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The recently established Sustainable Development Goals call for a paradigm shift in the way that buildings and infrastructures are conceived. The construction industry is a major source of environmental impacts, given its great material consumption and energy demands. It is also a major contributor to the economic growth of regions, through the provision of useful infrastructure and generation of employment, among other factors. Conventional approaches underlying current building design practices fall short of covering the relevant environmental and social implications derived from inappropriate design, construction, and planning. The development of adequate sustainable design strategies is therefore becoming extremely relevant regarding the achievement of the United Nations 2030 Agenda Goals for Sustainable Development. This book comprises 11 chapters that highlight the actual research trends in the construction sector, aiming to increase the knowledge on sustainable design practices by highlighting the actual practices that explore efficient ways to reduce the environmental consequences related to the construction industry, while promoting social wellbeing and economic development. The chapters collect papers included in the Special Issue “Trends in Sustainable Buildings and Infrastructure” of the International Journal of Environmental Research and Public Health.
Technology: general issues --- multi-scale assessment --- hierarchical relational modeling --- cascading impacts --- adaptive capacity --- infrastructure integrated planning --- road network --- decentralization optimization --- green housing --- neuro decision matrix --- neuro correlation matrix --- video neuro-advertising --- COPRAS and ViNeRS Methods --- multivariate design and multiple criteria analysis --- bridges --- sustainability --- design --- life cycle assessment --- greenhouse gas --- environmental impact --- cable-stayed bridge --- life-cycle assessment --- sustainable construction --- life cycle costing --- environmental externalities --- indicator --- multi-criteria decision analysis --- civil engineering --- bridge --- local spatial planning stage --- policy decision-making --- social network analysis --- convergence analysis --- text mining analysis --- biopolymer --- numerical simulation --- micro-behavior --- green technology --- Archimedean screw turbine --- green energy --- resilient structures --- mega infrastructure projects --- operation and maintenance management --- assessment level --- indicator system --- sustainable development --- LCIA --- LCCA --- SILA --- GDP --- green building --- policy evolution --- bibliometric analysis --- text mining --- China
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The recently established Sustainable Development Goals call for a paradigm shift in the way that buildings and infrastructures are conceived. The construction industry is a major source of environmental impacts, given its great material consumption and energy demands. It is also a major contributor to the economic growth of regions, through the provision of useful infrastructure and generation of employment, among other factors. Conventional approaches underlying current building design practices fall short of covering the relevant environmental and social implications derived from inappropriate design, construction, and planning. The development of adequate sustainable design strategies is therefore becoming extremely relevant regarding the achievement of the United Nations 2030 Agenda Goals for Sustainable Development. This book comprises 11 chapters that highlight the actual research trends in the construction sector, aiming to increase the knowledge on sustainable design practices by highlighting the actual practices that explore efficient ways to reduce the environmental consequences related to the construction industry, while promoting social wellbeing and economic development. The chapters collect papers included in the Special Issue “Trends in Sustainable Buildings and Infrastructure” of the International Journal of Environmental Research and Public Health.
multi-scale assessment --- hierarchical relational modeling --- cascading impacts --- adaptive capacity --- infrastructure integrated planning --- road network --- decentralization optimization --- green housing --- neuro decision matrix --- neuro correlation matrix --- video neuro-advertising --- COPRAS and ViNeRS Methods --- multivariate design and multiple criteria analysis --- bridges --- sustainability --- design --- life cycle assessment --- greenhouse gas --- environmental impact --- cable-stayed bridge --- life-cycle assessment --- sustainable construction --- life cycle costing --- environmental externalities --- indicator --- multi-criteria decision analysis --- civil engineering --- bridge --- local spatial planning stage --- policy decision-making --- social network analysis --- convergence analysis --- text mining analysis --- biopolymer --- numerical simulation --- micro-behavior --- green technology --- Archimedean screw turbine --- green energy --- resilient structures --- mega infrastructure projects --- operation and maintenance management --- assessment level --- indicator system --- sustainable development --- LCIA --- LCCA --- SILA --- GDP --- green building --- policy evolution --- bibliometric analysis --- text mining --- China
Choose an application
The recently established Sustainable Development Goals call for a paradigm shift in the way that buildings and infrastructures are conceived. The construction industry is a major source of environmental impacts, given its great material consumption and energy demands. It is also a major contributor to the economic growth of regions, through the provision of useful infrastructure and generation of employment, among other factors. Conventional approaches underlying current building design practices fall short of covering the relevant environmental and social implications derived from inappropriate design, construction, and planning. The development of adequate sustainable design strategies is therefore becoming extremely relevant regarding the achievement of the United Nations 2030 Agenda Goals for Sustainable Development. This book comprises 11 chapters that highlight the actual research trends in the construction sector, aiming to increase the knowledge on sustainable design practices by highlighting the actual practices that explore efficient ways to reduce the environmental consequences related to the construction industry, while promoting social wellbeing and economic development. The chapters collect papers included in the Special Issue “Trends in Sustainable Buildings and Infrastructure” of the International Journal of Environmental Research and Public Health.
Technology: general issues --- multi-scale assessment --- hierarchical relational modeling --- cascading impacts --- adaptive capacity --- infrastructure integrated planning --- road network --- decentralization optimization --- green housing --- neuro decision matrix --- neuro correlation matrix --- video neuro-advertising --- COPRAS and ViNeRS Methods --- multivariate design and multiple criteria analysis --- bridges --- sustainability --- design --- life cycle assessment --- greenhouse gas --- environmental impact --- cable-stayed bridge --- life-cycle assessment --- sustainable construction --- life cycle costing --- environmental externalities --- indicator --- multi-criteria decision analysis --- civil engineering --- bridge --- local spatial planning stage --- policy decision-making --- social network analysis --- convergence analysis --- text mining analysis --- biopolymer --- numerical simulation --- micro-behavior --- green technology --- Archimedean screw turbine --- green energy --- resilient structures --- mega infrastructure projects --- operation and maintenance management --- assessment level --- indicator system --- sustainable development --- LCIA --- LCCA --- SILA --- GDP --- green building --- policy evolution --- bibliometric analysis --- text mining --- China
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The purpose of this Special Issue is to investigate topics related to sustainability issues in the new era, especially in Industry 4.0 or other new manufacturing environments. Under Industry 4.0, there have been great changes with respect to production processes, production planning and control, quality assurance, internal control, cost determination, and other management issues. Moreover, it is expected that Industry 4.0 can create positive sustainability impacts along the whole value chain. There are three pillars of sustainability, including environmental sustainability, economic sustainability, and social sustainability. This Special Issue collects 15 sustainability-related papers from various industries that use various methods or models, such as mathematical programming, activity-based costing (ABC), material flow cost accounting, fuel consumption model, artificial intelligence (AI)-based fusion model, multi-attribute decision model (MADM), and so on. These papers are related to carbon emissions, carbon tax, Industry 4.0, economic sustainability, corporate social responsibility (CSR), etc. The research objects come from China, Taiwan, Thailand, Oman, Cyprus, Germany, Austria, and Portugal. Although the research presented in this Special Issue is not exhaustive, this Special Issue provides abundant, significant research related to environmental, economic, and social sustainability. Nevertheless, there still are many research topics that require our attention to solve problems of sustainability.
carbon reduction --- PID controller --- n/a --- time study --- VIKOR --- life cycle cost analysis (LCCA) --- Activity-Based Costing (ABC) --- LS-ARIMAXi-ECM model --- DANP (DEMATEL based ANP) --- multi-attribute decision model (MADM) --- artificial intelligence --- white noise --- OECD --- integrated mathematical programming --- Activity-Based Standard Costing (ABSC) --- qualitative-empirical study --- energy efficiency --- multi-attribute value theory (MAVT) --- e-commerce platform --- decision making trial and evaluation laboratory (DEMATEL) --- colored noise --- carbon tax policy --- material flow cost accounting --- Manufacturing Execution System (MES) --- cap & trade --- manufacturing sustainability --- sustainability --- OEE --- mathematical programming --- aluminum-alloy wheel industry --- sustainable development --- return policy --- small and medium enterprises --- decision making --- Enterprise Resource Planning (ERP) --- tire industry --- footwear industry --- carbon tax --- electrical appliances --- niche inheritance --- carbon emission --- social sustainability --- material handling systems --- small and medium-sized enterprises --- product-mix decision --- internal control --- economic growth --- active suspension --- Industry 4.0 --- corporate social responsibility --- greenhouse gas --- carbon emissions --- succession plan --- digital transformation --- corporate social responsibility (CSR) --- fuel consumption --- agent-based control architecture --- sustainability performance --- activity-based costing (ABC) --- corporate characteristics --- firm value --- industry 4.0 --- digital platforms --- ISO14051 --- theory of constraints (TOC) --- long- and short-term --- NSGAII --- CO2 emissions --- family capital --- green production --- industrial internet of things --- multi-objective optimization --- family business --- exogenous variables
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