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Performance Acceptance Test for a Condensing Regenerative Cycle Turbine Generator Drive Superheated Inlet With Condensate Heaters Out of Service
This paper discusses the test procedure that follows is intended to convey Dresser-Rand's position to customers in regard to field performance acceptance testing. The instrumentation required for the Dresser-Rand test is less costly and fewer component readings are required as compared to a PTC-6 high accuracy performance acceptance test. This...
Performance Acceptance Test for a Controlled Extraction Condensing Turbine Generator Drive Superheated Inlet
The following document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of extraction condensing regenerative cycles. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC-6...
Performance Acceptance Test for a Non-Condensing Turbine Generator Drive Superheated Inlet
This document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of non-condensing turbines. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC-6 test. In this...
Performance Acceptance Test for a Condensing Turbine Generator Drive Superheated Inlet
This paper discusses the test procedure that follows is intended to convey Dresser-Rand's position to customers in regard to field performance acceptance testing. The instrumentation required for the Dresser-Rand test is less costly and fewer component readings are required as compared to a PTC-6 high accuracy performance acceptance test. This...
Performance Acceptance Test for a Non-Condensing Turbine (Enthalpy Drop Method) Generator Drive Superheated Inlet and Exhaust
The following document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for a high percentage of non-condensing turbines. The instrumentation required for this test is much less costly, as compared to a full ASME PTC-6 enthalpy drop acceptance test. In this simplified test, only the quantities...
Advances in Tilting Pad Journal Bearing Design
This paper has been both experimental and theoretical, and has ranged from evaluation of steady state performance to dynamic influence on rotor response. With the continuing drive for further increase in operating speed, the application of this type of bearing is reaching a limit whereby, under certain conditions, steady state...
Regenerative Heat Transfer in Reciprocating Compressors
Suction gas heating is known to be a significant factor leading to volumetric efficiency loss in a reciprocating compressor. Regenerative heating, or heating of the gas in the absence of any heat source, is considered to be one of the primary contributors to suction gas heating. This paper gives results...
Performance Acceptance Test for an Uncontrolled Extraction Condensing Turbine Mechanical Drive Superheated Inlet
This document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of uncontrolled extraction condensing turbines. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC-6 test....
Performance Acceptance Test for a Controlled Extraction Condensing Regenerative Cycle Turbine Generator Drive Superheated Inlet
The following document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of extraction condensing regenerative cycles. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC-6...
Performance Acceptance Test for a Double Controlled Extraction Condensing Turbine Generator Drive Superheated Inlet
The following document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of extraction condensing turbines. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC- 6...
Performance Acceptance Testing of Steam Turbines
This paper describes the test details that should be considered early in the plant planning process if a formal acceptance test is being considered. Dresser-Rand ST Technology Reports show the various measurements and instrumentation required for each specific thermodynamic cycle. Performance Test Codes and reports published by ASME are also...
Performance Acceptance Test for a Non-Condensing Turbine Mechanical Drive Superheated Inlet
This document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of non-condensing turbines. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC-6 test. In this...
Performance Acceptance Test for a Non-Condensing Turbine (Enthalpy Drop Method) Mechanical Drive Superheated Inlet and Exhaust
This document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for a high percentage of non-condensing turbines. The instrumentation required for this test is much less costly, as compared to a full ASME PTC-6 enthalpy drop acceptance test. In this simplified test , only the quantities...
Performance Acceptance Test for a Condensing Turbine Mechanical Drive Superheated Inlet
The following document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of condensing turbines. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC-6 test. In...
Performance Acceptance Test for a Controlled Extraction Condensing Turbine Mechanical Drive Superheated Inlet
The following document is a simplified ASME performance test procedure which Dresser-Rand believes is satisfactory for the majority of extraction condensing turbines. The instrumentation required for this test is much less costly, and fewer component readings are needed to obtain good results as compared to a full ASME PTC- 6...
Additional Resources
Dresser-Rand Ranked #25 in Forbes Top 100
HOUSTON, Oct. 1 /PRNewswire-FirstCall/ -- - Dresser-Rand , a leading supplier of energy conversion solutions, is pleased to announce its rank of #25 in Forbes' "100 Best Mid-Cap Stocks in America." Dresser-Rand was also among Forbes' "Top-Ten in the Mid-Cap: Best Earnings Growth." This is Forbes' fourth...
Dresser-Rand Updates Outlook for the Third Quarter
Reaffirms Full Year Guidance before Hurricanes and Painted Post Impacts HOUSTON, Sept. 30 /PRNewswire-FirstCall/ -- Dresser-Rand Group Inc. ("Dresser-Rand") , reported yesterday an accident at its Painted Post facility in New York State. This incident and the impact from Hurricanes Ike and Gustav on the Company's...
Explosion Injures Two at Dresser-Rand's Painted Post Facility
HOUSTON, Sept. 29 /PRNewswire-FirstCall/ -- Dresser-Rand Group Inc. ("Dresser-Rand" or the "Company") reported that two of its employees were injured today at the Company's reciprocating compressor facility in Painted Post, New York. The injuries resulted from an explosion during a helium test of a cylinder, which is...
Nation's Largest Manufacturer of Kitchen Cutlery Helps Launch Challenger Learning Center in Local Community
OLEAN, N.Y. -- In keeping with its commitment to support the local community's educational initiatives, CUTCO Cutlery Corporation, the nation's largest manufacturer of high-end kitchen cutlery, is leading an important effort to bring a Challenger Center for Space Science Exploration (http://www.challenger.org) to the company's home base of Olean, New York....
Dresser-Rand acquires Peter Brotherhood
Dresser-Rand Group Inc., a global supplier of rotating equipment, announced that its UK subsidiary, Dresser-Rand Company Ltd., has completed the acquisition of certain assets of Peter Brotherhood Ltd., a specialist in the design and manufacture of steam turbines, reciprocating gas compressors, and gearboxes. The company's primary clients are in the...
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