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‘Michael Zaretsky’s Precedents in Zero-Energy Design is such an important book ... it will help readers recognize that design comes before technology – and renewable energy systems alone can’t solve the problems we face’ – John D. Quale, Assistant Professor of Architecture and ecoMOD Project Director, University of Virginia The world is currently facing an environmental crisis and as anyone interested in sustainable or zero-energy design knows the design and building industries have the potential to significantly reduce greenhouse gas emissions across the globe. The Solar Decathlon is an international event in which universities from around the world compete in the design and construction of a one-bedroom, zero-energy house. This book provides an in-depth, yet accessible analysis of the architecture and passive design strategies of the houses in the 2007 Solar Decathlon. These houses are the result of thousands of hours of research and development from twenty universities around the world. Divided into three parts, the book provides: an initial section investigating the architecture, passive design and systems layout of the twenty houses; a diagrammatic comparison of the architecture and passive design characteristics of each of the twenty houses in order of ranking by the Architecture, Comfort Zone and overall scores received in the competition; a deep analysis of the relationship between architecture, passive design and mechanical systems design as compared to the rankings received in the various contests. This analysis considers the decisions made by the competing teams and highlights the success of the design strategies employed. Students, educators, practitioners and researchers of architecture, design and engineering will find this an informative and inspirational book. It examines the relationship between design and environmental principles and provides invaluable insight into some of the most innovative, off-the-grid and zero-energy houses in the world. With a Foreword by John D. Quale, Assistant Professor of Architecture and ecoMOD Project Director, University of Virginia
Conveniently organized and packed with robust technical content and clear explanations of key principles Written by an architect who is the director of sustainability at a global architecture firm, Net Zero Energy Design is a practical guide for architects and related construction professionals who want to design and build net zero energy commercial architecture. It offers no-nonsense strategies, step-by-step technical analysis, and valuable examples, in addition to developed case studies. With a focus on application in a variety of building types and scales, the book also develops a broad-based understanding of all the integrated principles involved in achieving net zero energy. This book is an indispensable resource for anyone venturing into net zero energy design, construction, and operation, and it also serves as an excellent resource on a variety of sustainable design topics. Important features include: Organization based upon the commercial building delivery process Robust technical content for use in actual project applications Analysis examples that demonstrate key technical principles Plenty of design data for use as a valuable design resource Abundant and sophisticated information graphics and color illustrations and photographs A distinct design focus on the content that inspires adoption of principles into projects
This thesis investigates the use of building performance simulation tools as a method of informing the design decision of Net Zero Energy Buildings (NZEBs).
Recently there has been a plethora of work published on the topic of sustainability, much of which is purely theoretical or technical in its approach. More often than not these books fail to introduce readers to the larger challenge of what thinking sustainably might entail. Combining a series of well know authors in contemporary philosophy with established practitioners of sustainable design, this book develops a coherent theoretical framework for how theories of sustainability might engage with the growing practice of design. This book: brings together new and emerging perspectives on sustainability provides cohesive and jargon-free reading articulates the specificity of both theory and practice, to develop a symbiotic relationship which allows the reader to understand what thinking sustainably entails This volume describes a variety of new ways to approach sustainable design and it equips the next generation of designers with necessary conceptual tools for thinking sustainably.
This book presents the main principles for designing buildings and neighborhoods with increased potential to capture and utilize solar energy. It discusses practical issues in the design of the built environment and their impact on energy performance; and a range of design considerations, from building components (e.g. the building envelope) to urban planning issues (e.g. density and street layouts). In addition to design guidelines on how to increase buildings’ potential to capture solar energy, the book provides creative tips to increase the aesthetic value of solar technology integration in buildings. Helping readers plan energy-efficient buildings with innovative building envelope technologies, and to understand the impact of early-stage design considerations on the energy performance of buildings and communities, the book offers a valuable source of information for building professionals, including architects, engineers, and urban planners. It can also serve as a reference guide for academics and students of energy efficiency in buildings and urban planning.
In May 2019, the United Nations released the Global Assessment Report on Biodiversity and Ecosystem Services which warned that human activities will drive nearly one million species to extinction in a few decades. The primary reasons for this are habitat loss and biodiversity demise caused by changing climate, pollution, introducing nonindigenous species, clearing land, over population, and consumption. Given this situation, humans must change course as both human wellbeing and the wellbeing of other-than-human species are imbricated in one another. One way humanity can accomplish the needed transformation is to move beyond an anthropocentric view of life by embracing a transpecies approach that is premised upon interconnected flourishing. Transpecies design, as outlined in this book, offers a new approach to regenerating the natural environment while honoring biodiversity. Rather than presenting the human experience as the goal of design, transpecies design takes the inextricable linkages connecting living things as both its starting point and end goal. As such, it moves beyond human experience serving as the fundamental ingredient for making better design processes and decisions. This book is essential reading for artists, designers, and architects, as well as students of architecture, landscape architecture, interior architecture, art, product design, urban design, planning, environmental philosophy, and cultural studies.
The EAAE/ARCC International Conference, held under the aegis of the EAAE (European Association for Architectural Education) and of the ARCC (Architectural Research Centers Consortium), is a conference organized every other year, in collaboration with one of the member schools / universities of those associations, alternatively in North America or in Europe. The EAAE/ARCC Conferences began at the North Carolina State University College of Design, Raleigh with a conference on Research in Design Education (1998); followed by conferences in Paris (2000), Montreal (2002), Dublin (2004), Philadelphia (2006), Copenhagen (2008), Washington (2010), Milan (2012) and Honolulu (2014). The conference discussions focus on research experiences in the field of architecture and architectural education, providing a critical forum for the dissemination and engagement of current ideas from around the world.
This book contains the proceedings of the fifth International Conference on Harmonisation between Architecture and Nature (Eco-Architecture 2014). Eco-Architecture implies a new approach to the design process intended to harmonise its products with nature. This involves ideas such as minimum use of energy at each stage of the building process, taking into account the amount required during the extraction and transportation of materials, their fabrication, assembly, building erection, maintenance and eventual future recycling. Another important issue is the adaptation of the architectural design to the natural environment, learning from nature and long time honoured samples of traditional constructions. The papers in this book deal with topics such as building technologies, design by passive systems, design with nature, cultural sensitivity, life cycle assessment, resources and rehabilitation and many others. Also included are case studies from many different places around the world. Eco-Architecture by definition is a highly multi-disciplinary subject. Eco-Architecture V: Harmonisation between Architecture and Nature will therefore be of interest to, in addition to architects, many other professionals, including engineers, planners, physical scientists, sociologists and economists. Topics covered include: Design with nature; Energy efficiency; Building technologies; Ecological impacts of materials; Bioclimatic design; Water quality; Green facades; Ecological and cultural sensitivity; Education and training; Case studies; Design by passive systems; Adapted reuse; Life cycle assessment and durability; Transformative design; Sustainability indices in architecture.
"The premise of the conference was to assess the impact and relevance of contemporary paradigms in architectural research including substantial developments in technology, public consciousness and economic pressures."--Page 4 of printed paper wrapper.
This book presents a methodology for the design, construction, monitoring, optimization, and post-occupancy evaluation of net-zero and positive-energy communities based on the experiences gained in the EU Horizon 2020 ZERO-PLUS project. It describes the steps, tools, and methods developed during the project, providing practical information for the energy and construction sector that will be of interest to students, engineers, architects, developers, and professionals working around high performance architecture and sustainable communities. Through the ZERO-PLUS project, a consortium of 32 partners from eight countries, including academic institutions, technology providers, architects, and construction companies, designed four communities covering completely different geo-climatic regions, construction practices, and cultural backgrounds in Cyprus, Italy, France, and the UK. The communities were designed, optimized, constructed, monitored, handed over to tenants, post-occupancy evaluated, and troubleshooted through a system of continuous collaboration and data acquisition. This book presents these case studies and shows how the project targets of reducing electricity consumption below 20 kWh/m2/y, increasing electricity production from Renewable Energy Systems to over 50 kWh/m2/y, and at cheaper costs when compared to current zero-energy buildings were reached and surpassed. These cases demonstrate that a holistic and interactive approach to design and construction can bring communities a high standard of sustainability. The key features of the book include: • Practical guidance drawn from the interdisciplinary, international, and remote cooperation between experts from academia and industry across the construction sector. • A survey of the state-of-the-art on net-zero and positive-energy communities, including the experience and the lessons learned from previous projects and from the ZERO-PLUS project. • Descriptions of novel emerging renewable energy technologies, integrated into real case study communities to achieve the energy generation target of the communities. • A comprehensive set of approaches, tools, guidelines, best practices, challenges, and lessons learned from the five-year ZERO-PLUS project and the completion of four residential case studies to inform the reader of how to achieve affordable net-zero energy communities. • Four typologies of residential communities located in different climatic conditions are presented, touching on the critical aspects of the design, construction, monitoring, and occupancy phase • A discussion of future trends for developing communities that are more liveable, accessible, and sustainable and which can comply with new energy policies in a way that is affordable for the owners and residents.