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Future-Proofed Energy Design Approaches for Achieving Low-Energy Homes: Enhancing the Code for Sustainable Homes

机译:实现低能耗房屋的面向未来的能源设计方法:增强可持续房屋规范

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Under the label “future-proofing”, this paper examines the temporal component of sustainable construction as an unexplored, yet fundamental ingredient in the delivery of low-energy domestic buildings. The overarching aim is to explore the integration of future-proofed design approaches into current mainstream construction practice in the UK, focusing on the example of the Code for Sustainable Homes (CSH) tool. Regulation has been the most significant driver for achieving the 2016 zero-carbon target; however, there is a gap between the appeal for future-proofing and the lack of effective implementation by building professionals. Even though the CSH was introduced as the leading tool to drive the “step-change” required for achieving zero-carbon new homes by 2016 and the single national standard to encourage energy performance beyond current statutory minima, it lacks assessment criteria that explicitly promote a futures perspective. Based on an established conceptual model of future-proofing, 14 interviews with building practitioners in the UK were conducted to identify the “feasible” and “reasonably feasible” future-proofed design approaches with the potential to enhance the “Energy and CO2 Emissions” category of the CSH. The findings are categorised under three key aspects; namely: coverage of sustainability issues; adopting lifecycle thinking; and accommodating risks and uncertainties and seek to inform industry practice and policy-making in relation to building energy performance.
机译:本文以“面向未来”的标签,探讨了可持续建筑的时间要素,将其作为低能耗住宅建筑交付中尚未探索但仍不可或缺的要素。总体目标是探索将面向未来的设计方法整合到英国当前的主流建筑实践中,重点放在可持续住宅规范(CSH)工具的示例上。监管一直是实现2016年零碳目标的最重要推动力。但是,在要求面向未来的呼吁与建筑专业人员缺乏有效实施之间存在差距。尽管CSH被引入为在2016年之前实现实现零碳新房所需的“阶梯式变革”和鼓励能源性能超出现行法定最低标准的单一国家标准的领先工具,但它缺乏明确地促进节能减排的评估标准。期货的观点。基于已建立的面向未来的概念模型,对英国的建筑从业人员进行了14次访谈,以确定“可行的”和“合理可行的”面向未来的设计方法,这些方法有可能增强“能源和二氧化碳排放量” 2 排放”类别。调查结果分为以下三个主要方面:即:对可持续性问题的报道;采用生命周期思维;适应风险和不确定性,并寻求有关建筑能源性能的行业实践和政策制定信息。

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