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Group Theory for High Energy Physicists

High Temperature Air Combustion From Energy Conservation to Pollution Reduction

High Temperature Air Combustion From Energy Conservation to Pollution Reduction

Maximize efficiency and minimize pollution: the breakthrough technology of high temperature air combustion (HiTAC) holds the potential to overcome the limitations of conventional combustion and allow engineers to finally meet this long-standing imperative. Research has shown that HiTAC technology can provide simultaneous reduction of CO2 and nitric oxide emissions and reduce energy consumption for a specific process or requirement. High Temperature Air Combustion: From Energy Conservation to Pollution Reduction provides the first comprehensive exposition of the principles and practice of HiTAC. With a careful balance of theory and practice it reviews the historical background clearly describes HiTAC combustion phenomena and shows how to simulate and apply the technology for significant energy savings reduced equipment size and lower emissions. It offers design guidelines for high performance industrial furnaces presents field trials of practical furnaces and explores potential applications of HiTAC in other fields including the conversion of solid waste fuels to cleaner fuels stationary gas turbine engines internal combustion engines and other advanced energy-to-power conversion systems. Developed through an intensive research project sponsored by the Japanese government HiTAC now promises to revolutionize our paradigm for using all kinds of fossil alternative waste and derived fuels for energy conversion and utilization in industry. This book is your opportunity to understand its principles learn about the technology and begin to use it to the benefit of your application your company and the environment. | High Temperature Air Combustion From Energy Conservation to Pollution Reduction

GBP 59.99
1

Renewable Energy Integration with Building Energy Systems A Modelling Approach

Renewable Energy Integration with Building Energy Systems A Modelling Approach

Construction as an industry sector is responsible for around one-third of the total worldwide energy usage and about 20% of greenhouse gas emissions. The rise in the number of buildings and floor space area for residential and commercial purposes has imposed enormous pressure on existing energy sources. Implementations such as efficient usage of building energy systems design measures utilization of local energy resources energy storage and the use of renewable energy sources to meet electricity demands are currently under development and deployment for improving the energy performance index. However integrating all such measures and the development of nearly zero-energy and zero-emission buildings is yet to be explored. In this book the different control techniques and intelligent technologies used to improve the energy performance of buildings are illustrated. Every building energy control system has a two-fold objective for energy and comfort requirements to achieve a high comfort index (for thermal visual air quality humidity and various plug loads) and increase the energy performance index. The most significant aspect in the design of a building’s energy control system is modelling. All the components methodologies and processes involved in developing a renewable energy-driven building are covered in detail. This book is intended for graduates and professionals working towards the development of a sustainable built environment using renewable energy sources. | Renewable Energy Integration with Building Energy Systems A Modelling Approach

GBP 74.99
1

Energy Transition

Energy Modeling in Architectural Design

Materials for Energy

Energy Economics

Global Energy Market Trends

Large Energy Storage Systems Handbook

Large Energy Storage Systems Handbook

In the current push to convert to renewable sources of energy many issues raised years ago on the economics and the difficulties of siting energy storage are once again being raised today. When large amounts of wind solar and other renewable energy sources are added to existing electrical grids efficient and manageable energy storage becomes a crucial component to allowing a range of eco-friendly resources to play a significant role in our energy system. In order to fulfill our intended goal of diminishing dependence on non-renewable sources of energy and reducing our carbon footprint we must find a way to store and convert these novel resources into practical solutions. Based on the efforts of a University of Colorado team devoted to increasing the use of renewable energy production within the current electrical power grid Large Energy Storage Systems Handbook examines a number of ways that energy can be stored and converted back to electricity. Examining how to enhance renewable generation energy storage relative to economic and carbon impact this book discusses issues of reliability siting economics and efficiency. Chapters include the practicalities of energy storage generation and absorption of electrical power; the difficulties of intermittent generation; and the use of pumped and underground pumped hydroelectric energy storage. The book highlights the storage of compressed air battery energy solar thermal and natural gas sources of energy. Heavily referenced and easily accessible to policy makers developers and students alike this book provides contributions from those active in the field for coverage of many important topics. With this book as a foundation these pioneers can develop the capacity of power grids to handle high renewable energy generation penetration and provide a brighter future for generations to come.

GBP 74.99
1

Energy Conservation Guidebook Third Edition

Sustainability through Energy-Efficient Buildings

Renewable Energy Systems Fundamentals and Source Characteristics

Commonsense in Nuclear Energy

Energy or Extinction? The Case for Nuclear Energy

iURBAN Intelligent Urban Energy Tool

iURBAN Intelligent Urban Energy Tool

iURBAN: Intelligent Urban Energy Tool introduces an urban energy tool integrating different ICT energy management systems (both hardware and software) in two European cities providing useful data to a novel decision support system that makes available the necessary parameters for the generation and further operation of associated business models. The business models contribute at a global level to efficiently manage and distribute the energy produced and consumed at a local level (city or neighbourhood) incorporating behavioural aspects of the users into the software platform and in general prosumers. iURBAN integrates a smart Decision Support System (smartDSS) that collects real-time or near real-time data aggregates analyses and suggest actions of energy consumption and production from different buildings renewable energy production resources combined heat and power plants electric vehicles (EV) charge stations storage systems sensors and actuators. The consumption and production data is collected via a heterogeneous data communication protocols and networks. The iURBAN smartDSS through a Local Decision Support System allows the citizens to analyse the consumptions and productions that they are generating receive information about CO2 savings advises in demand response and the possibility to participate actively in the energy market. Whilst through a Centralised Decision Support System allow to utilities ESCOs municipalities or other authorised third parties to: Get a continuous snapshot of city energy consumption and productionManage energy consumption and productionForecasting of energy consumptionPlanning of new energy producers for the future needs of the cityVisualise analyse and take decisions of all the end points that are consuming or producing energy in a city level permitting them to forecast and planning renewable power generation available in the city. | iURBAN Intelligent Urban Energy Tool

GBP 64.99
1

Low Carbon Energy Supply Technologies and Systems

Water & Wastewater Infrastructure Energy Efficiency and Sustainability

Water & Wastewater Infrastructure Energy Efficiency and Sustainability

A critical aspect of sustainability associated with water and wastewater systems is to maintain and manage infrastructure in the most efficient and economical manner while complying with environmental regulations and keeping rates at acceptable levels. Given the high cost of fuel our growing population and the associated increase in energy needs it is important to address energy use and future energy availability for the treatment of the water we drink and the water we pollute. Water & Wastewater Infrastructure: Energy Efficiency and Sustainability addresses these issues detailing the processes that can assist facilities to become more energy efficient and providing guidance to ensure their sustainability. The text begins with brief descriptions of the water and wastewater treatment industries. It then describes some of the basics of energy and discusses what planning for a sustainable energy future in water and wastewater treatment plants entails. The author explores energy-saving options and provides case studies to demonstrate how some facilities have used equipment technology and operating strategies to save money and reduce their impact. The energy-efficient technologies include combined heat and power (CHP) gas turbines microturbines reciprocating engines steam turbines and fuel cells. The author also addresses biomass power and biogas. The section on sustainability and renewable energy covers hydropower solar power and wind power as well as energy conservation measures for treating wastewater. Nine appendices provide individual case studies that present evaluations of energy conservation measures results payback analysis and conclusions. This book addresses the challenges faced by water and wastewater treatment facilities by examining how they can operate in ways that provide economic and environmental benefits save money reduce environmental impact and lead to sustainability. | Water & Wastewater Infrastructure Energy Efficiency and Sustainability

GBP 59.99
1

Nanomaterials in Energy Devices

Electrochemical Energy Advanced Materials and Technologies

Electrochemical Energy Advanced Materials and Technologies

Electrochemical Energy: Advanced Materials and Technologies covers the development of advanced materials and technologies for electrochemical energy conversion and storage. The book was created by participants of the International Conference on Electrochemical Materials and Technologies for Clean Sustainable Energy (ICES-2013) held in Guangzhou China and incorporates select papers presented at the conference. More than 300 attendees from across the globe participated in ICES-2013 and gave presentations in six major themes: Fuel cells and hydrogen energy Lithium batteries and advanced secondary batteries Green energy for a clean environment Photo-Electrocatalysis Supercapacitors Electrochemical clean energy applications and markets Comprised of eight sections this book includes 25 chapters featuring highlights from the conference and covering every facet of synthesis characterization and performance evaluation of the advanced materials for electrochemical energy. It thoroughly describes electrochemical energy conversion and storage technologies such as batteries fuel cells supercapacitors hydrogen generation and their associated materials. The book contains a number of topics that include electrochemical processes materials components assembly and manufacturing and degradation mechanisms. It also addresses challenges related to cost and performance provides varying perspectives and emphasizes existing and emerging solutions. The result of a conference encouraging enhanced research collaboration among members of the electrochemical energy community Electrochemical Energy: Advanced Materials and Technologies is dedicated to the development of advanced materials and technologies for electrochemical energy conversion and storage and details the technologies current achievements and future directions in the field. | Electrochemical Energy Advanced Materials and Technologies

GBP 84.99
1

Solar Energy Application Economics and Public Perception

Data Science for Wind Energy

Introduction to Sustainable Energy Transformation

Hydrogen Energy and Vehicle Systems

International Solutions to Sustainable Energy Policies and Applications

Energy Economics Modeling and Empirical Analysis in China

Energy Economics Modeling and Empirical Analysis in China

Energy just like labor and capital is universally acknowledged to be the fundamental production factor and strategic resource of an industrial society. China’s sustained rapid economic growth has resulted in its ever-growing energy import dependency especially oil. Meanwhile world energy markets have fluctuated dramatically and international crude oil prices have risen sharply. These factors have combined to make national energy security a hot strategic issue for China’s government and society. Focusing on these issues Energy Economics: Modeling and Empirical Analysis in China includes analyzes of the scenarios of different policies. A comprehensive reference on China’s energy policy the book covers: Gross and structural features of China’s energy economyForecasting of China’s energy supply and demandFluctuations in the international oil market and China’s counter-measuresEnergy-environment problems and reduction in CO2 emissionsStrategic petroleum reserves and national energy securityEnergy technology progress and changeThe first volume of a series of China Energy Reports this book is a collection of the research results on energy strategy and policy issues investigated by the Center for Energy & Environmental Policy Research (CEEP) Institute of Policy and Management (IPM) and Chinese Academy of Sciences (CAS). It only analyzes the policies of the issue but also briefly discusses econometric models and methodologies data sources and pretreatment and present empirical result analyses and discussions and opportunities for further study. Exploring changes in the international and domestic energy-economy the book provides support for decision-makers and promotes the exchange of findings with energy policy research peers. | Energy Economics Modeling and Empirical Analysis in China

GBP 59.99
1