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A living lab co-creation environment exemplifying Factor 10 improvements in a city district

机译:一个生活实验室共同创造的环境,说明了城市地区因素10的改善

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The greater proportion of global emission production and resource consumption takes place in cities. Innovations are needed to reduce the use of resources and emissions within the building sector, but the sector is slow to innovate and integrate new technology. In this paper, a district-scale approach is projected to be an effective way to invoke change within the built environment of a city system, exemplified through the European Union-funded Climate-KIC Smart Sustainable Districts (SSD) Flagship Project in Gothenburg, Sweden. The SSD aims increase to human wellbeing and economic vitality with 90% lower resource use resulting in a reduction in environmental impacts and associated greenhouse gas emissions. A co-creation environment is proposed to incorporate technology innovation for sustainable living into the district, and ultimately city, level which will be realised through the HSB Living Lab Project, a living lab infrastructure under construction on the campus of Chalmers University of Technology. Interventions to reduce the use of resources at a district-scale systems level in combination with real-world testing and creation of innovative technology within living lab environments have the potential to effect a reduction in city system resource consumption and emissions. This pilot stage proposition will be tested through the implementation of both SSD and HSB Living Lab projects.
机译:全球排放产生和资源消耗的较大部分发生在城市。需要进行创新以减少建筑行业内资源和排放的使用,但是该行业创新和整合新技术的步伐很慢。在本文中,区域尺度的方法被认为是在城市系统的建筑环境中引发变化的有效方法,以欧盟资助的瑞典哥德堡气候-KIC智能可持续发展区(SSD)旗舰项目为例。 。 SSD旨在提高人类福祉和经济活力,减少90%的资源使用,从而减少对环境的影响和相关的温室气体排放。提出了一个共同创造的环境,将可持续生活的技术创新纳入地区乃至城市的层面,这将通过HSB Living Lab项目实现,HSB Living Lab项目是在Chalmers University of Technology校园内建设的生活实验室基础设施。在生活实验室环境中进行干预以减少区域级系统级别的资源使用,并结合实际测试和创新技术的创造,有可能实现减少城市系统资源消耗和排放的潜力。这个试验阶段的提议将通过实施SSD和HSB Living Lab项目进行测试。

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