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Can land use planning help mitigate transport-related carbon emissions? A case of Changzhou

机译:土地利用规划可以帮助缓解与运输相关的碳排放量吗? 常州的案例

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摘要

Planners, engineers, and policymakers take a great interest in effective ways to mitigate carbon emissions by land use planning. Hence, the interrelationship between land use and carbon emissions has become a mutually concerned issue with the rapid economic growth and urbanization in the world. As the second largest source of carbon emissions, it has been argued whether transport-related emissions could be reduced by spatial planning and land use policy, since land use pattern, which affects urban form and configuration, is the origin of travel behaviors and has a close interaction with transport system. In this study, a traffic assignment model is incorporated with carbon emission evaluation at an individual trip level based on Origin-Destination person trip data in Changzhou, China, taking into account road types, capacity, velocity, and volume. On the other hand, land use pattern and landscape metrics are analyzed based on Traffic Analysis Zones (TAZ) which are the basic geographic unit for person trip survey and transport planning. Then, by using the traffic assignment results we investigate the spatial distribution pattern of carbon emitted by person trips at the level of road link, and examine whether transport-related carbon emissions are correlated to land use pattern. Our study observes that the distribution of land use pattern and transport-related carbon emissions varies considerably between urban and rural areas, and arterial and collector streets inside built-up area are the major contributors of carbon emissions rather than major road, highway, or expressway. A regression analysis demonstrates that land use and landscape pattern are significantly correlated with transport-related carbon emissions. The correlations between carbon emission intensities, land for residential and commercial uses, and patch density (PD) shape inverted-U curves, which are consistent with the trends shown in the Kuznets Curve. Findings of this study are further developed to provide policy implications to resolve China's low-carbon urban development. Since the Kuznets Curves do exist for the observed correlations between carbon emissions and land use, corresponding land use strategies like mixed high-density land use, compact city, etc. deserve more attention.
机译:规划师,工程师和政策制定者对土地利用规划减轻碳排放的有效方法感兴趣。因此,土地利用和碳排放之间的相互关系已成为世界经济快速增长和城市化的相互关切的问题。作为第二大碳排放来源,已经争辩说出与空间规划和土地利用政策可以减少运输相关的排放,因为土地利用模式影响城市形态和配置,是旅行行为的起源,有一个与运输系统密切的互动。在这项研究中,基于常州,中国常州的原始目的地人跳水数据,交通分配模型在个人旅行水平上被纳入碳排放评估,考虑到道路类型,容量,速度和体积。另一方面,基于交通分析区域(TAZ)分析了土地利用模式和景观度量,这些区域是人旅行调查和运输计划的基本地理单位。然后,通过使用交通分配结果,我们调查人们在道路链路水平上发出的碳的空间分布模式,并检查与土地使用模式是否相关的运输相关的碳排放。我们的研究观察到土地利用模式和与运输相关的碳排放的分布在城乡地区之间的差异很大,内部建筑面积内的动脉和收集器街道是碳排放的主要贡献者,而不是主要道路,高速公路或高速公路。回归分析表明土地使用和景观模式与运输相关的碳排放显着相关。碳排放强度与住宅和商业用途的关系,以及贴片密度(PD)形状倒置 - U曲线,这与Kuznets曲线中所示的趋势一致。进一步制定了本研究的调查结果,以提供解决中国低碳城市发展的政策影响。由于Kuznets曲线确实存在碳排放和土地利用之间的相关性,因此相应的土地利用策略如混合的高密度土地使用,紧凑型城市等。

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