Submitted:
27 March 2025
Posted:
27 March 2025
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Abstract
Keywords:
1. Introduction
2. Literature Review
2.1. ETFE as an Adaptive Material
2.2. Auto Heal as an Adaptive Material
2.2.1. Self-Healing Materials in Facades
2.2.2. Polymer Materials in Facades
2.2.3. Auto-Healing Materials with Ion-Dipole Interactions
2.2.4. Research Gap Analysis
3. Methodology
3.1. Simulation Setup and Tools

3.2. Façade Scenarios
3.3. Performance Metrics
4. Analysis and Findings
4.1. Baseline Performance
4.2. ETFE Façade Performance
4.3. Auto Heal Façade Performance



| Facade Scenario | Annual HVAC Energy (Wh/m²) | Discomfort Hours | PPD (%) | PMV |
| ECBC Base Case | 96,192.27 | 1588.27 | 25.28 | +0.82 |
| ETFE Facade | 94,884.50 | 1530.67 | 24.11 | +0.76 |
| Auto Heal Facade | 92,905.48 | 1477.53 | 22.64 | +0.67 |

| S.No | Material | Fuel totals (Wh/m²) | Percentage Savings (%) |
| 1 | ECBC | 96192.27 | Base Case |
| 2 | ETFE | 94884.5 | 1.36 |
| 3 | Auto Heal | 92905.48 | 3.41 |

6. Results
7. Conclusion
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
Abbreviations
| ETFE | Ethylene Tetrafluoroethylene |
| ECBC | Energy Conservation Building Code |
| ASHRAE | American Society of Heating, Refrigerating and Air-Conditioning Engineers |
| PMV | Fanger Predicted Mean Vote |
| PPD | Fanger Predicted Percentage of Dissatisfied |
| PMMA | Polymethyl methacrylate |
| PVC | Polyvinyl chloride |
| HVAC | Heating, Ventilation, and Air Conditioning. |
| METS | Middle East Testing Services |
| TGA | Thermogravimetric analysis |
| BPS | Building Performance Simulation |
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