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Exergetic Energetic And Environmental Dimensions 1st Edition Ibrahim Dincer Editor

  • SKU: BELL-50030586
Exergetic Energetic And Environmental Dimensions 1st Edition Ibrahim Dincer Editor
$ 31.00 $ 45.00 (-31%)

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Exergetic Energetic And Environmental Dimensions 1st Edition Ibrahim Dincer Editor instant download after payment.

Publisher: Academic Press
File Extension: PDF
File size: 24.48 MB
Pages: 1111
Author: Ibrahim Dincer (Editor), Can Ozgur Colpan (Editor), Onder Kizilkan (Editor)
ISBN: 9780128137345, 0128137347
Language: English
Year: 2018
Edition: 1

Product desciption

Exergetic Energetic And Environmental Dimensions 1st Edition Ibrahim Dincer Editor by Ibrahim Dincer (editor), Can Ozgur Colpan (editor), Onder Kizilkan (editor) 9780128137345, 0128137347 instant download after payment.

This edited book looks at recent studies on interdisciplinary research related to exergy, energy, and the environment. This topic is of prime significance – there is a strong need for practical solutions through better design, analysis, and assessment in order to achieve better efficiency, environment and sustainability. Exergetic, Energetic, and Environmental Dimensions covers a number of topics ranging from thermodynamic optimization of energy systems to the environmental impact assessment and clean energy, offering readers a comprehensive reference on analysis, modeling, development, experimental investigation, and improvement of many micro to macro systems and applications, ranging from basic to advanced categories. Its comprehensive content includes: Comprehensive coverage of development of systems considering exergy, energy, and environmental issues, along with the most up-to-date information in the area, plus recent developments New developments in the area of exergy, including recent debate involving the shaping of future directions and priorities for a better environment, sustainable development and energy security Provides a number of illustrative examples, practical applications, and case studies.

Dr. Ibrahim Dincer is professor of Mechanical Engineering at the Ontario Tech. University and visiting professor at Yildiz Technical University. He has authored numerous books and book chapters, and many refereed journal and conference papers. He has chaired many national and international conferences, symposia, workshops, and technical meetings. He has also delivered many plenary, keynote and invited lectures. He is an active member of various international scientific organizations and societies, and serves as editor in chief, associate editor, regional editor, and editorial board member for various prestigious international journals. He is a recipient of several research, teaching and service awards, including the Premier?s Research Excellence Award in Ontario, Canada. For the past seven years in a row he has been recognized by Thomson Reuters as one of The Most Influential Scientific Minds in Engineering and one of the Most Highly Cited Researchers.

Can Ozgur Colpan is an full Professor in the Department of Mechanical Engineering of Dokuz Eylul University in Izmir, Turkey. His research areas are organic Rankine cycles, heat exchanger design and modelling, thermodynamic modelling of integrated energy systems and renewable energy systems (including geothermal power plants), multiphysics modelling of fuel cells, and manufacturing and characterisation of fuel cells.

Onder Kizilkan received his PhD in Mechanical Engineering from Suleyman Demirel University, Turkey in 2008. After a sixteen-year experience at Suleymen Demirel University including research assistantship, he was promoted as full Professor in the Mechanical Engineering Department of Isparta University of Applied Sciences in 2019. He is currently a Visiting Professor in the Energy Conversion Research Center at Doshisha University in Japan, focusing on solar assisted supercritical ORC technology. He has also worked as visiting associated professor at University of Ontario Institute of Technology in Canada for one year in 2011. Dr. Kizilkan’s research interests are energy and exergy analyses of thermal systems, solar energy, energy storage systems and refrigeration.

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