<p>The construction industry is negatively impacted by inefficient energy practices; therefore, sustainable home development requires energy efficiency which is&#xa0;crucial for a sustainable future. Despite previous research in Pakistan looked at each aspect separately, for optimal efficiency benefits, an integrated analysis is required. The objective of this study is to investigate how orientation, glass, HVAC systems, and Smart Composite Insulated Panels (SCIP) work together to maximize residential energy performance. The study builds verified energy models of a case study house in Pakistan using Autodesk Revit and Insight 360. Improvements in efficiency are measured by statistical analysis of design combinations. As compared to baseline, a 45° northeast orientation lowers annual energy costs by 2.35%, according to the results. Windows with triple glazing have a 42.5% lower U-value than those with double glazing. The energy cost of high-efficiency heat pumps is 50.7, whereas that of regular systems is 61.9. Brick walls have a U-value that is 64.2% higher than that of SCIP wall panels. The combined strategy allows for a 20.4% increase in efficiency. Renewable integration, data unique to climates, tenant behavior, governmental incentives, and life cycle sustainability should all be evaluated in future research. The use of multi-parameter energy modelling facilitates the adoption of integrated technology solutions by architects, engineers, and regulators by offering reliable statistical data to guide residential building design and enhance energy efficiency.</p>

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Optimizing residential building energy efficiency through smart composite insulated panel systems

  • Abdul Mateen Khan,
  • Wesam Salah Alaloul,
  • Syed Muhammad Yasir Ashrafi,
  • Hamza Aamir,
  • Sardar Kashif Ur Rehman,
  • Muhammad Abu Bakar Tariq

摘要

The construction industry is negatively impacted by inefficient energy practices; therefore, sustainable home development requires energy efficiency which is crucial for a sustainable future. Despite previous research in Pakistan looked at each aspect separately, for optimal efficiency benefits, an integrated analysis is required. The objective of this study is to investigate how orientation, glass, HVAC systems, and Smart Composite Insulated Panels (SCIP) work together to maximize residential energy performance. The study builds verified energy models of a case study house in Pakistan using Autodesk Revit and Insight 360. Improvements in efficiency are measured by statistical analysis of design combinations. As compared to baseline, a 45° northeast orientation lowers annual energy costs by 2.35%, according to the results. Windows with triple glazing have a 42.5% lower U-value than those with double glazing. The energy cost of high-efficiency heat pumps is 50.7, whereas that of regular systems is 61.9. Brick walls have a U-value that is 64.2% higher than that of SCIP wall panels. The combined strategy allows for a 20.4% increase in efficiency. Renewable integration, data unique to climates, tenant behavior, governmental incentives, and life cycle sustainability should all be evaluated in future research. The use of multi-parameter energy modelling facilitates the adoption of integrated technology solutions by architects, engineers, and regulators by offering reliable statistical data to guide residential building design and enhance energy efficiency.