Sustainable Cities and Society (SCS) publishes a wide range of original high quality papers covering fundamental and applied research, critical reviews and case studies. It focuses on research and multi-disciplinary work aiming to reduce the environmental and societal impact of future cities and covers topics including design, modelling, analytical tools, testing/experimental work, optimization, environmental assessment, new codes, regulations, policy, economics, monitoring, post occupancy evaluation and legislation related to sustainable cities. In addition to fundamental and applied papers, review articles on important developments will be included. Special issues devoted to international conferences and reviews of books and major reports will be published too.Key areas covered by SCS are:Energy (creating and securing sustainable energy supplies and improving the efficiency of power generation, transmission and use);Water (sustainable water management and water preservation/recycling);Air (management of air pollution, improvement of air quality and reduction of CO2 emissions from buildings and transport;) andThe Earth (preservation of raw materials, new construction materials and energy efficient design).Submissions welcome from engineers (mechanical, building services, civil, buildings, electrical, manufacturing and chemical), architects, planners, scientists (physicists and chemists), energy experts, social scientists, economists and policy makers. All submissions are subjected to peer review from leading experts in the field.Topics covered by SCS include:Monitoring and improving air quality in buildings and cities (e.g., healthy buildings and air quality management), use of alternative energy sources (e.g., solar energy, wind, bio mass/bio-gas, geothermal energy and hybrid sources), waste recycling in cities (reduce waste and recycle materials) and development of new construction materials for building applications and transport (e.g., high performance insulation materials).Distributed energy generation such as integration of micro-generation with building services and control of renewable energy devices, dynamic demand management: matching demand to supply of renewable resources, adaptation of buildings to climate change (thermal comfort, green retrofit-buildings and interdisciplinary research such as socio-technical and economics and post occupancy evaluation).Low/zero carbon construction such holistic approaches to design, energy modelling and green retrofit, dynamic demand and local energy storage, occupant behaviour, smart metering/monitors and intelligent control.Planning, regulations, legislation, certification, economics, policy, social and environmental impact related to sustainable and future cities.Decarbonised society and low/zero carbon community buildings and sustainable development.Design and decision tools for low impact buildings, green retrofit of buildings and modelling/optimization of the energy performance of new and existing buildings.City transport (e.g., harness of thermal energy from vehicle engines and innovative transport methods using personal rapid transit cars)Water harvesting and management (development of household appliances designed to minimise water use, water recycling and solar-powered desalination systems)
Sustainable computing is a rapidly expanding research area spanning the fields of computer science and engineering, electrical engineering as well as other engineering disciplines. The aim of Sustainable Computing: Informatics and Systems (SUSCOM) is to publish the myriad research findings related to energy-aware and thermal-aware management of computing resource. Equally important is a spectrum of related research issues such as applications of computing that can have ecological and societal impacts. SUSCOM publishes original and timely research papers and survey articles in current areas of power, energy, temperature, and environment related research areas of current importance to readers. SUSCOM has an editorial board comprising prominent researchers from around the world and selects competitively evaluated peer-reviewed papers.Making computing sustainable - Software systems perspective:• Power-aware software• Code profiling and transformation for power management• Power-aware middleware• Multimedia systems• Scheduling and allocationComputing for sustainability - Use of computing to make the world a sustainable place:• Use of sensors for environmental monitoring• Smart control for eco-friendly buildings• Green Data Centers and Enterprise ComputingRe-inventing algorithms and applications for sustainability:• Theoretical aspect of energy, power, and temperature• Power-aware applications• Resource management to optimize performance and power• Power implications for portable and mobile computing• Algorithms for reduced power, energy and heat for high-performance computingModeling and evaluation of sustainable systems:• Reliability of Power-aware computers• Runtime systems that assist in power saving• Models for collective optimization of power and performance• Monitoring tools for power and performance of parallel and distributed systemsSustainable hardware platforms and devices - Hardware and architecture perspective:• Power aware networking• Real-time systems• Power-efficient architectures• Efficient circuit design for energy harvesting• Power management in memory, disk, storage and other peripheral devices• Configurable and renewable energy• Low power electronics• Embedded systems, ASICs and FPGSs• Power leakage and dissipationPlease submit your article via http://ees.elsevier.com/suscom/
This journal is a wide interdisciplinary publication which seeks to further debate and discuss the important concept of sustainable development. The scope of the journal therefore allows for contributions which have a local, national or global focus from a philosophical to a practical perspective. All contributions are refereed with the aim of providing the readership with high quality, original material.
Sustainable Energy & Fuels publishes high quality scientific research that will drive the development of sustainable energy technologies, with a particular emphasis on innovative concepts and approaches. The journal is an essential resource for energy researchers and cuts across chemistry and its interfaces with materials science, physics and biology – covering evolving and emerging areas such as the following: • Solar energy conversion including photovoltaics and artificial photosynthesis • Energy storage including batteries, flow batteries and supercapacitors • Catalysis for energy technologies, including the sustainable synthesis of fuels and chemicals, and molecular/bioinspired catalysis • Electrocatalysis, photocatalysis and thermal catalysis • Fuel cells • Hydrogen production, storage and distribution • Carbon dioxide utilisation, including fuels and chemicals from carbon dioxide • Biorefining and Biofuels • Capacitive desalination and desalination batteries • Other sustainable energy conversion technologies including thermochemical, piezoelectric and thermoelectric materials and devices Energy science and technologies that avoid the use of critical raw elements or detrimental environmental effects during preparation, manufacture and end-of-life are particularly encouraged.
The world must move toward a more sustainable energy future, and the development of technologies that facilitate this for transport, heating, and power systems is crucial. This journal encourages papers on any aspect and scale of technologies for energy generation and/or utilization that decrease the impact of that production and use, from the laboratory to commercial applications. Papers on:•technology development/improvement,•integration,•regulation, standards and policy are within the scope of the journal, as well as case studies.Technology assessments estimating and discussing metrics such as scale of application,size and weight per unit of energy output, economics, efficiency, and state of technology development are particularly welcomed, for both individual or comparative systems.The main fields of focus are generation, storage, and conversion; energy efficiency and distribution; and policy and economics. Energy fields include, but are not limited to, carboncapture and storage, wind, bioenergy, solar/PV, hydro, geothermal, and conventional fuels, along with system analysis, environmental issues, energy harvesting, and building design. Papers that incorporate more than one of these topics, either in a unified system or through a comparison of these fields, are encouraged.
SEGAN is an interdisciplinary journal that aims to bring together researchers from academia and industry from across Energy, Engineering, Computer Science, Mathematics and Energy Policy/Regulation.
SEGAN publishes original articles and short communications, as well as selected review articles by invitation and/or approval of the Editor-in-Chief. Proposals for review articles and special issues should be submitted to the Editor-in-Chief for consideration.
SEGAN particularly welcomes papers on the following topics: