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The built environment and public health have a close history of association: from the earliest considerations by Hippocrates of the role of place for human health to the influence of the hygiene movement on architecture, landscape and urban planning. Today global developments such as chronic (or lifestyle) diseases, aging populations and a heavily burdened environment have lent a new urgency to the question of the influence of architecture and urban planning on lifestyles and health.Life-Styled, created as part of the Health and Places Initiative at Harvard University, shows by means of detailed graphics how public health issues can be incorporated into the planning of the built environment and how lifestyles can be shaped accordingly. Taking greater account of health aspects when designing (public) space represents not simply an obligation, but also a means to rethink the disciplines of architecture and design.
711.4 --- 316.334.56 --- 364.1 --- China --- Stedenbouw --- Stedenbouw (theorie) --- Urbane sociologie --- Welzijn --- Gezondheid --- Hygiene. Public health. Protection --- Environmental planning --- urban planning --- public health --- urban design --- public spaces
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Architecture and design currently play a minor role in the design and construction of industrial building types, especially waste-to-energy facilities. Through comparing the well-established waste-to-energy industries in Sweden with less established engagements in the northeast of the United States, opportunities and lessons are revealed. This book presents a refreshed, design-led approach to waste-to-energy (WTE) plants, reflecting work done at Harvard University Graduate School of Design (GSD). Architecture and design currently play a minor role in the design and construction of industrial building types, especially waste-to-energy facilities. Architects have a role to play in integrating waste-to-energy plants physically and programmatically within their urban or suburban contexts, as well as potentially lessening the generally negative perception of energy recovery plants.
Architecture, Industrial. --- Architecture, Modern --- Refuse and refuse disposal. --- Architecture --- Industrial buildings --- Recycling (Waste, etc.) --- Refuse as fuel. --- Waste products as fuel. --- Waste disposal sites --- Salvage (Waste, etc.) --- Engineering. --- Interdisciplinary research. --- Group work in architecture. --- Architecture industrielle --- Constructions industrielles --- Recyclage (Déchets, etc.) --- Déchets (Combustible) --- Déchets --- Récupération (Déchets, etc.) --- Ingénierie --- Recherche interdisciplinaire --- Environmental aspects. --- Themes, motives. --- Aspect de l'environnement --- Élimination --- Sites --- Thèmes, motifs --- Travail en équipe --- Bâtiment industriel --- Reconversion de bâtiment --- Reconversion de site --- Pollution --- Recyclage --- Rôle de l'architecte --- Politique énergétique --- Consommation --- Développement durable --- Energie grise --- Energie verte --- Energie renouvelable --- Recyclage (déchets, etc.) --- Récupération (déchets, etc.) --- Aspect environnemental --- Installations --- Aspect environnemental. --- Déchets --- Recyclage (déchets, etc.) --- Récupération (déchets, etc.) --- Élimination --- Architecture, Industrial --- Refuse as fuel --- Waste products as fuel --- Engineering --- Interdisciplinary research --- Group work in architecture --- Environmental aspects --- Themes, motives
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