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ब्रेटन चक्र×मनोमिति विश्लेषण (Psychrometric Analysis)×रैंकिन चक्र (Rankine Cycle)×
क्षेत्रऊष्मागतिकीऊष्मागतिकीऊष्मागतिकी
परिवारProcess / pipelineProcess / pipelineProcess / pipeline
उद्भव वर्ष187319111859
प्रवर्तकGeorge BraytonR. E. CarrierWilliam John Macquorn Rankine
प्रकारThermodynamic cycleHumid air thermodynamic analysisThermodynamic cycle
मौलिक स्रोतMoran, M. J., Shapiro, H. N., Boettner, D. D., & Bailey, M. B. (2014). Fundamentals of Engineering Thermodynamics (8th ed.). Wiley. ISBN: 978-1118412947ASHRAE. (2021). Handbook-Fundamentals. American Society of Heating, Refrigerating and Air-Conditioning Engineers. link ↗Smith, J. M., Van Ness, H. C., & Abbott, M. M. (2005). Introduction to Chemical Engineering Thermodynamics (7th ed.). McGraw-Hill. ISBN: 978-0071247009
उपनामJoule cycle, gas turbine cyclepsychrometrics, humid air analysisClausius-Rankine cycle, steam cycle, vapor power cycle
संबंधित333
सारांशThe Brayton Cycle (also called Joule Cycle) describes the thermodynamic process in gas turbines and jet engines. It consists of four processes: isentropic compression in a compressor, isobaric combustion (heat addition), isentropic expansion in a turbine, and isobaric heat rejection. The Brayton Cycle is the foundation for analyzing aircraft propulsion, ground-based power generation, and simple-cycle gas turbine plants.Psychrometric analysis is the study of humid air (air-water vapor mixtures) and its properties. It is essential for designing and analyzing air conditioning, ventilation, and dehumidification systems. Psychrometric analysis relates dry-bulb temperature, wet-bulb temperature, dew point, relative humidity, and specific humidity through carefully constructed charts and correlations.The Rankine Cycle is the fundamental thermodynamic cycle for steam power plants. It describes how thermal energy from burning fuel or concentrated solar radiation is converted to mechanical work and ultimately electricity. The cycle consists of four processes: isobaric heat addition in the boiler, isentropic expansion through the turbine, isobaric heat rejection in the condenser, and isentropic compression by the pump.
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