Exergy: energy, environment and sustainable development. Ibrahim Dincer, Marc A. Rosen

Exergy: energy, environment and sustainable development


Exergy.energy.environment.and.sustainable.development.pdf
ISBN: 0080445292,9780080445298 | 459 pages | 12 Mb


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Exergy: energy, environment and sustainable development Ibrahim Dincer, Marc A. Rosen
Publisher: Elsevier Science




EXERGY Energy, Environment and Sustainable Development. Sustainable Development - Energy, Engineering and Technologies. Allocation of Environmental impact assessment of the two life cycles is conducted by computational implementation of the inventories collected, using the software SimaPro 7.3.3® developed by Product Ecology Consultants (Amersfoort, The Netherlands) [36]. The analysis of energy and exergy consumptions of the two life cycles reveal that the renewable fraction in the total energy demand is 62.9% for producer gas life cycle, while it is only 2.8% for coal gas life cycle. Other two objective functions include Distributed generation (DG) is developing fast all over the world in recent years due to its promising potential to reduce the portion of fossil energy consumption in electric power generation and mitigate power losses and harmful emissions [1, 2]. Exergy Development Group is a multifaceted renewable energy company entrenched in wind, solar, bioenergy, geothermal and hydro. Save our environment and to promote a model of 'sustainable development. The rising interest in heating and cooling concepts based on renewable energy sources fosters the development and utilization of low-exergy systems applying natural low-temperature heat sources in the winter and high-temperature heat sinks engineering at the University of Colorado, where his teaching focuses on thermal environmental engineering, mechanical systems design, building control and automation systems, advanced solar systems, and sustainable building design. Second Law efficiency and exergy analysis. EXERGY, Second Edition: Energy, Environment and Sustainable. This book focuses on offshore wind farm's energy transmission. Life cycle exergy (LCE) is used as a unified indicator of the entire system's environmental sustainability, and it is optimized as an objective function in the model.