Department of Environmental Health, Boston University School of Public Health, 715 Albany Street, Boston, MA, 02118, USA.
Engineering Laboratory, National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, MD, 20899, USA.
J Expo Sci Environ Epidemiol. 2020 May;30(3):436-447. doi: 10.1038/s41370-019-0197-3. Epub 2020 Jan 20.
While residential energy and ventilation standards aim to improve the energy performance and indoor air quality (IAQ) of homes, their combined impact across diverse residential activities and housing environments has not been well-established. This study demonstrates the insights that a recently-developed, freely-available coupled IAQ-energy modeling platform can provide regarding the energy and IAQ trade-offs of weatherization (i.e., sealing and insulation) and ventilation retrofits in multifamily housing across varied indoor occupant activity and mechanical ventilation scenarios in Boston, MA. Overall, it was found that combined weatherization and improved ventilation recommended by design standards could lead to both energy savings and IAQ-related benefits; however, ventilation standards may not be sufficient to protect against IAQ disbenefits for residents exposed to strong indoor sources (e.g., heavy cooking or smoking) and could lead to net increases in energy costs (e.g., due to the addition of continuous outdoor air ventilation). The modeling platform employed in this study is flexible and can be applied to a wide range of building typologies, retrofits, climates, and indoor occupant activities; therefore, it stands as a valuable tool for identifying cost-effective interventions that meet both energy efficiency and ventilation standards and improve IAQ across diverse housing populations.
虽然住宅能源和通风标准旨在提高住宅的能源性能和室内空气质量 (IAQ),但它们在不同住宅活动和住房环境中的综合影响尚未得到很好的确立。本研究展示了最近开发的、免费提供的耦合 IAQ-能源建模平台在马萨诸塞州波士顿的多种室内居住者活动和机械通风场景下,对于多户住宅的隔热(即密封和隔热)和通风改造的能源和 IAQ 权衡所提供的见解。总的来说,研究发现,设计标准建议的综合隔热和改进通风可以带来能源节约和与 IAQ 相关的好处;然而,通风标准可能不足以防止居住者暴露在强烈的室内污染源(如大量烹饪或吸烟)下的 IAQ 不利影响,并且可能导致能源成本的净增加(例如,由于增加了连续的室外空气通风)。本研究中使用的建模平台具有灵活性,可以应用于广泛的建筑类型、改造、气候和室内居住者活动;因此,它是一种有价值的工具,可以确定符合能源效率和通风标准并改善不同住房群体 IAQ 的具有成本效益的干预措施。