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Aquatecture: Architecture and Water examines the concept of aquatecture from both historical and contemporary viewpoints. The book is comprised of six chapters that discuss topics concerning architecture in aquatic environment. Chapter 1 reviews cultural and historical context that shaped the understanding of the water element. Chapters 2 and 3 discuss the urban waterfront, the interface between urban life and coast or river. The book also tackles water environment where water is used for visual effect and amenity value. Water techniques and water space for effects and design are then dealt with. The text will be useful to architects who are planning to integrate the water element into their works.
Water plays a vital role in shaping our built environment, as it has done for centuries. We depend on it, we use it, we live with it and we must respect it. Aquatecture is the first book to outline new ways of 'designing for water,' using examples from around the world to illustrate methods of utilizing water innovatively, efficiently and safely.The first part of the book explores the historical relationship between water and architecture, examining how cities and civilisations have been drawn to water and have attempted to control it. The chapters go on to assess how this relationship has changed over time, and introduce readers to a range of brand new techniques that will revolutionise the way we think about water, design and urban planning. Solutions such as amphibious housing, wet-proof buildings, zero carbon development, rain gardens, flood storage and new methods of waterfront design are discussed and their effectiveness assessed. Full colour illustrations and international case studies are used throughout the book to bring these new theories to life; practical, technical advice sits alongside truly ground-breaking and ambitious ideas for the future. This book is an ideal reference tool for all architects, urban designers, planners and sustainability experts who have an interest in creating a beautiful, sustainable, intelligent and pleasurable built environment on land, in water and with water.
What does theology have to say about the place of eroticism in the salvific transformation of men and women, even of the cosmos itself? How, in turn, does eros infuse theological practice and transfigure doctrinal tropes? Avoiding the well-worn path of sexual moralizing while also departing decisively from Anders Nygren’s influential insistence that Christian agape must have nothing to do with worldly eros, this book explores what is still largely uncharted territory in the realm of theological erotics. The ascetic, the mystical, the seductive, the ecstatic—these are the places where the divine and the erotic may be seen to converge and love and desire to commingle. Inviting and performing a mutual seduction of disciplines, the volume brings philosophers, historians, biblical scholars, and theologians into a spirited conversation that traverses the limits of conventional orthodoxies, whether doctrinal or disciplinary. It seeks new openings for the emergence of desire, love, and pleasure, while challenging common understandings of these terms. It engages risk at the point where the hope for salvation paradoxically endangers the safety of subjects—in particular, of theological subjects—by opening them to those transgressions of eros in which boundaries, once exceeded, become places of emerging possibility. The eighteen chapters, arranged in thematic clusters, move fluidly among and between premodern and postmodern textual traditions—from Plato to Emerson, Augustine to Kristeva, Mechthild to Mattoso, the Shulammite to Molly Bloom, the Zohar to the Da Vinci Code. In so doing, they link the sublime reaches of theory with the gritty realities of politics, the boundless transcendence of God with the poignant transience of materiality.
This book presents and discusses a strategy which includes four approaches to dealing with the risk of sea-level rise and other water hazards. It also offers opportunities for cities to explore urban extensions such as marine estates, aquatic food production systems, new sea related industries, maritime transport developments, new oceanic tourist attractions, and the designation of additional coastal ecological zones. The urban interface between Sea and Cities generates, therefore, both burning issues and valuable opportunities and raises the question of whether it is possible to solve the former by exploiting the latter?
This book is an introduction to landscape architecture for students. Landscape architecture is a visual subject so the book is be illustrated with the author's own drawings.
This book highlights state-of-the-art research findings on floating developments in both inland and coastal waters with focus on living, recreation and working offshore. It includes six themes: (1) business case and real estate development, (2) spatial planning and architecture, (3) food and energy production, (4) ecological impact and nature-based solutions, (5) governance and social impact and (6) design and engineering of (infra)structures. The book presents key issues addressed when utilizing water space. It gives an overview of findings and discussions from the world’s leading experts from the industry, policymakers, entrepreneurs, researchers and identifies new opportunities as well as fosters collaboration on floating projects for a more climate-adaptive, socially inclusive, sustainable and better world.
Chapter “A Multi-functional Design Approach to Deal with New Urban Challenges” is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.
Popular Science gives our readers the information and tools to improve their technology and their world. The core belief that Popular Science and our readers share: The future is going to be better, and science and technology are the driving forces that will help make it better.
Effective coastal engineering is expensive, but it is not as costly as neglect or ineffective intervention. Good practice needs to be based on sound principles, but theoretical work and modelling also need to be well grounded in practice, which is continuously evolving. Conceptual and detailed design has been advanced by new industry publications since the publication of the second edition. This third edition provides a number of updates: the sections on wave overtopping have been updated to reflect changes brought in with the recently issued EurOtop II manual; a detailed worked example is given of the calculation of extreme wave conditions for design; additional examples have been included on the reliability of structures and probabilistic design; the method for tidal analysis and calculation of amplitudes and phases of harmonic constituents from water level time series has been introduced in a new appendix together with a worked example of harmonic analysis; and a real-life example is included of a design adapting to climate change. This book is especially useful as an information source for undergraduates and engineering MSc students specializing in coastal engineering and management. Readers require a good grounding in basic fluid mechanics or engineering hydraulics, and some familiarity with elementary statistical concepts.