Reflections on the Decay Mechanisms of Half-Timbered Walls in Traditional Spanish Architecture: Statistical Analysis of Material and Structural Damage
Abstract
:1. Introduction
2. Methodology
3. Material Degradation Phenomena
3.1. Caused by Atmospheric Agents
3.1.1. Damp Stains
3.1.2. Efflorescence
3.1.3. Erosion
3.1.4. Material Loss
3.1.5. Lacunae and Chipped Rendering
3.1.6. Dehydration and Chromatic Alteration
3.1.7. Deterioration of Cracks
3.2. Caused by Biological Agents
3.2.1. Vegetation
3.2.2. Mould and Lichens
3.2.3. Attacks from Xylophagous Insects
3.2.4. Rot
3.2.5. Biological Degradation
3.3. Caused by Anthropic Agents
3.3.1. Replacement of Infill
3.3.2. Modification of Openings
3.3.3. Geometric Modifications
3.3.4. Incompatible Repairs and Unsuitable Installations
3.3.5. Modification of Surroundings and Loss of the Roof
4. Structural Degradation Phenomena
4.1. Caused by Excessive Stress
4.1.1. Breakage and Compression of Timber
4.1.2. Crushing, Fissuring and Punching of Infill
4.2. Caused by Excessive Deformations
4.2.1. Fissuring and Lack of Union
4.2.2. Excessive Flexion of Timber Elements
4.2.3. Instability and Collapses
4.2.4. Displacement and Breakage of Knots
5. Discussion
6. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
References
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n | e | ||
---|---|---|---|
Overall sample | Locations | 333 | 5.4% |
Buildings | 950 | 3.2% | |
Walls | 1218 | 2.8% | |
Typological variants | Continuous walls | 951 | 3.2% |
Discontinuous walls | 267 | 6.0% | |
Geometric variants | Simple geometry | 742 | 3.6% |
Complex geometry | 476 | 4.5% | |
Material variants | Monolithic infill | 402 | 4.9% |
Masonry infill | 714 | 3.7% | |
Rigid screens | 91 | 10.3% | |
Flexible screens | 65 | 12.2% | |
Cladding and rendering variants | Coated | 608 | 4.0% |
Uncoated | 610 | 4.0% |
Material Lesions Caused by Atmospheric Agents | Total | Monolithic Infill | Masonry Infill | Rigid Screens | Flexible Screens | Simple Geometry | Complex Geometry |
---|---|---|---|---|---|---|---|
Damp stains due to capillarity | 10.8% | 13.4% | 9.8% | 6.6% | 3.1% | 11.2% | 10.3% |
Damps stains due to water runoff | 46.5% | 50.0% | 46.8% | 40.7% | 35.4% | 45.6% | 47.9% |
Efflorescence | 6.3% | 9.0% | 5.6% | 2.2% | 0% | 6.1% | 6.7% |
Erosion due to atmospheric action | 72.6% | 73.1% | 77.7% | 52.7% | 55.4% | 31.9% | 33.0% |
Erosion due to capillary damp | 5.3% | 8.0% | 6.2% | 4.4% | 1.5% | 6.2% | 3.8% |
Erosion due to washing | 19.4% | 16.4% | 22.5% | 8.8% | 10.8% | 17.9% | 21.6% |
Material loss | 32.3% | 35.6% | 28.3% | 52.7% | 52.3% | 31.9% | 33.0% |
Chipped rendering | 40.6% | 35.3% | 42.3% | 46.2% | 56.9% | 39.9% | 41.8% |
Chromatic alteration and dehydration | 82.3% | 85.1% | 78.4% | 98.9% | 93.8% | 84.0% | 79.8% |
Deterioration of timber cracks | 53.8% | 56.7% | 49.7% | 78.0% | 64.6% | 54.4% | 52.7% |
Rust of metal elements | 6.9% | 4.2% | 6.0% | 27.5% | 4.6% | 7.4% | 6.1% |
Carbonation and soot stains | 1.3% | 0.5% | 1.3% | 1.1% | 0.0% | 0.8% | 1.1% |
Material Lesions Caused by Biological Agents | Total | Monolithic Infill | Masonry Infill | Rigid Screens | Flexible Screens | Simple Geometry | Complex Geometry |
---|---|---|---|---|---|---|---|
Vegetation | 7.6% | 11.2% | 5.5% | 4.4% | 6.2% | 7.5% | 7.6% |
Mould and lichens | 38.2% | 45.5% | 34.2% | 44.0% | 36.9% | 38.0% | 38.4% |
Xylophagous insect attacks | 22.0% | 25.6% | 18.9% | 20.9% | 41.5% | 21.2% | 23.3% |
Rot | 21.8% | 22.9% | 17.1% | 38.5% | 50.8% | 22.2% | 21.2% |
Biological degradation | 4.2% | 0.7% | 6.2% | 4.4% | 1.5% | 3.5% | 5.3% |
Material Lesions Caused by Anthropic Agents | Total | Monolithic Infill | Masonry Infill | Rigid Screens | Flexible Screens | Simple Geometry | Complex Geometry |
---|---|---|---|---|---|---|---|
Modification of structural geometry | 8.9% | 12.4% | 8.5% | 3.3% | 1.5% | 7.4% | 11.1% |
Modification or addition of openings | 12.0% | 15.7% | 12.5% | 2.2% | 1.5% | 9.2% | 16.4% |
Replacement of infill | 11.6% | 9.5% | 15.1% | 4.4% | 6.2% | 9.6% | 14.7% |
Replacement of structural elements | 4.1% | 5.7% | 4.1% | 1.1% | 0.0% | 3.2% | 5.5% |
Installation of unsuitable elements | 35.6% | 37.8% | 38.8% | 14.3% | 13.8% | 30.7% | 43.3% |
Incompatible material repairs | 41.3% | 50.5% | 42.2% | 15.4% | 12.3% | 36.9% | 48.1% |
Transformations of the surroundings | 3.2% | 3.5% | 3.9% | 0,0% | 0% | 3.4% | 2.9% |
Partial or complete loss of roof | 8.1% | 6.5% | 7.7% | 12.1% | 9.2% | 8.4% | 7.8% |
Wall heightening | 2.5% | 3.0% | 1.5% | 0.0% | 0.0% | 1.5% | 2.3% |
Structural Lesions Caused by Excessive Stress | Total | Monolithic Infill | Masonry Infill | Rigid Screens | Flexible Screens | Simple Geometry | Complex Geometry |
---|---|---|---|---|---|---|---|
Timber compression | 1.2% | 1.2% | 1.4% | 0% | 1.5% | 1.3% | 1.1% |
Infill compression | 4.4% | 3.2% | 3.1% | 2.2% | 32.3% | 4.6% | 4.0% |
Infill fissuring | 2.5% | 1.5% | 3.6% | 0% | 0% | 2.6% | 2.3% |
Infill shear | 2.3% | 2.0% | 2.9% | 0% | 0% | 2.7% | 3.8% |
Timber breakage | 11.4% | 8.7% | 9.1% | 46.2% | 36.9% | 17.3% | 17.0% |
Structural Lesions Caused by Excessive Deformations | Total | Monolithic Infill | Masonry Infill | Rigid Screens | Flexible Screens | Simple Geometry | Complex Geometry |
---|---|---|---|---|---|---|---|
Lack of bonding | 45.8% | 48.5% | 46.2% | 39.6% | 50.8% | 45.4% | 46.4% |
Excessive buckling | 8.4% | 8.2% | 9.2% | 6.6% | 6.2% | 7.3% | 10.1% |
Instability of infill | 17.1% | 17.4% | 17.1% | 18.7% | 18.5% | 17.0% | 17.2% |
Collapse of timber | 3.0% | 3.0% | 3.1% | 5.5% | 6.2% | 3.1% | 2.9% |
Wall collapse | 5.3% | 6.5% | 5.3% | 4.4% | 6.2% | 4.2% | 7.1% |
Shift or breakage of joints | 13.1% | 15.2% | 12.7% | 17.6% | 16.9% | 11.9% | 15.1% |
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Hueto-Escobar, A.; Vegas, F.; Mileto, C.; Lidón de Miguel, M. Reflections on the Decay Mechanisms of Half-Timbered Walls in Traditional Spanish Architecture: Statistical Analysis of Material and Structural Damage. Heritage 2024, 7, 2880-2923. https://doi.org/10.3390/heritage7060136
Hueto-Escobar A, Vegas F, Mileto C, Lidón de Miguel M. Reflections on the Decay Mechanisms of Half-Timbered Walls in Traditional Spanish Architecture: Statistical Analysis of Material and Structural Damage. Heritage. 2024; 7(6):2880-2923. https://doi.org/10.3390/heritage7060136
Chicago/Turabian StyleHueto-Escobar, Alicia, Fernando Vegas, Camilla Mileto, and María Lidón de Miguel. 2024. "Reflections on the Decay Mechanisms of Half-Timbered Walls in Traditional Spanish Architecture: Statistical Analysis of Material and Structural Damage" Heritage 7, no. 6: 2880-2923. https://doi.org/10.3390/heritage7060136
APA StyleHueto-Escobar, A., Vegas, F., Mileto, C., & Lidón de Miguel, M. (2024). Reflections on the Decay Mechanisms of Half-Timbered Walls in Traditional Spanish Architecture: Statistical Analysis of Material and Structural Damage. Heritage, 7(6), 2880-2923. https://doi.org/10.3390/heritage7060136