ScholarGate
Assistent

Sammenlign metoder

Gennemgå dine valgte metoder side om side; rækker, der afviger, er fremhævet.

Exergo-miljøanalyse×Udviklet energiomkostning×Rankine-kredsløbet×
FagområdeTermodynamikTermodynamikTermodynamik
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Oprindelsesår200920091859
OphavspersonGoran Tsatsaronis and Lucía MeyerLazardWilliam John Macquorn Rankine
TypeLife cycle and environmental analysisCost comparison frameworkThermodynamic cycle
Oprindelig kildeMeyer, L., Tsatsaronis, G., Buchgeister, J., & Schebek, L. (2009). Exergoenvironmental analysis for evaluation of the environmental impact of energy conversion processes. Energy, 34(1), 75-89. link ↗Lazard. (2023). Levelized Cost of Energy Analysis (v17.0). Lazard Ltd. link ↗Smith, J. M., Van Ness, H. C., & Abbott, M. M. (2005). Introduction to Chemical Engineering Thermodynamics (7th ed.). McGraw-Hill. ISBN: 978-0071247009
Aliasserenvironmental exergy costing, exergy-based LCALCOE, levelized cost analysisClausius-Rankine cycle, steam cycle, vapor power cycle
Relaterede333
ResuméExergoenvironmental analysis extends exergy-based methods to quantify and allocate environmental impacts of thermal systems. It assigns environmental costs to exergy streams based on upstream lifecycle impacts, revealing which components contribute most significantly to environmental burdens. This enables engineers to design sustainable energy systems by optimizing the trade-off between thermodynamic and environmental performance.Levelized Cost of Energy (LCOE) is a standardized metric that spreads the total lifecycle cost of an energy project over its lifetime energy output. It enables fair comparison of electricity generation technologies with different capital structures, operating costs, and lifetimes. LCOE is widely used for technology evaluation, investment decisions, and energy policy analysis.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.
ScholarGateDatasæt
  1. v1
  2. 2 Kilder
  3. PUBLISHED
  1. v1
  2. 2 Kilder
  3. PUBLISHED
  1. v1
  2. 2 Kilder
  3. PUBLISHED

Gå til søgning Hent slides

ScholarGateSammenlign metoder: Exergoenvironmental Analysis · Levelized Cost of Energy · Rankine Cycle. Hentet 2026-06-20 fra https://scholargate.app/da/compare