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The eco-city and its core environmental dimension of sustainability: green energy technologies?and their integration with data-driven smart solutions

机译:生态城及其可持续发展核心环境维度:绿色能源技术?及其与数据驱动智能解决方案的集成

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Ecological urbanism is seen today as one of the keys towards unlocking the quest for a low-carbon or fossil fuel–free society. Global and local policies promote and advocate the eco–city as the most environmentally sound model of sustainable?urbanism. It is argued that the eco–city strategies and solutions are expected to deliver positive outcomes in terms of minimal demand on energy resources and thus minimal environmental impacts. Moreover,?it has recently been suggested that the eco-city needs to embrace and leverage what advanced ICT has to offer, particularly with regard to sustainable energy systems, so as to improve and advance its contribution to the goals of?environmental sustainability. This paper examines how the eco–city especially its core environmental dimension is practiced and justified in urban planning and development with respect to sustainable energy systems and their integration?with data-driven smart technologies at the district level. To illuminate this urban?phenomenon accordingly, a descriptive case study is adopted as a qualitative research methodology where the empirical basis is formed by urban planning and development documents combined with secondary data and scientific literature. To provide a theoretical foundation and produce a rationale for this study, this paper first provides a state–of–the–art review of the field of ecological urbanism in terms of its foundations, models, strategies, research issues, as well as data–driven smart technological trends. This study shows that the Eco-city District of?Stockholm?Royal Seaport uses green energy and data-driven smart?technologies as the key strategies and solutions for achieving the environmental objectives of sustainable development in terms of lowering energy consumption and mitigating pollution. This entails conserving and decreasing the demand for energy through renewable resources (i.e.,?sun, wind, and water), bio–fuelled Combined Heat Power system, large-scale smart grid system, energy management, sustainable waste management, and passive solar houses. This research enhances the scholarly community’s current understanding of the emerging phenomenon of the smart eco-city with respect to the synergic potential of the integration of its sustainable energy strategies with data-driven technology solutions for advancing environmental sustainability.
机译:今天看到生态城市主义作为解锁低碳或无化石无氟化社会追求的钥匙之一。全球和当地政策促进并倡导生态城市作为可持续发展的最环保模型?城市主义。有人认为,在能源资源的最小需求方面,预计生态城战略和解决方案有望在最小的需求方面提供积极的结果,从而最小的环境影响。此外,它最近有人建议,生态城需要拥抱和利用先进的ICT,特别是在可持续能源系统方面,以改善和推进对环境可持续性目标的贡献。本文介绍了生态城市特别是其核心环境维度,在城市规划和发展方面,可持续能源系统及其整合在城市规划和发展中进行了合理吗?在地区一级的数据驱动智能技术。为了照亮这座城市的现象,采用了描述性案例研究作为定性研究方法,在经验基础上由城市规划和发展文件与二级数据和科学文献相结合。为了提供本研究的理论基础并产生理由,本文首先为其基础,模型,策略,研究问题以及数据提供了对生态城市主义领域的最先进的审查驱动的智能技术趋势。这项研究表明,生态城区?斯德哥尔摩?皇家海港使用绿色能源和数据驱动的智能?技术作为实现可持续发展环境目标的关键策略和解决方案,从而降低能源消耗和减轻污染。这需要通过可再生资源(即,阳光,风和水),生物燃料组合热电力系统,大规模智能电网系统,能源管理,可持续废物管理和被动太阳能室。本研究提高了学术界,目前对智能生态城市的新兴现象的了解,即协同促进其可持续能源战略与数据驱动技术解决方案,以推进环境可持续性的协同潜力。

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