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Energy and material flows of megacities

机译:特大城市的能源和物质流

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摘要

Understanding the drivers of energy and material flows of cities is important for addressing global environmental challenges. Accessing, sharing, and managing energy and material resources is particularly critical for megacities, which face enormous social stresses because of their sheer size and complexity. Here we quantify the energy and material flows through the world’s 27 megacities with populations greater than 10 million people as of 2010. Collectively the resource flows through megacities are largely consistent with scaling laws established in the emerging science of cities. Correlations are established for electricity consumption, heating and industrial fuel use, ground transportation energy use, water consumption, waste generation, and steel production in terms of heating-degree-days, urban form, economic activity, and population growth. The results help identify megacities exhibiting high and low levels of consumption and those making efficient use of resources. The correlation between per capita electricity use and urbanized area per capita is shown to be a consequence of gross building floor area per capita, which is found to increase for lower-density cities. Many of the megacities are growing rapidly in population but are growing even faster in terms of gross domestic product (GDP) and energy use. In the decade from 2001–2011, electricity use and ground transportation fuel use in megacities grew at approximately half the rate of GDP growth.
机译:了解城市能源和物质流动的驱动因素对于应对全球环境挑战至关重要。对于巨型城市而言,访问,共享和管理能源和物质资源尤为重要,而巨型城市由于规模和复杂性而面临巨大的社会压力。在这里,我们对截至2010年人口超过1000万人的全球27个特大城市的能源和物质流动进行了量化。总体上,通过特大城市的资源流动与新兴的城市科学中建立的定律基本一致。建立了电力消耗,供暖和工业燃料的使用,地面交通能源的使用,水的消耗,废物的产生以及钢铁生产的相关性,包括采暖度日,城市形态,经济活动和人口增长。结果有助于确定消耗量高和低的大城市以及有效利用资源的大城市。人均用电量与人均城市化面积之间的相关性被证明是人均建筑建筑面积的结果,发现低密度城市的建筑面积增加了。许多特大城市的人口增长迅速,但就国内生产总值(GDP)和能源使用而言,增长速度甚至更快。从2001年至2011年的十年中,特大城市的电力使用和地面交通用燃料的增长率约为GDP增长率的一半。

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