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Sustainable Construction Technologies: Life-Cycle Assessment provides practitioners with a tool to help them select technologies that are financially advantageous even though they have a higher initial cost. Chapters provide an overview of LCA and how it can be used in conjunction with other indicators to manage construction. Topics covered include indoor environment quality, energy efficiency, transport, water reuse, materials, land use and ecology, and more. The book presents a valuable tool for construction professionals and researchers that want to apply sustainable construction techniques to their projects. Practitioners will find the international case studies and discussions of worldwide regulation and standards particularly useful. - Provides a framework for analyzing sustainable construction technologies and economic viability - Introduces key credit criteria for different sustainable construction technologies - Covers the most relevant construction areas - Includes technologies that can be employed during the process of construction, or to the product of the construction process, i.e. buildings - Analyzes international rating systems and provides supporting case studies
How to adapt existing building stock is a problem being addressed by local and state governments worldwide. In most developed countries we now spend more on building adaptation than on new construction and there is an urgent need for greater knowledge and awareness of what happens to commercial buildings over time. Sustainable Building Adaptation: innovations in decision-making is a significant contribution to understanding best practice in sustainable adaptations to existing commercial buildings by offering new knowledge-based theoretical and practical insights. Models used are grounded in results of case studies conducted within three collaborative construction project team settings in Australia and the Netherlands, and exemplars are drawn from the Americas, Asia, Japan, Korea and Europe to demonstrate the application of the knowledge more broadly. Results clearly demonstrate that the new models can assist with informed decision-making in adaptation that challenges some of the prevailing solutions based on empirical approaches and which do not accommodate the sustainability dimension. The emphasis is on demonstrating how the new knowledge can be applied by practitioners to deliver professionally relevant outcomes. The book offers guidance towards a balanced approach that incorporates sustainable and optimal approaches for effective management of sustainable adaptation of existing commercial buildings.
A twenty-first century renaissance is emerging in architecture. After a century of building designs characterized by high energy demand, low quality lighting and poor thermal comfort, the fundamental questions must be asked again: is there a better path to designing the most energy efficient, comfortable, functional and beautiful buildings for a sustainable future? While seeking solutions for the future, are there lessons to be learned from the best buildings of the past? Sustainable Building Design explores outstanding buildings and building designs of the twenty-first century, with an emphasis on the artistry of masters of architecture who came before. By dissecting and analyzing great public buildings of the nineteenth and twenty-first centuries, materials, techniques, and methods are discovered. This book presents the reader with clues and suggestions that will reveal the secrets of these buildings and by doing so provides the reader with a thorough understanding of how these architectural masterpieces work. Using photographs, drawings, sections, plans and diagrams which are painstakingly redrawn for consistency and clarity based on a wide range of documentation, Vidar Lerum compares works of architecture from the nineteenth and twenty-first centuries. The reader is presented with a careful analysis of each building, providing a compelling sourcebook of ideas for students and professional architects alike.
If we can carry in our pockets more computing power than the Apollo program needed to put a man on the moon, why can't we solve problems like climate change, famine, or poverty? The answer lies, in part, in the distinctive challenges of creating innovations that address today's pressing environmental and social problems. In this groundbreaking book, Andrew Hargadon shows why sustainable innovation—the development of financially viable products that support a healthy environment and communities—is so difficult when compared to creating the next internet ventures or mobile apps that disregard these criteria. While other books treat innovation across sectors equally, Hargadon argues that most effective innovation strategies hinge on attention to the context in which they are pursued. Instead of relying on a stale set of "best practices," executives must craft their own strategies based on the particulars of their industries and markets. But, there are some rules of the road that foster a triple bottom line; this book provides a research-based framework that outlines the critical capabilities necessary to drive sustainable innovation: a long-term commitment, nexus work, science and policy expertise, recombinant innovation, and robust design. Sustainable Innovation draws on a wide range of historical and contemporary examples to show business readers and their companies how to stand on the shoulders of successful pioneers.
Presenting a novel biomimetic design method for transferring design solutions from nature to technology, this book focuses on structure-function patterns in nature and advanced modeling tools derived from TRIZ, the theory of inventive problem-solving. The book includes an extensive literature review on biomimicry as an engine of both innovation and sustainability, and discusses in detail the biomimetic design process, current biomimetic design methods and tools. The structural biomimetic design method for innovation and sustainability put forward in this text encompasses (1) the research method and rationale used to develop and validate this new design method; (2) the suggested design algorithm and tools including the Find structure database, structure-function patterns and ideality patterns; and (3) analyses of four case studies describing how to use the proposed method. This book offers an essential resource for designers who wish to use nature as a source of inspiration and knowledge, innovators and sustainability experts, and scientists and researchers, amongst others.
The integration of nature in architecture is a key concern of sustainability. However, all too often sustainable design is reduced to improving the energetic performance of buildings and the ornamental application of natural green. Dense + Green explores new architectural typologies that emerge from the integration of green components such as sky terraces, vertical parks and green facades, in high-density buildings. The book describes green strategies in a comparison across different design tasks and climate conditions. In-depth case studies on the most relevant building types, consistently presented with analytical drawings made exclusively for this book, are complemented by expert essays that demonstrate the current paradigm shift in the sustainable urban environment. From the Contents: • Dense + Green Building Types, by Thomas Schröpfer, architect, Singapore University of Technology and Design • Dense + Green Building Technology, by Atelier Ten, environmental design consultants and building services engineers, New York, NY • Dense + Green Landscape Design, by Herbert Dreiseitl, landscape architect, Atelier Dreiseitl/Rambøll Liveable Cities Lab, Überlingen/Singapore/Portland, OR • Dense + Green Botanical Design, by Jean Yong, plant eco-physiologist, Singapore University of Technology and Design • Dense + Green Urbanism, by Kees Christiaanse, urban planner, ETH Zurich • 25 in-depth case studies from Europe, Asia and the USA • Practice Reports by Foster + Partners, WOHA, Ken Yeang, MVRDV and others
The aim of this edited book is to provide a comprehensive overview of the opportunities and challenges related to innovation for sustainability. Combining work from both emerging and established scholars in different academic fields, this book provides an integrated understanding of the topic from four perspectives. First, the big picture: frameworks, types, and drivers; second, strategy and leadership; third, measurement and assessment and fourth, tools, methods and technologies. Chapter 11 of this book is available open access under a CC BY 4.0 license at link.springer.com. The editors donate their remuneration for this book to conservation organisation the WWF.
The Sustainable Tall Building: A Design Primer is an accessible and highly illustrated guide, which primes those involved in the design and research of tall buildings to dramatically improve their performance. Using a mixture of original research and analysis, best-practice design thinking and a detailed look at exemplar case studies, author Philip Oldfield takes the reader through the architectural ideas, engineering strategies and cutting-edge technologies that are available to the tall building design team. The book takes a global perspective, examining high-rise design in different climates, cultures and contexts. It considers common functions such as high-rise housing and offices, to more radical designs such as vertical farming and vertical cemeteries. Innovation is provided by examining not only the environmental performance of tall buildings but also their social sustainability, guiding the reader through strategies to create successful communities at height. The book starts by critically appraising the sustainability of tall building architecture past and present, before demonstrating innovative ways for future tall buildings to be designed. These include themes such as climatically responsive architecture, siting a tall building in the city, zero-carbon towers, skygardens and community spaces at height, sustainable structural systems and novel façades. In doing so, the book provides essential reading for architects, engineers, consultants, developers, researchers and students engaged with sustainable design and high-rise architecture.