. Extra fan units were installed in 2013 to ACC unit.
Gas Preheating System was installed in 2012.

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