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Supplier: Dresser-Rand
Description: KG2 GAS TURBINES The latest generation in gas turbines for power generation. SIEMENS INDUSTRIAL 501-K GAS TURBINE The Siemens Industrial 501-K has accumulated over 110 million hours of operation with more than 500 customers in 53 countries. SIEMENS SGT-100
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Supplier: Accuris
Description: Basic Gas Turbine
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Supplier: Flow Technology, Inc.
Description: Repeatability: ±0.05% (liquid) and ±0.1% (gas) of reading. Excellent speed of response Linearity: ±0.1% (100:1) with linearizing electronics Liquid Flow Rates: 0.03 to 1,500 GPM (0.11 to 5,677 LPM) Gas Flow Rates: 0.09 to 1,500 ACFM (2.55 to 42,480 ALPM) Materials of
- Gas Volumetric Flow Rate: 0.4 to 1,500 SCFM
- End Fittings: Clamp, Flanged, Threaded
- Process Media Type: Gas
- Features: In-line, Other
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Supplier: Siemens Energy Sector
Description: Plant 1x1 2x1 Net Plant Power Output (MW) 253 512 Net Plant Efficiency (%) 52,5 53,1 Heat Rate (kj/kWh) 6857 6780 Heat Rate (Btw/kWh) 6499 6426 Condenser Pressure (bar) not published not published Gas Turbine Gross Power (kW) 168,000 336,000 Steam Turbine Gross Power (kW) 89,000
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Supplier: Siemens Energy Sector
Description: to operate on a wide range of gaseous and liquid fuels. For industrial power generation, this proven gas turbine is particularly well suited to combined heat and power applications. The compact arrangement, its on-site maintainability and inherent reliability have made it the
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Supplier: Waukesha Bearings
Description: air at the #2 bearing housing seal and increase turbine performance High pressure packing (HPP) sealing (compressor section inner barrel sealing) – to reduce clearances and cut leakage of high-pressure air into the turbine wheel space Hot gas path interstage sealing – to
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Supplier: ASME
Description: Edited by Mark van Roode, Mattison K. Ferber,and David W. Richerson Focusing on the work of component suppliers and materials characterization laboratories, this book provides a valuable insider's view of ceramic gas turbine development over the last two decades. Contributors who have
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Supplier: ASME Standards and Certification
Description: Edited by Mark van Roode, Mattison K. Ferber,and David W. Richerson Focusing on the work of component suppliers and materials characterization laboratories, this book provides a valuable insider's view of ceramic gas turbine development over the last two decades. Contributors who have
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Supplier: Accuris
Description: Gas turbines - Exhaust gas emission - Part 2: Automated emission monitoring
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Supplier: Siemens Energy Sector
Description: Wherever operating environments are particularly tough, the heavy duty gas turbine SGT-600 is the turbine of choice. The compact turbine is rated in the 25 MW class, with 34.2 % open-cycle efficiency. Designed as a compact, twin-shaft unit, the SGT-600 is suitable
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Supplier: CSA Group
Description: the following parameters be continuously monitored: emissions, diluent gases (oxygen, carbon dioxide), exhaust gas flow, fuel consumption and gas turbine performance.
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Supplier: Siemens Energy Sector
Description: turbine. The high pressure axis contains an 8 stage high pressure compressor and a 1 stage high pressure turbine. The three-stage power turbine speed is 3,600 rpm for power generation and 3,450 rpm for mechanical drive. In order to increase efficiency, a blade tip clearance
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Supplier: Hoffer Flow Controls, Inc.
Description: Grade 8 high yield strength bolts and “O” rings. Operate over a wide range of temperatures. Sizes 1/4″ through 2″. Pressure ratings of 3,000, 6,000, 8,000, and 10,000 psi available for most sizes. Larger sizes and pressures available upon request. Contact factory.
- Pipe Diameter: 1 to 3 inch
- Operating Pressure: 15,000 psi
- Media Temperature: -450 to 350 F
- Media Temperature Range: -450 to 350 F
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Description: the following parameters be continuously monitored: emissions, diluent gases (oxygen, carbon dioxide), exhaust gas flow, fuel consumption and gas turbine performance.
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Supplier: Hoffer Flow Controls, Inc.
Description: The Hoffer MF Series has been developed to meet the need for a low flow measurement device for service on clean, low and moderate viscosity liquids and for gas measurement applications. OUTSTANDING FEATURES 1/2” MS line size. Repeatable Flow Range is .007 to 3.5 GPM. Accuracy of +/-1%
- Operating Pressure: 6,000 psi
- Media Temperature: -450 to 850 F
- Media Temperature Range: -450 to 850 F
- Electrical Output: Analog Current, Analog Voltage, Frequency
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Supplier: Accuris
Description: ENGINES, AIRCRAFT, GAS TURBINE, TECHNICAL DESIGN REQUIREMENTS
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Supplier: Aichi Tokei Denki Co., Ltd.
Description: medium sizes. ・Manage and control flows of gas refrigerators. ・Manage and control gas flows as a part of plant instrumentation. ・For various experimental devices relating to gas flows. System drawing
- Pipe Diameter: 1.968505 inch
- Operating Pressure: 14.5036839357197 psi
- Process Media Type: Gas
- Meter Technology: Turbine Meter
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Supplier: Accuris
Description: AIRCRAFT PROPULSION GAS TURBINE ENGINES, DESIGNATION OF
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Description: Gas turbines -- Procurement -- Part 2: Standard reference conditions and ratings
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Supplier: Hoffer Flow Controls, Inc.
Description: Grade 8 high yield strength bolts and “O” rings. Operate over a wide range of temperatures. Sizes 1/4″ through 2″. Pressure ratings of 3,000, 6,000, 8,000, and 10,000 psi available for most sizes. Larger sizes and pressures available upon request. Contact factory.
- Pipe Diameter: 0.25 to 2 inch
- Operating Pressure: 10,000 psi
- Media Temperature: -40 to 350 F
- Media Temperature Range: -40 to 350 F
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Supplier: Badger Meter
Description: The Blancett® B142 Gas QuikSert® Turbine flow meter provides long service life by offering a durable construction design composed of stainless steel and tungsten carbide shaft and bearings. Superior Material. Consistent Measurement. The Blancett B142 Gas QuikSert® Turbine
- Pipe Diameter: 2 inch
- Gas Volumetric Flow Rate: 7 to 350 SCFM
- Operating Temperature: -40 to 330 F
- Operating Pressure: 0 psi
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Supplier: ASTM International
Description: this specification. Further, it states the significance of various test methods used in inspecting the fuels. 1.2.2 Appendix X2 discusses the sources of fuel contaminants and notes the significance of such contaminants in the operation of gas turbines and gas
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Standards and Technical Documents - AIRCRAFT GAS TURBINE ENGINE EXHAUST SMOKE MEASUREMENT -- ARP1179Supplier: SAE International
Description: The purpose of this Aerospace Recommended Practice is to standardize test equipment and procedures for the measurement of smoke emission from aircraft gas turbine engines. The procedures included are for determining and reporting the amount of smoke emission. This document is divided
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Supplier: SAE International
Description: This SAE Aerospace Recommended Practice (ARP) delineates two complementary filter element performance ratings: (1) dirt capacity, and (2) filtration efficiency, and corresponding test procedures. It is intended for non-cleanable (disposable), fine fuel filter elements used in aviation
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Supplier: ASTM International
Description: 1.1 This practice covers the requirements for the effective monitoring of mineral turbine oils in service in steam and gas turbines used for power generation. It includes sampling and testing schedules and recommended action steps, as well as information on how oils degrade.
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Supplier: SAE International
Description: This specification defines basic physical, chemical, and performance limits for 5 cSt grades of gas turbine engine lubricating oils used in aero and aero-derived marine and industrial applications, along with standard test methods and requirements for laboratories performing them. It
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Supplier: SAE International
Description: AIR1419 "Inlet Total Pressure Distortion Considerations for Gas Turbine Engines" documents engineering information for use as reference material and for guidance. Inlet total-pressure distortion and other forms of flow distortion that can influence inlet/engine compatibility require
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Supplier: ASTM International
Description: 1.1 This practice covers the design of lubricating oil systems for gas turbine driven generator units 1000 kw and larger. 1.1.1 The lubricating oil system is defined as that assembly which utilizes and circulates the turbine generator lubricating oil and furnishes pressurized
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Description: Establishes the detailed classification, excluding aircraft fuels. Should be read in conjunction with ISO 8216-0. These fuels are for use in industrial gas turbines and gas turbines derived from aviation turbines that are used in static and marine applications. The
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Supplier: ASTM International
Description: This standard may also be applied to "combined cycle" turbine systems, where a single lubricant circulating system is used to supply oil to a steam and gas turbine configured in tandem either on a single or separate shaft for enhanced energy efficiency. 1.2 This
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Supplier: CSA Group
Description: Establishes the detailed classification, excluding aircraft fuels. Should be read in conjunction with ISO 8216-0. These fuels are for use in industrial gas turbines and gas turbines derived from aviation turbines that are used in static and marine applications. The
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Description: Safe engine operation requires compliance with NFPA 37: Standard for the Installation and Use of Stationary Combustion Engines and Gas Turbines. Minimize fire hazards by staying up-to-code. The 2018 edition of NFPA 37 governs the installation and use of stationary engines and
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Supplier: CSA Group
Description: ISO 20816-2:2017 is applicable to land-based gas turbines, steam turbines and generators (whether coupled with gas and/or steam turbines) with power outputs greater than 40 MW, fluid-film bearings and rated speeds of 1 500 r/min, 1 800 r/min, 3 000 r/min or
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Supplier: Flow Technology, Inc.
Description: liquids and 0.0015 ACFM in gasses. QUICK SPECS Low flow instrument grade flowmeter for both liquid and gas Accuracy: ±0.25% Repeatability: ±0.1% of reading Linearity: ±0.1% (100:1) with linearizing electronics Liquid Flow Rates: 0.001 to 2.0 GPM (3.78 to 7,570 mLPM) Gas Flow
- Gas Volumetric Flow Rate: 0.0015 to 0.3 SCFM
- Operating Temperature: -450 to 1,200 F
- Operating Pressure: 5,800 psi
- Media Temperature: -450 to 1,200 F
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More Information Top
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Exergy-energy analysis of full repowering of a steam power plant
Approximately 95% of the power plants in Iran use V94.2 gas turbines and the rest utilize V94.3A gas turbines.
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Nondestructive Testing Role in Cost Reduction and Prevention of Possible
Integrity Damages of Casting Turbine Parts for Power Plants.
In accordance with tables 3 & 6, the production cost of a V94.2 gas turbine casting shell is equal to €316,538 and this cost for a steam turbine E-type is equal to €553,015.
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Heat Characteristics of V94.2 Gas-Turbine Units Operating at the PGU-450T Combined-Cycle Plant of the North-West Cogeneration Plant of St. Petersburg
Tests and measurements performed with the help of standard equipment entering the process control system, which were performed on V94.2 gas turbine units of the first PGU-450T plant at the North-West Cogeneration Plant in St. Petersburg, have made it…
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Operating Conditions of the V94.2 Gas-Turbine Unit of the Northwest Cogeneration Power Plant
…and data on the operation of the exhaust- heat boiler and the steam-power part of a unit with auxiliary equipment, we can determine the power characteristic of the power-generating unit of a combined-cycle plant with V94.2 gas turbines .
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THE ADVANTAGE OF NDT ON COST REDUCTION AND PREVENTION OF
POSSIBLE DAMAGES OF ROTOR TURBINE PARTS
In accordance with tables 2 & 3, the production cost of a V94.2 gas turbine forging parts is equal to 935,285€ and this cost for a steam turbine E-type is equal to 672,172€.
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Mastering the pilot domestic binary combined-cycle plants
The rated power output of V94.2 gas turbines is reached at an ambient temperature of +15°C and amounts to approx- imately 154 MW.
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Risk assessment of failure modes of gas diffuser liner of V94.2 siemens gas turbine by FMEA method
Failure of welding connection of gas diffuser liner and exhaust casing is one of the failure modes of V94.2 gas turbines which are happened in some power plants.
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Experience gained from operation of the GTE-160 gas turbine installation and prospects for its modernization
…were com menced in 1991, the time at which the Leningrad Metal Works (the production division of Silovye Mashiny) and Siemens established the joint venture Interturbo, the main production activity of which was assembling V94.2 gas turbines (the prototype of the…
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Selecting the thermal circuit and profile of a Russian large new-generation power-generating gas turbine unit and a combined-cycle plant built around it
Until 2007, the Severozapadnaya (Northwest) cogeneration station (CS) in St. Petersburg had been the only large com bined cycle plant comprising two 450 MW CCPs equipped with 160 MW V94.2 gas turbines of Sie mens, whereas at present, CCPs of a…
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Role of acceleration control in heavy duty gas turbines during load rejection
Fig. 2 : Block diagram of control system in Rowen model Fig. 3 : Normalized speed and acceleration in startup of Siemens V94.2 gas turbine .
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