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Hybrid Technologies for Power Generation

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2021
ISBN13: 9780128237939
Rubricering
Elsevier Science e druk, 2021 9780128237939
Onderdeel van serie Hybrid Energy Systems
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Samenvatting

Hybrid Technologies for Power Generation addresses the topics related to hybrid technologies by coupling conventional thermal engines with novel technologies, including fuel cells, batteries, thermal storage and electrolysis, and reporting on the most recent advances concerning transport and stationary applications. Potential operating schemes of hybrid power generation systems are covered, highlighting possible combinations of technology and guideline selection according to the energy demands of end-users. Going beyond state-of-the-art technological developments for processes, devices and systems, this book discusses the environmental impact and existing hurdles of moving from a single device to new approaches for efficient energy generation, transfer, conversion, high-density storage and consumption.

By describing the practical viability of novel devices coupled to conventional thermal devices, this book has a decisive impact in energy system research, supporting those in the energy research and engineering communities.

Specificaties

ISBN13:9780128237939
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Part One - Hybrid stationary systems<br>1 Stationary hybrid systems: Motivation policies and technical challenges<br>Sandip Deshmukh and Khalid Anwar<br>2 Design and performance analysis of off-grid hybrid renewable energy systems <br>Mudathir Funsho Akorede<br>3 Off-grid full renewable hybrid systems: Control strategies, optimization, and modeling<br>Rodolfo Dufo-López<br>4 Grid integrated non-renewable based hybrid systems: Control strategies, optimization, and modeling<br>Mohamad Issa, Miloud Rezkallah, Adrian Ilinca, and Hussein Ibrahim<br>5 Off-grid nonrenewable based hybrid systems: Architecture, design, demonstration, and study cases <br>Paul Arévalo, Antonio Cano, and Francisco Jurado<br>6 Power management strategy of PV-PEMFC-PEMEC hybrid systems integrated with a vanadium redox flow battery <br>Chacrit Lerdwithayaprasit, Prathak Jienkulsawad, Phuet Prasertcharoensuk, Yong-Song Chen, and Amornchai Arpornwichanop<br>7 Off-grid hybrid systems based on combined conventional and unconventional technologies: Design, analyses, and illustrative examples<br>Sevgi Erzen, Emin Açıkkalp, and Arif Hepbasli<br>8 Sustainable off-grid power supply for small settlements <br>Evangelos Tsiaras, Demetrios N. Papadopoulos, Constantinos N. Antonopoulos, Vagelis G. Papadakis, and  Frank A. Coutelieris<br>Part Two - Hybrid vehicles<br>9 Introduction on mobile hybrid systems: Motivations, environmental aspects, policies, and technical challenges <br>Toshihiko Nakata<br>10 Automotive hybrid electric systems: Design, modeling, and energy management <br>Laura Tribioli and Gino Bella<br>11 Heavy-duty hybrid transportation systems: Design, modeling, and energy management<br>M. Ceraolo and G. Lutzemberger<br>12 Heavy-duty hybrid transportation systems: Demonstration and case studies <br>Luca Pugi, Lorenzo Berzi, and Fernando Ortenzi<br>13 Energy system management for aeronautic and aerospace applications: Demonstration and study cases<br>Antonio Russo, Beniamino Guida, Giacomo Canciello, and Alberto Cavallo<br>14 Modeling hybrid energy systems for marine applications: Hybrid electric ships<br>N. Vahabzad, B. Mohammadi-Ivatloo, and A. Anvari-Moghaddam<br>15 Hybrid system for powering unmanned aerial vehicles: Demonstration and study cases <br>Xingbang Yang and Xuan Pei<br>16 Life cycle assessment of hybrid passenger electric vehicle <br>Daniele Candelaresi, Antonio Valente, Eleonora Bargiacchi, and Giuseppe Spazzafumo</p>
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