Towards A Climate Resilient Future Together

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Towards a Climate-Resilient Future Together

Author: Mandy A. van den Ende
language: en
Publisher: Springer Nature
Release Date: 2022-09-02
Although many local authorities underline the important role of citizens in climate adaptation, many experience difficulties with organizing citizen participation in a way that is meaningful to both citizens and policymakers. Climate change is for many simply not a top priority. Besides, the future is often rather abstract to people, citizens in particular. We argue that practical tools are needed to help citizens structure the process of thinking about and designing the future of their living environment under the impacts of climate change. The toolbox Towards a climate-resilient future together offers practical foresight methods and tools for organizing citizen participation in the process of building climate-resilient futures. It provides an overview of the state the art of and hands-on guidance for executing participatory foresight methods and showcases some of the lessons learned from several international research programs on citizen engagement. In doing so, the toolbox can assist practitioners, students and academics concerned with the question of how local communities in urban and rural areas could adapt to climate change impacts and become more resilient in the future. It is suitable for readers without any experience in citizen participation and/or foresight, while more experienced readers will find innovative combinations of methods and tools that are unique within the field of citizen participation and foresight..
Urban Energy Systems

Energy demands of cities need to be met more sustainably. This book analyses the technical and social systems that satisfy these needs and asks how methods can be put into practice to achieve this. Drawing on analytical tools and case studies developed at Imperial College London, the book presents state-of-the-art techniques for examining urban energy systems as integrated systems of technologies, resources, and people. Case studies include: a history of the evolution of London's urban energy system, from pre-history to present day a history of the growth of district heating and cogeneration in Copenhagen, one of the world's most energy efficient cities an analysis of changing energy consumption and environmental impacts in the Kenyan city of Nakuru over a thirty year period an application of uncertainty and sensitivity analysis techniques to show how Newcastle-upon-Tyne can reach its 2050 carbon emission targets designing an optimized low-carbon energy system for a new UK eco-town, showing how it would meet ever more stringent emissions targets. For students, researchers, planners, engineers, policymakers and all those looking to make a contribution to urban sustainability.
Systems and Innovation Research in Transition

In the last decades it has become more and more imperative for our societies, and for decision makers in all areas of society, to understand the dynamics through which innovation systems develop and through which socio-technical systems transform themselves. As both innovation and transformation are strongly intertwined, it has equally become imperative to analyse their dynamics as well as their interplay. This open access volume reflects on the research fields that have developed in the last five decades to do exactly that. It defines and delineates research on systems and innovation as encompassing the scientific study of, first, the conditions, dynamics and impacts associated with the generation and uptake of innovations and, second, the development and transformation of functional systems satisfying essential needs such as the provision of energy or water. Further, the area of Systems and Innovation Research (SIR) is characterised by problem and stakeholder oriented research. We chose five decades as time frame because we noted that roughly 50 years ago a number of research institutes dedicated to SIR were founded and the SIR area started to grow significantly. We present a systematic history of nine selected fields within the area of SIR (Innovation policy, Innovation indicators, Foresight, Policy Evaluation, Technology Assessment, Production Paradigms, Renewable Energies, Energy Efficiency, Water Use). We also present a conceptual framework to understand the processes by which the research fields have developed. This allows to draw general lessons as to what drives fields throughout their development and how their role vis-à-vis policy, businesses and societies changes over time. It also allows to speculate about future challenges and trends in the SIR area. This is important because, if anything, the need to govern transformation through innovation will further grow in the future, and with it the need to understand the underlying dynamics.