特大城市
国内生产总值
人均
电
人口
自然资源经济学
消费(社会学)
能源消耗
城市化
农业经济学
业务
地理
经济增长
经济
经济
工程类
人口学
社会学
电气工程
社会科学
作者
Christopher Kennedy,Iain D. Stewart,Angelo Facchini,Igor Cersosimo,Renata Mele,Bin Chen,Mariko Uda,Arun Kansal,Anthony S.F. Chiu,Kwi-gon Kim,Carolina Burle Schmidt Dubeux,Emílio Lèbre La Rovere,Bruno Cunha,Stéphanie Pincetl,James Keirstead,Sabine Barles,Semerdanta Pusaka,Juniatí Gunawan,Michael Adegbile,M. Nazariha
标识
DOI:10.1073/pnas.1504315112
摘要
Significance Our quantification of energy and material flows for the world’s 27 megacities is a major undertaking, not previously achieved. The sheer magnitude of these flows (e.g., 9% of global electricity, 10% of gasoline; 13% of solid waste) shows the importance of megacities in addressing global environmental challenges. In aggregate the resource flows through megacities are consistent with scaling laws for cities. Statistical relations are established for electricity use, heating/industrial fuels, ground transportation, water consumption, waste generation, and steel production in terms of heating-degree days, urban form, economic activity, and population growth. Analysis at the microscale shows that electricity use is strongly correlated with building floor area, explaining the macroscale correlation between per capita electricity use and urbanized area per capita.
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