Acoustic properties of porous concrete made from arlite and vermiculite lightweight aggregates J Carbajo San Martín, TV Esquerdo-Lloret, J Ramis-Soriano, ... Materiales de Construcción 65 (320), 1-11, 2015 | 56 | 2015 |
A model for acoustic absorbent materials derived from coconut fiber J Ramis, R Del Rey, J Alba, L Godinho, J Carbajo Materiales de construcción 64 (313), e008, 2014 | 53 | 2014 |
Perforated panel absorbers with micro-perforated partitions J Carbajo, J Ramis, L Godinho, P Amado-Mendes Applied Acoustics 149, 108-113, 2019 | 46 | 2019 |
A finite element model of perforated panel absorbers including viscothermal effects J Carbajo, J Ramis, L Godinho, P Amado-Mendes, J Alba Applied Acoustics 90, 1-8, 2015 | 42 | 2015 |
Sound absorption of acoustic resonators with oblique perforations J Carbajo, S Ghaffari Mosanenzadeh, S Kim, NX Fang Applied Physics Letters 116 (5), 2020 | 37 | 2020 |
Acoustic modeling of perforated concrete using the dual porosity theory J Carbajo, TV Esquerdo-Lloret, J Ramis, AV Nada-Gisbert, FD Denia Applied Acoustics 115, 150-157, 2017 | 27 | 2017 |
Improving the sound absorption behaviour of porous concrete using embedded resonant structures M Pereira, J Carbajo, L Godinho, J Ramis, P Amado-Mendes Journal of Building Engineering 35, 102015, 2021 | 25 | 2021 |
Acoustic behaviour of porous concrete. Characterization by experimental and inversion methods M Pereira, J Carbajo, L Godinho, P Amado-Mendes, D Mateus, J Ramis Materiales de Construcción 69 (336), 1-13, 2019 | 25 | 2019 |
Sound absorption of macro-perforated additively manufactured media J Carbajo, JM Molina-Jordá, LP Maiorano, NX Fang Applied Acoustics 182, 198204, 2021 | 20 | 2021 |
Multi-layer perforated panel absorbers with oblique perforations J Carbajo, S Ghaffari Mosanenzadeh, S Kim, NX Fang Applied Acoustics 169, 107496, 2020 | 20 | 2020 |
A numerical MFS model for computational analysis of acoustic horns L Godinho, PA Mendes, J Ramis, W Cardenas, J Carbajo Acta Acustica united with Acustica 98 (6), 916-927, 2012 | 19 | 2012 |
3D numerical modelling of acoustic horns using the method of fundamental solutions L Godinho, P Amado-Mendes, J Carbajo, J Ramis-Soriano Engineering Analysis with Boundary Elements 51, 64-73, 2015 | 18 | 2015 |
Assessment of methods to study the acoustic properties of heterogeneous perforated panel absorbers J Carbajo, J Ramis, L Godinho, P Amado-Mendes Applied Acoustics 133, 1-7, 2018 | 16 | 2018 |
Sound propagation analysis on sonic crystal elastic structures using the Method of Fundamental Solutions (MFS) PG Santos, J Carbajo, L Godinho, J Ramis Computers, Materials and Continua 43 (2), 109-136, 2014 | 15 | 2014 |
Modeling of grooved acoustic panels J Carbajo, J Ramis, L Godinho, P Amado-Mendes Applied Acoustics 120, 9-14, 2017 | 12 | 2017 |
Numerical evaluation of the vibration reduction index for structural joints J Ramis, E Segovia, A Jesus, J Carbajo, L GODINHO Archives of acoustics 37 (2), 189–197, 2012 | 12 | 2012 |
On the use of Perforated sound absorption systems for variable acoustics room design A Pereira, A Gaspar, L Godinho, P Amado Mendes, D Mateus, J Carbajo, ... Buildings 11 (11), 543, 2021 | 11 | 2021 |
Numerical modelling of finite periodic arrays of acoustic resonators using an efficient 3D BEM model P Amado-Mendes, L Godinho, J Carbajo, J Ramis Engineering Analysis with Boundary Elements 102, 73-86, 2019 | 10 | 2019 |
Determination of the elastic parameters of a material from a standardized dynamic stiffness testing E Segovia, J Torres, J Carbajo, J Ramis, J Arenas Journal of Sound and Vibration 460, 114885, 2019 | 8 | 2019 |
Analysis of the underwater radiated noise generated by hull vibrations of the ships FJ Rodrigo, J Ramis, P Poveda, J Carbajo, E Segovia Sensors 23 (2), 1035, 2023 | 7 | 2023 |