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Sustainable Recladding: Bringing New Life to Aging Buildings

机译:可持续填筑:为老化建筑带来新生命

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The majority of the existing commercial building stock in the United States predates the adoption of contemporary energy codes and consequently has comparatively poor energy performance. Many of these buildings are of durable construction, continue to be functional, or have architectural significance, so their continued use represents an advantage over new construction. These buildings represent an enormous opportunity to improve energy efficiency and reduce operating costs. In addition to mechanical system and lighting upgrades (not discussed in this paper), the most significant energy efficiency improvements for existing buildings can be gained through improved building enclosure technology. The cost to execute major building enclosure system improvements is usually not justified based on a simple return-on-investment analysis alone. Therefore, recladding projects are commonly driven by one of the following: intolerable performance problems; a confluence of building systems at the end of their service life; the owner's idealistic desire to invest in energy upgrades regardless of return, or an economic opportunity, such as an upgrade in building class or expansion of the enclosed building area. Effective building enclosure improvements require a project planning process that critically evaluates opportunities to improve building energy use, understands the limitations on upgrades in existing (often occupied) buildings, and understands the requirements and interplay of technical design decisions.
机译:美国大多数现有的商业建筑存货都在采用现代能源法规之前,因此能源性能相对较差。这些建筑物中的许多建筑物都是经久耐用的,可以继续发挥功能或具有建筑意义的,因此,与新建筑物相比,它们的持续使用具有优势。这些建筑物是提高能源效率和降低运营成本的巨大机会。除了机械系统和照明升级(本文中未讨论)之外,还可以通过改进的建筑围护技术来最大程度地提高现有建筑物的能效。仅基于简单的投资回报分析,通常无法证明执行重大建筑围护系统改进所需的成本。因此,填筑工程通常由以下因素之一驱动:无法忍受的性能问题;建筑系统使用寿命结束时的融合;业主理想的愿望是投资能源升级,而不考虑收益或经济机会,例如建筑等级的提高或封闭建筑面积的扩大。有效的建筑物围护结构改进需要一个项目计划过程,该过程必须严格评估改善建筑物能源使用的机会,了解现有(经常有人居住)建筑物的升级限制,并了解技术设计决策的要求和相互影响。

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