LUIS ANGEL MOYA HUALLPA

LUIS ANGEL MOYA HUALLPA

LUIS ANGEL MOYA HUALLPA

Doctor of Philosophy, chiba university

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Maestro en Ciencias (UNIVERSIDAD NACIONAL DE INGENIERIA)

DOCENTE ORDINARIO - ASOCIADO
Docente a tiempo completo (DTC)
Departamento Académico de Ingeniería - Sección Ingeniería Civil

Publicaciones

Se encontraron 42 publicaciones

MOYA, L. A.(2024). Placing engineering in the earthquake response and the survival chain. Nature Communications. (pp. 1 - 12). Recuperado de: https://www.nature.com/articles/s41467-024-48624-3
MOYA, L. A.; MESIAS, F. R.; Tostado, A.; Kramer, A.; Ceferino, L.; Wiguna, S.; Adriano, B.(2024). Open Dataset of Road Obstructions Due to Collapsed Buildings From The 2023 Turkey Earthquakes. En World Conference on Earthquake Engineering. (pp. 1 - 6). MILAN. International Association of Earthquake Engineering.
JAIMES, J. A. y MOYA, L. A.(2024). Informal Urban Growth Monitoring in Earthquake Prone Areas Using SAR Satellite Images. En World Conference on Earthquake Engineering. (pp. 1 - 10). MILAN. International Association of Earthquake Engineering.
VAZQUEZ, I.; CUCCHI, C. M.; MOYA, L. A.; PARODI, E. P.; KAHHAT, R. F.(2024). Applying the multi-dimensional damage assessment (MDDA) methodology to the Cumbre Vieja volcanic eruption in La Palma (Spain). Natural Hazards. Volumen: 120. (pp. 14593 - 14624). Recuperado de: https://link.springer.com/article/10.1007/s11069-024-06775-y
VAZQUEZ, I.; CUCCHI, C. M.; MOYA, L. A.; PARODI, E. P.; KAHHAT, R. F.(2024). Applying the multi-dimensional damage assessment (MDDA) methodology to the Cumbre Vieja volcanic eruption in La Palma (Spain). Natural Hazards. (pp. 1 - 32).
VAZQUEZ, I.; BIBEROS, K. P.; MOYA, L. A.; DEVILLE, A.; ITA, D.; KAHHAT, R. F.(2024). Analyzing the behavior of beachgoers in the city of Lima and their relationship with potential plastic emissions. Marine Policy. Volumen: 170. (pp. 106403). Recuperado de: https://www.sciencedirect.com/science/article/pii/S0308597X24004019
MOYA, L. A.; MAS, E.; KOSHIMURA, S.(2023). FLOOD INUNDATION DEPTH ESTIMATION FROM SAR-BASED FLOOD EXTENT AND DEM. En International Geoscience and Remote Sensing Symposium. (pp. 337 - 340). IEEE. Recuperado de: https://ieeexplore.ieee.org/abstract/document/10283297
MOYA, L. A.(2023). Fusion of satellite imagery, strong motion and fragility curves to identify urban damaged areas during the 2023 Turkey earthquake sequence. En The 16th Japan Earthquake Engineering Symposium. (pp. 1 - 7). TOKYO. Japan Association for Earthquake Engineering.