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Sustainable Built Environment and Urban Growth Management
Nowadays, the sustainable built environment planning in most cities has come to a turning point as the growth in traffic and population has become a serious concern and put tremendous pressure on both the environment and people in these cities. It is therefore important to find new ways or lifestyles—such as compact city, transit-oriented development (TOD) formulations—that are more flexible, inclusive, and sustainable. Furthermore, for the sustainable built environment and urban growth management, not only should the growth management principles—which include smart growth, sustainable growth, and inclusive growth—be taken into account but innovative/smart planning strategies—such as mixed use design, green transport, and new urbanism—are also utilized in planning sustainable built environments in order to prevent the urban sprawl development that has occurred.
Sustainable Built Environment and Urban Growth Management
Nowadays, the sustainable built environment planning in most cities has come to a turning point as the growth in traffic and population has become a serious concern and put tremendous pressure on both the environment and people in these cities. It is therefore important to find new ways or lifestyles—such as compact city, transit-oriented development (TOD) formulations—that are more flexible, inclusive, and sustainable. Furthermore, for the sustainable built environment and urban growth management, not only should the growth management principles—which include smart growth, sustainable growth, and inclusive growth—be taken into account but innovative/smart planning strategies—such as mixed use design, green transport, and new urbanism—are also utilized in planning sustainable built environments in order to prevent the urban sprawl development that has occurred.
Sustainable Built Environment and Urban Growth Management
Wey, Wann-Ming (author)
2021-02-12
Miscellaneous
Electronic Resource
English
TA1-2040 , T1-995 , rural residents , urban growth management , major building material , resource use , decision support , commercial activities , price:value ratio , renovation extent , urban growth , environmentally responsible interior design , Artificial Neural Networks , integrated carbon policy , embodied environmental impact , big data , tenure , land cover , social bonding , climate change , air quality , interactive strategy , energy retrofitting , quality of life (QoL) , social performance , driving factors , Maximum Likelihood Classification , apartment building , environmental activation of interior elements , interior space utilization , construction materials , sharing , sustainability , low carbon , resilience engineering , intention , rent affordability , GIS , life-cycle assessment , spatial spectrum , conservation , sustainable use , sustainable built environment , buildings , resilience quantification , sustainable interior design , energy performance certificate , multiple threat assessment , built environment , farmland price-value distortion
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