Assessment of Post-Earthquake Damage: St. Salvatore Church in Acquapagana, Central Italy
Abstract
:1. Introduction
2. The case study of San Salvatore church in Acquapagana
2.1. Territorial Overview
2.2. Historical Description and Material Analysis of the Building
- Good quality of the mortar.
- Presence of bond stones, or stones passing through the entire thickness of the wall.
- Shape of the elements.
- Dimension of the elements.
- Presence of staggering in the vertical joints.
- Presence of horizontal rows.
- Good quality of resistant elements.
2.3. The Identification of Existing Macro-Elements
- Overturning of the façade (mechanism 1)
- Mechanisms of the upper part of the façade (mechanism 2)
- In-plane mechanisms of the façade (mechanism 3)
- Transversal response of the nave (mechanism 5)
- Longitudinal response of the lateral wall, in-plane (mechanism 6)
- Triumphal arches (mechanism 13)
- Overturning of the apse (mechanism 16)
- Shear mechanism of the aps (mechanism 17)
- Vaults of the aps (mechanism 18)
- Mechanism of the element of the roof-lateral walls of the nave (mechanism 19)
- Interaction with annexed buildings (mechanism 25)
- Bell tower (mechanism 27)
- Upper portion of the bell tower (mechanism 28)
2.4. Two Earthquake Episodes in Comparison: the 1997 Umbria-Marche Earthquake and the 2016 Central Italy Earthquake
2.4.1. The 1997 Umbria-Marche Earthquake
2.4.2. The 2016 Central Italy Earthquake
3. Discussion
- In the bell tower, an additional steel structure, tying together the four walls of the bell tower, could guarantee ductility and reduce torsional movement of the upper portion.
- The existing independent steel structure, used to carry the bells, has shown a satisfactory response to seismic actions and probably has reduced the damage to the masonry structure.
4. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Microseismic Intensity | Date Time | Localization | Epicenter Intensity | Moment Magnitude |
---|---|---|---|---|
10 | 30 04 1279 18:00 | Camerino | 9 | 6.31 |
8 | 03 05 1785 02:30 | Alta valle del Chienti | 7 | 5.14 |
6 | 28 07 1799 22:05 | Appennino Marchigiano | 9 | 6.13 |
NF | 10 09 1919 16:57:20 | Piancastagnaio | 7-8 | 5.32 |
6-7 | 19 09 1979 21:35:37 | Valnerina | 8-9 | 5.86 |
4 | 13 10 1986 05:10:01 | Appennino Umbro-Marchigiano | 5-6 | 4.65 |
3 | 03 07 1987 10:21:58 | Porto San Giorgio | 5.09 | |
4-5 | 04 06 1993 21:36:51 | Nocera Umbra | 5-6 | 4.50 |
4-5 | 05 06 1993 19:16:17 | Gualdo Tadino | 6 | 4.74 |
4 | 15 07 1997 08:51 | Appennino Umbro-Marchigiano | 4-5 | 3.69 |
5-6 | 03 09 1997 22:07:30 | Appennino Umbro-Marchigiano | 5-6 | 4.56 |
5 | 07 09 1997 23:28:06 | Appennino Umbro-Marchigiano | 5-6 | 4.38 |
4-5 | 09 09 1997 16:54 | Appennino Umbro-Marchigiano | 5-6 | 4.07 |
4-5 | 10 09 1997 06:46:51 | Appennino Umbro-Marchigiano | 5 | 4.16 |
7 | 26 09 1997 00:33:13 | Appennino Umbro-Marchigiano | 5.70 | |
6-7 | 03 10 1997 08:55:22 | Appennino Umbro-Marchigiano | 5.25 | |
6 | 06 10 1997 23:24:53 | Appennino Umbro-Marchigiano | 5.46 | |
7 | 14 10 1997 15:23:11 | Appennino Umbro-Marchigiano | 7-8 | 5.65 |
4-5 | 09 11 1997 19:07:33 | Appennino Umbro-Marchigiano | 5-6 | 4.90 |
5 | 07 02 1998 00:59:45 | Appennino Umbro-Marchigiano | 5-6 | 4.43 |
4-5 | 16 02 1998 13:45:45 | Appennino Umbro-Marchigiano | 5 | 4.03 |
5-6 | 21 03 1998 16:45:09 | Appennino Umbro-Marchigiano | 6 | 5.03 |
5 | 26 03 1998 16:26:17 | Appennino Umbro-Marchigiano | 6 | 5.29 |
5-6 | 05 04 1998 15:52:21 | Appennino Umbro-Marchigiano | 6 | 4.81 |
4-5 | 11 08 1998 05:22:59 | Appennino Umbro-Marchigiano | 5-6 | 4.53 |
4-5 | 29 11 1999 03:20:34 | Appennino Centrale | 5-6 | 4.38 |
NF | 09 12 2004 02:44:25 | Zona Teramo | 5-6 | 4.18 |
2-3 | 12 04 2005 00:31:52 | Maceratese | 4-5 | 4.16 |
4-5 | 15 12 2005 13:28:39 | Valle del Topino | 5-6 | 4.66 |
3-4 | 10 04 2006 19:03:36 | Maceratese | 5 | 4.51 |
MASONRY BLOCKS OF SQUARED STONE AND PEBBLES, TRIPLE FACADE | |||||||||||||
PHOTOS | |||||||||||||
Front | Corner | Inner masonry | |||||||||||
SCHEMES | |||||||||||||
Axonometry | Front | Section | |||||||||||
Masonry made up of two facades built with squared blocks of stones. with the interposition of a pebble filling.Resistant elements with variable dimensions, but with defined edges. Wall texture which respects horizontal lines, partial offsets of vertical joints and presence of transversal stone joints. | DESCRIPTION | ||||||||||||
Spruce travertine squares, also called sponge. | MATERIAL | ||||||||||||
Variable elements’ dimensions (external facade): s = 10 ÷ 20 cm h = 10 ÷ 25 cm l = 30 ÷ 70 cm | GEOMETRY | ||||||||||||
P.D. | MA. | F.EL. | S.G. | RE. EL. | O.R. | D.EL. | Category | Vertical | Out of plane | In plane | ANALISYS | ||
R | R | R | PR | R | R | R | Schore method | A | A | A | |||
Legend | P.D. MA. F. EL. S.G. RE. EL. O.R. D.EL. | Presence of bondstones Good quality of the mortar Shape of the elements Presence of staggering in the vertical joints Good quality of resistant elements Presence of horizontal rows Dimension of the elements |
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Sferrazza Papa, G.; Silva, B. Assessment of Post-Earthquake Damage: St. Salvatore Church in Acquapagana, Central Italy. Buildings 2018, 8, 45. https://doi.org/10.3390/buildings8030045
Sferrazza Papa G, Silva B. Assessment of Post-Earthquake Damage: St. Salvatore Church in Acquapagana, Central Italy. Buildings. 2018; 8(3):45. https://doi.org/10.3390/buildings8030045
Chicago/Turabian StyleSferrazza Papa, Gessica, and Benedetta Silva. 2018. "Assessment of Post-Earthquake Damage: St. Salvatore Church in Acquapagana, Central Italy" Buildings 8, no. 3: 45. https://doi.org/10.3390/buildings8030045
APA StyleSferrazza Papa, G., & Silva, B. (2018). Assessment of Post-Earthquake Damage: St. Salvatore Church in Acquapagana, Central Italy. Buildings, 8(3), 45. https://doi.org/10.3390/buildings8030045