Advanced Turbine Systems Program Conceptual Design and Product Development. Task 3 -- System Selection ; Topical Report

Advanced Turbine Systems Program Conceptual Design and Product Development. Task 3 -- System Selection ; Topical Report PDF Author:
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Category :
Languages : en
Pages : 56

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Solar Turbines Incorporated has elected to pursue an intercooled and recuperated (ICR) gas turbine system to exceed the goals of the DOE Advanced Turbine Systems (ATS) program, which are to develop and commercialize an industrial gas turbine system that operates at thermal efficiencies at least 15% higher than 1991 products, and with emissions not exceeding eight ppmv NOx and 20 ppmv CO and UHC. Solar's goal is to develop a commercially viable industrial system (3--20 MW) driven by a gas turbine engine with a thermal efficiency of 50% (ATS50), with the flexibility to meet the differing operational requirements of various markets. Dispersed power generation is currently considered to be the primary future target market for the ICR in the 5--15 MW size class. The ICR integrated system approach provides an ideal candidate for the assumed dispersed power market, with its small footprint, easy transportability, and environmental friendliness. In comparison with other systems that use water or toxic chemicals such as ammonia for NOx control, the ICR has no consumables other than fuel and air. The low pressure ratio of the gas turbine engine also is favorable in that less parasitic power is needed to pump the natural gas into the combustor than for simple-cycle machines. Solar has narrowed the ICR configuration to two basic approaches, a 1-spool, and a 2-spool version of the ATS50. The 1-spool engine will have a lower first-cost but lower part-power efficiencies. The 2-spool ATS may not only have better part-power efficiency, its efficiency will also be less sensitive to reduced turbine rotor inlet temperature levels. Thus hot-end parts life can be increased with only small sacrifices in efficiency. The flexibility of the 2-spool arrangement in meeting customer needs is its major advantage over the 1-spool. This Task 3 Topical Report is intended to present Solar's preliminary system selection based upon the initial trade-off studies performed to date.

Advanced Turbine Systems Program Conceptual Design and Product Development. Task 3 -- System Selection ; Topical Report

Advanced Turbine Systems Program Conceptual Design and Product Development. Task 3 -- System Selection ; Topical Report PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 56

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Book Description
Solar Turbines Incorporated has elected to pursue an intercooled and recuperated (ICR) gas turbine system to exceed the goals of the DOE Advanced Turbine Systems (ATS) program, which are to develop and commercialize an industrial gas turbine system that operates at thermal efficiencies at least 15% higher than 1991 products, and with emissions not exceeding eight ppmv NOx and 20 ppmv CO and UHC. Solar's goal is to develop a commercially viable industrial system (3--20 MW) driven by a gas turbine engine with a thermal efficiency of 50% (ATS50), with the flexibility to meet the differing operational requirements of various markets. Dispersed power generation is currently considered to be the primary future target market for the ICR in the 5--15 MW size class. The ICR integrated system approach provides an ideal candidate for the assumed dispersed power market, with its small footprint, easy transportability, and environmental friendliness. In comparison with other systems that use water or toxic chemicals such as ammonia for NOx control, the ICR has no consumables other than fuel and air. The low pressure ratio of the gas turbine engine also is favorable in that less parasitic power is needed to pump the natural gas into the combustor than for simple-cycle machines. Solar has narrowed the ICR configuration to two basic approaches, a 1-spool, and a 2-spool version of the ATS50. The 1-spool engine will have a lower first-cost but lower part-power efficiencies. The 2-spool ATS may not only have better part-power efficiency, its efficiency will also be less sensitive to reduced turbine rotor inlet temperature levels. Thus hot-end parts life can be increased with only small sacrifices in efficiency. The flexibility of the 2-spool arrangement in meeting customer needs is its major advantage over the 1-spool. This Task 3 Topical Report is intended to present Solar's preliminary system selection based upon the initial trade-off studies performed to date.

Advanced Turbine Systems Program Conceptual Design and Product Development Task 5 - Market Study of the Gas Fired ATS. Topical Report

Advanced Turbine Systems Program Conceptual Design and Product Development Task 5 - Market Study of the Gas Fired ATS. Topical Report PDF Author:
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ISBN:
Category :
Languages : en
Pages :

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Advanced Turbine Systems Program Conceptual Design and Product Development. Task 3.0, Selection of Natural Gas-fired Advanced Turbine System

Advanced Turbine Systems Program Conceptual Design and Product Development. Task 3.0, Selection of Natural Gas-fired Advanced Turbine System PDF Author:
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Category :
Languages : en
Pages :

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Advanced Turbine Systems Program Conceptual Design and Product Development. Annual Report, August 1993--July 1994

Advanced Turbine Systems Program Conceptual Design and Product Development. Annual Report, August 1993--July 1994 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 78

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Book Description
This Yearly Technical Progress Report covers the period August 3, 1993 through July 31, 1994 for Phase 2 of the Advanced Turbine Systems (ATS) Program by Solar Turbines Incorporated under DOE Contract No. DE-AC421-93MC30246. As allowed by the Contract (Part 3, Section J, Attachment B) this report is also intended to fulfill the requirements for a fourth quarterly report. The objective of Phase 2 of the ATS Program is to provide the conceptual design and product development plan for an ultra-high efficiency, environmentally superior and cost-competitive industrial gas turbine system to be commercialized in the year 2000. During the period covered by this report, Solar has completed three of eight program tasks and has submitted topical reports. These three tasks included a Project Plan submission of information required by NEPA, and the selection of a Gas-Fueled Advanced Turbine System (GFATS). In the latest of the three tasks, Solar's Engineering team identified an intercooled and recuperated (ICR) gas turbine as the eventual outcome of DOE's ATS program coupled with Solar's internal New Product Introduction (NPI) program. This machine, designated ''ATS50'' will operate at a thermal efficiency (turbine shaft power/fuel LHV) of 50 percent, will emit less than 10 parts per million of NOx and will reduce the cost of electricity by 10 percent. It will also demonstrate levels of reliability, availability, maintainability, and durability (RAMD) equal to or better than those of today's gas turbine systems. Current activity is concentrated in three of the remaining five tasks a Market Study, GFATS System Definition and Analysis, and the Design and Test of Critical Components.

Energy Research Abstracts

Energy Research Abstracts PDF Author:
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ISBN:
Category : Power resources
Languages : en
Pages : 508

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Advanced Turbine Systems Program -- Conceptual Design and Product Development. Final Report

Advanced Turbine Systems Program -- Conceptual Design and Product Development. Final Report PDF Author:
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ISBN:
Category :
Languages : en
Pages : 99

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Book Description
This Final Technical Report presents the accomplishments on Phase 2 of the Advanced Turbine Systems (ATS). The ATS is an advanced, natural gas fired gas turbine system that will represent a major advance on currently available industrial gas turbines in the size range of 1--20 MW. This report covers a market-driven development. The Market Survey reported in Section 5 identified the customer's performance needs. This market survey used analyses performed by Solar turbine Incorporated backed up by the analyses done by two consultants, Research Decision Consultants (RDC) and Onsite Energy Corporation (Onsite). This back-up was important because it is the belief of all parties that growth of the ATS will depend both on continued participation in Solar's traditional oil and gas market but to a major extent on a new market. This new market is distributed electrical power generation. Difficult decisions have had to be made to meet the different demands of the two markets. Available resources, reasonable development schedules, avoidance of schedule or technology failures, probable acceptance by the marketplace, plus product cost, performance and environmental friendliness are a few of the complex factors influencing the selection of the Gas Fired Advanced Turbine System described in Section 3. Section 4 entitled ''Conversion to Coal'' was a task which addresses the possibility of a future interruption to an economic supply of natural gas. System definition and analysis is covered in Section 6. Two major objectives were met by this work. The first was identification of those critical technologies that can support overall attainment of the program goals. Separate technology or component programs were begun to identify and parameterize these technologies and are described in Section 7. The second objective was to prepare parametric analyses to assess performance sensitivity to operating variables and to select design approaches to meet the overall program goals.

Advanced Turbine Systems Conceptual Design and Product Development

Advanced Turbine Systems Conceptual Design and Product Development PDF Author:
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ISBN:
Category :
Languages : en
Pages : 7

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Book Description
This report details progress made for the following tasks: project plan, NEPA report, GFATS selection, conversion to coal, and replanned tasks.

Advanced Turbine Systems Program, Conceptual Design and Product Development. Task 6, System Definition and Analysis

Advanced Turbine Systems Program, Conceptual Design and Product Development. Task 6, System Definition and Analysis PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 56

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Book Description
The strategy of the ATS program is to develop a new baseline for industrial gas turbine systems for the 21st century, meeting the buying criteria of industrial gas turbine end users, and having growth potential. These criteria guided the Solar ATS Team in selecting the system definition described in this Topical Report. The key to selecting the ATS system definition was meeting or exceeding each technical goal without negatively impacting other commercial goals. Among the most crucial goals are the buying criteria of the industrial gas turbine market. Solar started by preliminarily considering several cycles with the potential to meet ATS program goals. These candidates were initially narrowed based on a qualitative assessment of several factors such as the potential for meeting program goals and for future growth; the probability of successful demonstration within the program's schedule and expected level of funding; and the appropriateness of the cycle in light of end users' buying criteria. A first level Quality Function Deployment (QFD) analysis then translated customer needs into functional requirements, and ensured favorable interaction between concept features. Based on this analysis, Solar selected a recuperated cycle as the best approach to fulfilling both D.O.E. and Solar marketing goals. This report details the design and analysis of the selected engine concept, and explains how advanced features of system components achieve program goals. Estimates of cost, performance, emissions and RAMD (reliability, availability, maintainability, durability) are also documented in this report.

Advanced Turbine Systems Program Conceptual Design and Product Development. Topical Report, April 1995

Advanced Turbine Systems Program Conceptual Design and Product Development. Topical Report, April 1995 PDF Author:
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ISBN:
Category :
Languages : en
Pages :

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Acid Precipitation

Acid Precipitation PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 500

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