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Конечная термодинамика×Парокомпрессионный цикл×
ОбластьТермодинамикаТермодинамика
СемействоProcess / pipelineProcess / pipeline
Год появления19961834
Автор методаAdrian BejanJacob Perkins
ТипThermodynamic optimizationThermodynamic cycle
Основополагающий источникBejan, A. (1996). Entropy Generation Minimization. CRC Press. ISBN: 978-0849394515Stoecker, W. F., Jones, J. W., & Sunnam, B. A. (1998). Refrigeration and Air Conditioning (2nd ed.). McGraw-Hill. ISBN: 978-0070613638
Другие названияFTT, irreversible thermodynamicsrefrigeration cycle, heat pump cycle
Связанные33
СводкаFinite-Time Thermodynamics (FTT) relaxes the classical assumption that thermodynamic processes occur reversibly (infinitely slowly). Instead, it analyzes real thermal systems operating at finite rates with irreversibilities. FTT reveals fundamental trade-offs: to complete a process quickly requires accepting large irreversibilities and low efficiency, while slow operation achieves high efficiency but requires impractical time and cost.The Vapor Compression Cycle is the fundamental thermodynamic cycle for refrigeration systems and heat pumps. It describes how mechanical work is used to transfer heat from a cold space (evaporator) to a warm space (condenser), operating against the natural temperature gradient. The cycle consists of four processes: isentropic compression, isobaric condensation, isenthalpic throttling, and isobaric evaporation.
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ScholarGateСравнение методов: Finite-Time Thermodynamics · Vapor Compression Cycle. Получено 2026-06-20 из https://scholargate.app/ru/compare