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Paloma Pineda
Paloma Pineda
Department of Building Structures and Geotechnical Engineering. Universidad de Sevilla
Verified email at us.es
Title
Cited by
Cited by
Year
Plant biomass ashes in cement-based building materials. Feasibility as eco-efficient structural mortars and grouts
RN Gonzalez-Kunz, P Pineda, A Bras, L Morillas
Sustainable Cities and Society 31, 151-172, 2017
712017
Valorization of phosphogypsum in cement-based materials: Limits and potential in eco-efficient construction
BRS Calderón-Morales, A García-Martínez, P Pineda, R García-Tenório
Journal of building engineering 44, 102506, 2021
642021
Environmental and structural analysis of cement-based vs. natural material-based grouting mortars. Results from the assessment of strengthening works
P Pineda, A García-Martínez, D Castizo-Morales
Construction and Building Materials 138, 528-547, 2017
482017
Potential use of sugar cane bagasse ash as sand replacement for durable concrete
VT de Sande, M Sadique, P Pineda, A Bras, W Atherton, M Riley
Journal of Building Engineering 39, 102277, 2021
402021
As-built 3D heritage city modelling to support numerical structural analysis: Application to the assessment of an archaeological remain
D Antón, P Pineda, B Medjdoub, A Iranzo
Remote Sensing 11 (11), 1276, 2019
392019
Sustainability, prefabrication and building optimization under different durability and re-using scenarios: Potential of dry precast structural connections
J Navarro-Rubio, P Pineda, A García-Martínez
Sustainable Cities and Society 44, 614-628, 2019
302019
Collapse and upgrading mechanisms associated to the structural materials of a deteriorated masonry tower. Nonlinear assessment under different damage and loading levels
P Pineda
Engineering Failure Analysis 63, 72-93, 2016
292016
Seismic damage propagation prediction in ancient masonry structures: an application in the non-linear range via numerical models
P Pineda, M D Robador, M A Gil-Marti
The Open Construction & Building Technology Journal 5 (1), 2011
272011
Analysis of sand-loaded air flow erosion in heritage sites by Computational Fluid Dynamics: Method and damage prediction
P Pineda, A Iranzo
Journal of Cultural Heritage 25, 75-86, 2017
232017
Experimental characterization of moisture transport in brick masonry with natural hydraulic lime mortar
R Ramirez, B Ghiassi, P Pineda, PB Lourenço
Building and Environment 205, 108256, 2021
212021
Characterization and repair measures of the medieval building materials of a Hispanic–Islamic construction
P Pineda, MD Robador, JL Perez-Rodriguez
Construction and Building Materials 41, 612-633, 2013
202013
Activated sugarcane bagasse ash as efficient admixture in cement-based mortars: Mechanical and durability improvements
VT de Sande, M Sadique, A Bras, P Pineda
Journal of Building Engineering 59, 105082, 2022
172022
Pore structure and interdisciplinary analyses in Roman mortars: Building techniques and durability factors identification
P Pineda, S Medina-Carrasco, A Iranzo, L Borau, I García-Jiménez
Construction and Building Materials 317 (125821), 1-24, 2022
92022
Project AURA: Sustainable social housing
R Herrera, P Pineda, J Roa, S Cordero, Á López-Escamilla
Sustainable Development and Renovation in Architecture, Urbanism and …, 2017
92017
Simulation of moisture transport in fired-clay brick masonry structures accounting for interfacial phenomena
R Ramirez, B Ghiassi, P Pineda, PB Lourenço
Building and Environment 228, 109838, 2023
82023
Efficient structural design of a prefab concrete connection by using artificial neural networks
J Navarro-Rubio, P Pineda, R Navarro-Rubio
Sustainability 12 (19), 8226, 2020
62020
Assessment of ancient masonry slender towers under seismic loading: dynamic characterization of the Cuatrovitas tower
P Pineda, A Sáez
WIT transactions on the built environment 109, 615-629, 2009
52009
Ancient Materials and Singular Constructions: Numerical, Experimental, and Heritage Strategies to Preserve Masonry Structures in Seismic Areas
P Pineda
Civil and Environmental Engineering: Concepts, Methodologies, Tools, and …, 2016
32016
Eco-Strength Efficiency and Specific Embodied Carbon of Low-Co2eq Cementitious Materials Using Industrial Sugarcane Bagasse Ash
V Torres de Sande, M Sadique, A Bras, S Medina-Carrasco, T Fubara, ...
Available at SSRN 4231046, 2022
22022
Plant biomass ashes in cement-based building materials. Feasibility as eco-efficient structural mortars and grouts. Sustain. Cities Soc. 31, 151–172
RN González-Kunz, P Pineda, A Bras, L Morillas
22017
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