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Principles of Solar Engineering

Principles of Solar Engineering

Principles of Solar Engineering Fourth Edition addresses the need for solar resource assessment and highlights improvements and advancements involving photovoltaics and solar thermal technologies grid power and energy storage. With updates made to every chapter this edition discusses new technologies in photovoltaics such as organic dye-sensitized and perovskite solar cells and the design of solar systems and power plants. It also features battery energy storage for distributed and bulk storage and electrical integration with the main solar systems. In addition the book includes the latest advancements in concentrating solar power plants such as supercritical CO2 cycle. Readers will benefit from discussions of the economics of the solar energy systems which apply to all the systems covered in the subsequent chapters. Nine Appendices are available for download by all readers. Features: Discusses new forecasting models in solar radiation that are important to the economics and bankability of large solar energy systems such as power plants. Includes expanded coverage of high temperature thermal storage for Concentrating Solar Thermal Power (CSP) including thermal energy transport using heat exchangers. Features a new chapter on solar seawater desalination. Includes new and additional end-of-chapter example problems and exercises. A Solutions Manual will be available for instructors. The book is intended for senior undergraduate and graduate engineering students taking Energy Engineering and Solar Energy courses.

GBP 130.00
1

Solar Energy Pocket Reference

Next-Generation Solar Cells Principles and Materials

Grid Integration of Solar Photovoltaic Systems

Solar Power and Energy Storage Systems

GBP 116.00
1

Wind and Solar Power Systems Design Analysis and Operation

The Physics of Solar Cells Perovskites Organics and Photovoltaic Fundamentals

Lithium-Ion Batteries and Solar Cells Physical Chemical and Materials Properties

Passive Solar Architecture Pocket Reference

Physics of the Invisible Sun Instrumentation Observations and Inferences

Physics of the Invisible Sun Instrumentation Observations and Inferences

Physics of the invisible Sun: Instrumentation Observations and Inferences provides a new updated perspectives of the dramatic developments in solar physics mainly after the advent of the space era. It focusses on the instrumentation exploiting the invisible windows of the electromagnetic spectrum for observing the outer fainter layers of the Sun. It emphasizes on the several technical and observational challenges and proceeds to discuss the discoveries related to energetic phenomena occurring in the transition region and corona. The book begins with giving a brief glimpse of the historical developments during the pre- and post-telescopic periods of visible and spectroscopic techniques ground-based optical and radio observing sites. Various types of telescopes and back-end instrumentation are presented based on photometry spectroscopy and polarimetry using the Zeeman and Hanle effects for measurement of magnetic fields and Doppler effect for radial velocity measurements. The book discusses theoretical and observational inferences based on detection of solar neutrinos and helioseismology as the probes of the hidden solar interior and tests of solar standard models. The characteristic properties and observational signatures of global solar p- and g-oscillations modes developments in local helioseismology and asteroseismology are discussed. The role of the solar magnetic field and differential rotation in the activity and magnetic cycles prediction methodologies and dynamo models are described. Observing the Sun in IR at the longer and the UV EUV XUV X-rays and gamma-rays at the shorter wavelengths are covered in detail. Observational challenges at each of these wavelengths are presented followed by the instrumentation for detection and imaging that have resulted in enhancing the understanding of various solar transient phenomena such as flares and CMEs. The outer most corona is described as a dynamic expanding component of the Sun from the theoretical and observational perspectives of the solar wind. It then discusses the topics of the Interplanetary magnetic field slow and fast solar wind interaction with magnetised and non-magnetised objects of the solar system the space weather and the physics of the heliosphere. The chapter on the future directions in solar physics presents a brief overview of the new major facilities in various observing windows and the future possibilities of observing the Sun from ground and vantage locations in space. Features: Systematic overview of the developments in instrumentation observational challenges and inferences derived from ground-based and space-borne solar projects. Advances in the understanding about the solar interior from neutrinos and helioseismology. Recent research results and future directions from ground- and space-based observations. This book may serve as a reference book for scientific researchers interested in multi-wavelength instrumentation and observational aspects of solar physics. It may also be used as a textbook for a graduate-level course. | Physics of the Invisible Sun Instrumentation Observations and Inferences

GBP 130.00
1

Optoelectronics and Spintronics in Smart Thin Films

Thermal Energy Applications Innovations and Future Directions

Molecular Spectroscopy

Hydrogen: Its Technology and Implication Production Technology - Volume I

The Science of Lithium

Carbon-Neutral Fuels and Energy Carriers

Carbon-Neutral Fuels and Energy Carriers

Concerns over an unstable energy supply and the adverse environmental impact of carbonaceous fuels have triggered considerable efforts worldwide to find carbon-free or low-carbon alternatives to conventional fossil fuels. Carbon-Neutral Fuels and Energy Carriers emphasizes the vital role of carbon-neutral energy sources transportation fuels and associated technologies for establishing a sustainable energy future. Each chapter draws on the insight of world-renowned experts in such diverse fields as photochemistry and electrochemistry solar and nuclear energy biofuels and synthetic fuels carbon sequestration and alternative fuel vehicles. After an introductory chapter on different energy options in a carbon-constrained world and proposed measures to stabilize atmospheric CO2 the book analyzes the advantages and challenges facing the introduction of hydrogen fuel to the marketplace. It then examines the role of nuclear power in the production of carbon-free energy and fuels as well as the efficient use and storage of renewable energy resources emphasizing the production of solar fuels from water and CO2. The book also discusses different aspects of bioenergy and biofuels production and use and the potential role of bio-inspired energy systems and industrial processes. The final chapters present a thorough overview and analysis of state-of-the-art fossil fuel decarbonization technologies and clean transportation options. This authoritative work provides the information needed to make more informed choices regarding available clean energy and fuel alternatives. It helps readers to better understand the interconnection between energy and the environment as well as the potential impact of human activities on climate.

GBP 94.99
1

Dielectric Materials for Energy Storage and Energy Harvesting Devices

Nanomaterials for Sustainable Energy Applications

Power Plant Engineering

Power Plant Engineering

Our lives and the functioning of modern societies are intimately intertwined with electricity consumption. We owe our quality of life to electricity. However the electricity generation industry is partly responsible for some of the most pressing challenges we currently face including climate change and the pollution of natural environments energy inequality and energy insecurity. Maintaining our standard of living while addressing these problems is the ultimate challenge for the future of humanity. The objective of this book is to equip engineering and science students and professionals to tackle this task. Written by an expert with over 25 years of combined academic and industrial experience in the field this comprehensive textbook covers both fossil fuels and renewable power generation technologies. For each topic fundamental principles historical backgrounds and state-of-the-art technologies are covered. Conventional power production technologies steam power plants gas turbines and combined cycle power plants are presented. For steam power plants the historical background thermodynamic principles steam generators combustion systems emission reduction technologies steam turbines condensate-feedwater systems and cooling systems are covered in separate chapters. Similarly the historical background and thermodynamic principles of gas turbines along with comprehensive discussions on compressors combustors and turbines are presented and then followed with combined cycle power plants. The second half of the book deals with renewable energy sources including solar photovoltaic systems solar thermal power plants wind turbines ocean energy systems and geothermal power plants. For each energy source the available energy and its variations historical background operational principles basic calculations current and future technologies and environmental impacts are presented. Finally energy storage systems as required technologies to address the intermittent nature of renewable energy sources are covered. While the book has been written with the needs of undergraduate and graduate college students in mind professionals interested in widening their understanding of the field can also benefit from it. | Power Plant Engineering

GBP 130.00
1

Flexible and Stretchable Electronics Materials Design and Devices

Vanadium Dioxide-Based Thermochromic Smart Windows

Power Electronics Drives and Advanced Applications

Energy from Waste Production and Storage

Luminescent Metal Oxides Materials to Technologies