ASME PTC 6.2 Steam Turbines in Combined Cycles
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ASME International
Steam Turbines in Combined Cycles
N PTC 6.2
Annotation
This Code may be used for testing steam turbines in combined cycles with or without supplementary firing and in cogeneration applications. Within these categories of combined and cogeneration cycles, this Code is applicable to condensing and noncondensing steam turbines, to reheat and nonreheat steam turbines, and to induction/extraction steam turbines. The variety of cycles presents challenges in writing a code that addresses all issues encountered for all cycle configurations. ASME PTC 6 is the appropriate code for testing steam turbines in nuclear and fossil-fired regenerative feedwater heater cycles. This Code is applicable only to turbines in cycles in which steam is the working fluid.
This Code provides procedures for testing and calculating turbine-generator output performance corrected to reference conditions as a measure of overall turbine performance. This Code contains rules and procedures for the conduct and reporting of steam turbine testing, including requirements for pretest arrangements, testing techniques, instrumentation, methods of measurement, and methods for calculating test results and uncertainty.
Автоматический перевод:
Паровые турбины в комбинированных циклах
Этот кодекс может использоваться для тестирования паровых турбин в комбинированных циклах с или без дополнительного увольнения и в приложениях когенерации. В этих категориях объединенных и циклов когенерации, этот кодекс применим к сжатию и несжатию паровых турбин, чтобы подогреть и неподогреть паровые турбины, и к паровым турбинам индукции/экстракции. Множество циклов представляет собой проблемы в письменной форме код, который решает все проблемы, с которыми встречаются для всех конфигураций цикла. ASME PTC 6 является соответствующим кодом для тестирования паровых турбин в ядерных и запущенных окаменелостью регенеративных циклах нагревателя питательной воды. Этот кодекс применим только к турбинам в циклах, в которых пар является рабочей жидкостью.



