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Detailed Building Energy Impact Analysis of XPS Insulation Degradation Using Existing Long-Term Experimental Data
by
Seo, Dong-Hyun
, Kim, Seok-Ho
, Jeong, Ju-Yeon
, Park, Soo-Hwan
, Kim, Hye-Jin
in
Aging
/ Analysis
/ Architecture and energy conservation
/ Carbon
/ Commercial real estate
/ Emission standards
/ Emissions
/ Energy conservation
/ Energy consumption
/ Energy efficiency
/ Energy industry
/ energy performance
/ Georgia
/ Green buildings
/ Greenhouse gases
/ Heat conductivity
/ Insulation
/ Kansas
/ long-term degradation
/ prototypical energy model
/ Simulation methods
/ South Korea
/ thermal transmittance
/ Typical Meteorological Year
/ United States
/ XPS (extruded polystyrene)
2025
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Detailed Building Energy Impact Analysis of XPS Insulation Degradation Using Existing Long-Term Experimental Data
by
Seo, Dong-Hyun
, Kim, Seok-Ho
, Jeong, Ju-Yeon
, Park, Soo-Hwan
, Kim, Hye-Jin
in
Aging
/ Analysis
/ Architecture and energy conservation
/ Carbon
/ Commercial real estate
/ Emission standards
/ Emissions
/ Energy conservation
/ Energy consumption
/ Energy efficiency
/ Energy industry
/ energy performance
/ Georgia
/ Green buildings
/ Greenhouse gases
/ Heat conductivity
/ Insulation
/ Kansas
/ long-term degradation
/ prototypical energy model
/ Simulation methods
/ South Korea
/ thermal transmittance
/ Typical Meteorological Year
/ United States
/ XPS (extruded polystyrene)
2025
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Detailed Building Energy Impact Analysis of XPS Insulation Degradation Using Existing Long-Term Experimental Data
by
Seo, Dong-Hyun
, Kim, Seok-Ho
, Jeong, Ju-Yeon
, Park, Soo-Hwan
, Kim, Hye-Jin
in
Aging
/ Analysis
/ Architecture and energy conservation
/ Carbon
/ Commercial real estate
/ Emission standards
/ Emissions
/ Energy conservation
/ Energy consumption
/ Energy efficiency
/ Energy industry
/ energy performance
/ Georgia
/ Green buildings
/ Greenhouse gases
/ Heat conductivity
/ Insulation
/ Kansas
/ long-term degradation
/ prototypical energy model
/ Simulation methods
/ South Korea
/ thermal transmittance
/ Typical Meteorological Year
/ United States
/ XPS (extruded polystyrene)
2025
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Detailed Building Energy Impact Analysis of XPS Insulation Degradation Using Existing Long-Term Experimental Data
Journal Article
Detailed Building Energy Impact Analysis of XPS Insulation Degradation Using Existing Long-Term Experimental Data
2025
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Overview
This study investigates the long-term impact of insulation degradation on building heating energy consumption, with a focus on extruded polystyrene (XPS) insulation. Year-by-year degradation in thermal transmittance was derived from long-term experimental data and applied to prototypical energy models of multifamily apartment buildings and office buildings. Simulations were performed using both Actual Meteorological Year (AMY) and Typical Meteorological Year (TMY) data for six cities representing Korea’s major climate zones. The results showed that insulation degradation led to a significant increase in heating energy consumption from 23.2% to 34.9% in AMY simulations and 23.5% to 36.2% in TMY simulations for multifamily apartment buildings over 15 years. The difference between the AMY and TMY estimates was within 4%, demonstrating the reliability of TMY for long-term performance assessments. Notably, the southern and Jeju zones exhibited higher sensitivity to degradation due to their relaxed insulation standards and lower initial thermal performance. Office buildings were less affected, with increases below 8%, attributed to smaller envelope areas and higher internal heat gains. These findings highlight the need for zone-specific insulation standards and differentiated energy-saving design strategies by building type to ensure long-term energy efficiency.
Publisher
MDPI AG
Subject
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