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This book describes the urgent challenge faced by cities worldwide to become resilient to climate change impacts. This challenge goes further than the ability to resist the impacts of extreme weather conditions. Coping with climate impacts and the ability to recover from them are equally important, as well as the capacity to adapt to the effects of climate change and the ability to transform the entire urban system. The book explores how the resilience journey for coastal cities in particular encompasses using scientific knowledge but also the knowledge of citizens and practitioners. Measures and strategies on different scales are needed, from national scale all the way down to neighbourhood, street level and building level. Representing the holistic nature of climate resilience, this collection contains unique insights from leading scientists and practitioners in areas of expertise such as engineering, social sciences and urban design. It will be a valuable resource for scholars, students, practitioners and policy makers interested in the development of resilient and sustainable urban environments.
Urban communities around the world face increased stress from natural disasters linked to climate change, and other urban pressures. They need to grow rapidly stronger in order to cope, adapt and flourish. Strong social networks and social cohesion can be more important for a community’s resilience than the actual physical structures of a city. But how can urban planning and design support these critical collective social strengths? This book offers blue sky thinking from the applied social and behavioural sciences, and urban planning. It looks at case studies from 14 countries around the world – including India, the USA, South Africa, Indonesia, the UK and New Zealand – focusing on initiatives for housing, public space and transport stops, and also natural disasters such as flooding and earthquakes. Building on these insights, the authors propose a 'gold standard': a socially aware planning process and policy recommendation for those drawing up city sustainability and climate change resilience strategies, and urban developers looking to build climate-proof infrastructure and spaces. This book will be of great interest to students and scholars of urban studies, resilience studies and climate change policy, as well as policymakers and practitioners working in related fields.
To sustain Africa’s growth, and accelerate the eradication of extreme poverty, investment in infrastructure is fundamental. In 2010, the Africa Infrastructure Country Diagnostic found that to enable Africa to fill its infrastructure gap, some US$ 93 billion per year for the next decade will need to be invested. The Program for Infrastructure Development in Africa (PIDA), endorsed in 2012 by the continent’s Heads of State and Government, lays out an ambitious long-term plan for closing Africa’s infrastructure including trough step increases in hydroelectric power generation and water storage capacity. Much of this investment will support the construction of long-lived infrastructure (e.g. dams, power stations, irrigation canals), which may be vulnerable to changes in climatic patterns, the direction and magnitude of which remain significantly uncertain. Enhancing the Climate Resilience of Africa 's Infrastructure evaluates -using for the first time a single consistent methodology and the state-of-the-arte climate scenarios-, the impacts of climate change on hydro-power and irrigation expansion plans in Africa’s main rivers basins (Niger, Senegal, Volta, Congo, Nile, Zambezi, Orange); and outlines an approach to reduce climate risks through suitable adjustments to the planning and design process. The book finds that failure to integrate climate change in the planning and design of power and water infrastructure could entail, in scenarios of drying climate conditions, losses of hydropower revenues between 5% and 60% (depending on the basin); and increases in consumer expenditure for energy up to 3 times the corresponding baseline values. In in wet climate scenarios, business-as-usual infrastructure development could lead to foregone revenues in the range of 15% to 130% of the baseline, to the extent that the larger volume of precipitation is not used to expand the production of hydropower. Despite the large uncertainty on whether drier or wetter conditions will prevail in the future in Africa, the book finds that by modifying existing investment plans to explicitly handle the risk of large climate swings, can cut in half or more the cost that would accrue by building infrastructure on the basis of the climate of the past.
This report discusses the current state of knowledge on how to build climate resilience in developing countries.
This open access book highlights the complexities around making adaptation decisions and building resilience in the face of climate risk. It is based on experiences in sub-Saharan Africa through the Future Climate For Africa (FCFA) applied research programme. It begins by dealing with underlying principles and structures designed to facilitate effective engagement about climate risk, including the robustness of information and the construction of knowledge through co-production. Chapters then move on to explore examples of using climate information to inform adaptation and resilience through early warning, river basin development, urban planning and rural livelihoods based in a variety of contexts. These insights inform new ways to promote action in policy and praxis through the blending of knowledge from multiple disciplines, including climate science that provides understanding of future climate risk and the social science of response through adaptation. The book will be of interest to advanced undergraduate students and postgraduate students, researchers, policy makers and practitioners in geography, environment, international development and related disciplines.
Supporters of environmental well-being and climate resilience are awakening and mobilizing – cities, states, business, academia, community-based organizations, and the military. They understand the imminent and long-term risks of climate deterioration and they are creating new structures beyond the top-down government policy efforts of the past. This highly practical book provides a clear insight into these collaborative solutions by real organizations in real time. It demonstrates how people from disparate fields and stakeholders cooperate to address climate issues at ground level and reveals how this can be undertaken effectively. Through case studies of key organizations such as the NYC Sustainability Office, Detroiters Working for Environmental Justice, IBM, and West Point Military Academy, readers will understand each party’s role in a cooperative enterprise and the means by which they support climate resiliency, their institutional goals, and their communities. Of particular value, the book illustrates the co-benefits of multi-party resilience planning: faster approval times; reduced litigation; ability to monetize benefits such as positive health outcomes; the economic benefits of cooperation (for example, capacity building through financing climate planning and resilience across public, private, and other sources of funding); and developing a shared perspective. The book will be of great interest to business managers, policymakers, and community leaders involved in combating climate change, and researchers and students of business, public affairs, policy, environment, climate, and urban studies.
This book articulates why services from national meteorological and hydrological services (NMHSs) are important to improve nations' weather and climate resilience. It provides a baseline vision for improving NMHSs, identifies obstacles, and recommends World Bank strategies.
The evidence for human-induced climate change is now overwhelming, the brunt of its impacts is already being felt by poor people, and the case for urgent action is compelling. This book addresses the two greatest challenges of our time – averting catastrophic climate change and eradicating poverty – and the close interconnections between them. Climate Change and Development provides a comprehensive and multi-disciplinary foundation for understanding the complex and tangled relationship between development and climate change. It argues that transformational approaches are required in order to reconcile poverty reduction and climate protection and secure sustained prosperity in the twenty first century. Section One provides the building blocks for understanding climate science and the nexus between climate and development. Section Two outlines responses to climate change from the perspective of developing countries, with chapters on international agreements, climate change mitigation and adaptation, and climate finance. Each chapter offers analytical tools for evaluating responses, enabling readers to ask smart questions about the climate change and development nexus as policy and action evolve in the coming years. The last three chapters of the book, contained in Section Three, are forward looking and focus on why and how development must be re-framed to deliver more equitable and sustainable outcomes. This section sets out different critiques of ‘development-as-usual’ and explores alternative paradigms of development in a warming and resource-constrained world. This is an invaluable and clearly written text that uses real world examples to bring to life perspectives from across different disciplines. It also contains chapter learning outcomes, and end of chapter summaries, discussion questions, and suggestions for further reading and relevant websites. The text is suitable for both undergraduate and postgraduate students, as well as those working in international development contexts who wish to get to grips with this pressing global challenge.
Abstract: Prepared by the Committee on Adaptation to a Changing Climate of ASCE Civil infrastructure systems traditionally have been designed for appropriate functionality, durability, and safety for climate and weather extremes during their full-service lives; however, climate scientists inform us that the extremes of climate and weather have altered from historical values in ways difficult to predict or project. Climate-Resilient Infrastructure: Adaptive Design and Risk Management, MOP 140, provides guidance for and contributes to the developing or enhancing of methods for infrastructure analysis and design in a world in which risk profiles are changing and can be projected with varying degrees of uncertainty requiring a new design philosophy to meet this challenge. The underlying approaches in this manual of practice (MOP) are based on probabilistic methods for quantitative risk analysis, and the design framework provided focuses on identifying and analyzing low-regret, adaptive strategies to make a project more resilient. Beginning with an overview of the driving forces and hazards associated with a changing climate, subsequent chapters in MOP 140 provide observational methods, illustrative examples, and case studies; estimation of extreme events particularly related to precipitation with guidance on monitoring and measuring methods; flood design criteria and the development of project design flood elevations; computational methods of determining flood loads; adaptive design and adaptive risk management in the context of life-cycle engineering and economics; and climate resilience technologies. MOP 140 will be of interest to engineers, researchers, planners, and other stakeholders charged with adaptive design decisions to achieve infrastructure resilience targets while minimizing life-cycle costs in a changing climate