Balancing thermal comfort, construction feasibility, carbon emissions, and cost: multi-criteria evaluation of passive retrofits for high-rise social housing
作者:Mohammad Abousaeidi, Gloria Pignatta, Negin Nazarian, Seyedeh Bita Ghadiri · 发表于:Energy and Buildings · 年份:2026 · DOI:10.1016/j.enbuild.2026.117269 · 被引用次数:2 · 研究领域:Building Energy and Comfort Optimization、Hygrothermal properties of building materials、Sustainable Building Design and Assessment
• New multi-criteria framework for evaluating passive retrofits in high-rise housing. • Retrofit performance is assessed under current and projected 2050 RCP 4.5 climates. • West-facing, middle, and upper-level units showed the highest heat vulnerability. • Overhang shading plus mineral-wool is the most thermally resilient scenario. • Reflective paint plus mineral-wool is the most feasible, green, and low-cost option. Residents of affordable housing apartments often experience significant thermal discomfort due to poor insulation and the absence of HVAC systems. A warming climate, energy poverty, and associated health risks further exacerbate this vulnerability. Passive thermal retrofits offer potential improvements but require evaluation across multiple technical, environmental, and economic criteria. This study conducts a comprehensive assessment of passive retrofit performance for two high-rise government-subsidized housing buildings in Sydney, Australia. Building energy modelling (BEM) was used to simulate retrofit performance under current and projected 2050 (RCP4.5) climate conditions, enabling future-oriented evaluation of thermal resilience. The analysis integrates thermal comfort by orientation, floor level, and season with construction feasibility, environmental impacts, and cost, generating both criterion-specific and overall rankings through a Weighted Sum Model (WSM). This multi-criteria framework supports transparent, flexible, and stakeholder-sensitive decision...