ASME PTC22 : 2014
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
View Superseded by
GAS TURBINES
Hardcopy , PDF
03-06-2023
English
16-07-2018
Notice
Foreword
Committee Roster
Correspondence With the PTC Committee
Section 1 - Object and Scope
Section 2 - Definitions and Descriptions of Terms
Section 3 - Guiding Principles
Section 4 - Instruments and Methods of Measurement
Section 5 - Computation of Results
Section 6 - Report of Results
Section 7 - Test Uncertainty
Mandatory Appendix
I - Determination of Gas Turbine Exhaust Energy, Flow, and
Temperature
Nonmandatory Appendices
A - Sample Calculations
B - PTC Uncertainty Estimates From ASTM Repeatability and
Reproducibility Data
C - References
Gives the testing of gas turbines supplied with gaseous or liquid fuels (or solid fuels converted to liquid or gas prior to entrance to the gas turbine).
DocumentType |
Standard
|
ISBN |
9780791869383
|
Pages |
108
|
PublisherName |
American Society of Mechanical Engineers
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
This Code provides for the testing of gas turbines supplied with gaseous or liquid fuels (or solid fuelsconverted to liquid or gas prior to entrance to the gasturbine). Tests of gas turbines with emission controland/or power augmentation devices, such as injectionfluids and inlet-conditioning, are included. It may beapplied to gas turbines in combined cycle plants or with other heat recovery systems. This Code provides for comparative (back-to-back) tests designed to verify performance differentials of the gas turbine, primarily for testing before and after modifications, uprates, or overhauls. Improvements to achieve additional performance may include application ofadvanced gas path components, modification of combustion system, control scheme changes, increased mass flow, and changes to the inlet and exhaust systems of the gas turbine. The Code does not apply to the following: (a) gas turbines where useful output is other than power to drive a generator or other load device. (b) environmental compliance testing for gas turbines for stack emissions and sound levels. Procedures developed by regulatory agencies, ANSI, other ASME PTC Committees, or other equivalent standard, are available to govern the conduct of such testing. (c) overall plant power and thermal efficiency of gas turbine combined cycle and cogeneration facilities. Refer to ASME PTC 46 or equivalent standard. (d) absolute or comparative performance of specific components of the gas turbine. (e) performance of auxiliary systems of the gas turbine power plant, such as inlet cooling devices, fuel gas booster compressors, etc. (f) operational demonstration tests and reliability testing. (g) itemized performance changes that are the result of multiple actions, such as modifications, repairs, or cleanings (i.e., compressor, inlet air filtration systems, etc.).
PD ISO/TR 27912:2016 | Carbon dioxide capture. Carbon dioxide capture systems, technologies and processes |
BS ISO 19859:2016 | Gas turbine applications. Requirements for power generation |
BS ISO 13380:2002 | Condition monitoring and diagnostics of machines. General guidelines on using performance parameters |
UNI ISO 13380 : 2010 | CONDITION MONITORING AND DIAGNOSTICS OF MACHINES - GENERAL GUIDELINES ON USING PERFORMANCE PARAMETERS |
ISO 19859:2016 | Gas turbine applications Requirements for power generation |
ISO 17359:2018 | Condition monitoring and diagnostics of machines — General guidelines |
DIN ISO 17359:2011-09 | CONDITION MONITORING AND DIAGNOSTICS OF MACHINES - GENERAL GUIDELINES |
API 616 : 2011 | GAS TURBINES FOR THE PETROLEUM, CHEMICAL, AND GAS INDUSTRY SERVICES |
ISO/TR 27912:2016 | Carbon dioxide capture Carbon dioxide capture systems, technologies and processes |
ISO 13380:2002 | Condition monitoring and diagnostics of machines General guidelines on using performance parameters |
ASHRAE HDBK REFRIGERATION : 2014 | ASHRAE HANDBOOK - REFRIGERATION |
ASME PTC4.4 : 2008 : R2013 | GAS TURBINE HEAT RECOVERY STEAM GENERATORS |
API 616 REDLINE : 2011 | GAS TURBINES FOR THE PETROLEUM, CHEMICAL, AND GAS INDUSTRY SERVICES |
ASME PTC19.1 : 2013 | TEST UNCERTAINTY |
API 11PGT : 1992 | RECOMMENDED PRACTICE FOR PACKAGED COMBUSTION GAS TURBINES |
ASME PTC46 : 2015 | PERFORMANCE TEST CODES - OVERALL PLANT PERFORMANCE |
ASME PTC4.4 : 2008 | GAS TURBINE HEAT RECOVERY STEAM GENERATORS |
GPA 2166 : 2005(R2017) | OBTAINING NATURAL GAS SAMPLES FOR ANALYSIS BY GAS CHROMATOGRAPHY |
ASTM E 177 : 2014 : REDLINE | Standard Practice for Use of the Terms Precision and Bias in ASTM Test Methods |
ASME PTC19.1 : 2013 | TEST UNCERTAINTY |
ASME PTC19.6 : 1955 | PERFORMANCE TEST CODES - PT 6 - ELECTRICAL MEASUREMENTS IN POWER CIRCUITS |
AGA XQ9222 : LATEST | NATURAL GAS DENSITY AND COMPRESSIBILITY FACTOR PROGRAM: SOURCE CODE, BASED ON AGA REPORT NO. 8 |
ASME PTC1 : 2015 | General Instructions (PTC 1 - 2015)<br> |
ASME STP-TS-012-1 : 2011 | THERMOPHYSICAL PROPERTIES OF WORKING GASES USED IN GAS TURBINE APPLICATIONS |
ASME PTC19.3 : 1974(R2004) | PERFORMANCE TEST CODE - PART 3: TEMPERATURE MEASUREMENT |
ASHRAE HDBK FUNDAMENTALS : 2013 | ASHRAE HANDBOOK - FUNDAMENTALS |
IEEE C57.12.90-2010 | IEEE Standard Test Code for Liquid-Immersed Distribution, Power, and Regulating Transformers |
ISO/TS 21748:2004 | Guidance for the use of repeatability, reproducibility and trueness estimates in measurement uncertainty estimation |
GPA 2145 : 2016 | TABLE OF PHYSICAL PROPERTIES FOR HYDROCARBONS AND OTHER COMPOUNDS OF INTEREST TO NATURAL GAS AND NATURAL GAS LIQUIDS INDUSTRIES |
ASME PTC46 : 2015 | PERFORMANCE TEST CODES - OVERALL PLANT PERFORMANCE |
ASTM D 1480 : 2015 : REDLINE | Standard Test Method for Density and Relative Density (Specific Gravity) of Viscous Materials by Bingham Pycnometer |
ASTM E 1137 : 1997 | Standard Specification for Industrial Platinum Resistance Thermometers |
ASTM D 1945 : 2014 : REDLINE | Standard Test Method for Analysis of Natural Gas by Gas Chromatography |
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