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Water energy nexus in city and hinterlands: Multi-regional physical input- output analysis for Hong Kong and South China

机译:城市和腹地的水能联系:香港和华南地区的多区域物理投入产出分析

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摘要

Most cities import energy and water from their hinterlands. Both the nexus in a city and that between the city and its hinterlands should be considered for comprehensive management of water and energy. To examine the water-energy nexus associated with the city embedded in the hinterland, a city-hinterland water-energy mixed-unit input-output methodology is proposed to model the effects of growth under different water and energy production and consumption scenarios based on the growth of the demands for water and energy resources from the city. This study presents a demonstration of the water-energy mixed-unit input-output approach by analyzing Hong Kong and its associated hinterland in mainland China. A Sankey diagram and several indicators have been presented to illustrate the water-energy nexus in 2015, as well as the nexus for future city growth and the nexus incorporating the water and energy infrastructures planned in Hong Kong. Several indicators in the results compare the interaction between water and energy systems and the dependence on hinterland for different scenarios in Hong Kong. The modeling outcomes show that the current water infrastructures might be able to meet the demand for water treatment in 2050. The indicators obtained from this study suggest that all types of water for energy and energy for water will increase by 7.8-9%.
机译:大多数城市从腹地进口能源和水。城市和腹地之间的联系都应考虑用于水和能源的综合管理。为了研究与腹地相连的城市相关的水能联系,提出了一种城市-腹地水能混合单位投入产出方法,基于该模型,模拟了不同水和能源生产和消费情景下的增长效应。城市对水和能源资源需求的增长。本研究通过分析香港及其在中国内地的腹地,展示了水能混合单位投入产出方法。提出了Sankey图和几个指标来说明2015年的水能关系,未来城市发展的关系以及结合香港计划的水和能源基础设施的关系。结果中的几个指标比较了香港不同情景下水和能源系统之间的相互作用以及对腹地的依赖性。建模结果表明,当前的水基础设施可能能够满足2050年的水处理需求。从这项研究中获得的指标表明,所有类型的能源用水和能源用水将增加7.8-9%。

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