Muestra la distribución de la producción WoS, Scopus y SciELO del autor.
Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.
| Firmas del autor | |
| Nombre | MOLINA, NICOLAS |
| Género | Hombre |
| Área Principal WOS | Engineering, Mechanical; Materials Science, Multidisciplinary; Engineering, Multidisciplinary; |
| Afiliación Principal | Pontificia Universidad Católica De Chile |
| ORCID
|
0000-0002-1487-875X |
Publicaciones en Chile
Citas Totales
Afiliaciones Chilenas
| WOS | #Pub |
|---|---|
| Engineering, Mechanical | 4 |
| Materials Science, Multidisciplinary | 3 |
| Engineering, Multidisciplinary | 1 |
| Mechanics | 1 |
| Scopus | #Pub |
|---|
| SciELO | #Pub |
|---|
| Autor | Género | # Pub |
|---|---|---|
| BREVIS, W. | Hombre | 1 |
| CELENTANO, DIEGO JAVIER | Hombre | 1 |
| WALCZAK, MAGDALENA MARTA | Mujer | 4 |
| ESPINOZA-JARA, ARIEL | Hombre | 1 |
| AGUIRRE, JAVIERA | Mujer | 1 |
| JAHN, WOLFRAM | Hombre | 1 |
| Año | Firma | Institución (Incites asoc.) | H Index | Average Percentile | Impact Citation | Impact Relative World | Impact Journal Normalized Citation | Impact Category Normalized Citation | Percentage Cited | Percentage Top 1 | Percentage Top 10 | Percentage Journal Q1 | Percentage Journal Q2 | Percentage Journal Q3 | Percentage Journal Q4 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 2019 | Molina, N. | Pontificia Universidad Catolica de Chile | 0.0 | 100.0 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 |
| Título | Año | Citas | Tipo | Revista | Indexada |
|---|---|---|---|---|---|
| Application Of Fft Analysis For The Study Of Directionality Of Wear Scars In Exposure To Slurry Flow Of Varying Velocity | 2019 | 7 | artículo de investigación | Wear | WoS Scopus |
| Erosion Under Turbulent Slurry Flow: An Experimental Determination Of Particle Impact Angle, Impact Direction, And Distribution Thereof By Image Processing | 2020 | 7 | artículo de investigación | Wear | WoS Scopus |
| Erosion Under Turbulent Slurry Flow: Effect Of Particle Size In Determining Impact Velocity And Wear Correlation By Inverse Analysis | 2021 | 5 | artículo de investigación | Wear | WoS Scopus |
| Erosion Under Turbulent Flow: A Cfd Based Simulation Of Near Wall Turbulent Impacts With Experimental Validation | 2022 | 3 | artículo de investigación | Engineering Applications Of Computational Fluid Mechanics | WoS Scopus |
| Palabra Clave | #Pub |
|---|---|
| turbulent flow | 4 |
| ductile | 3 |
| mechanisms | 3 |
| slurry erosion | 3 |
| size | 2 |
| model | 2 |
| stainless-steel | 2 |
| steel | 2 |
| slurry pot | 2 |
| impact angle | 2 |
| velocity | 2 |
| wear | 2 |
| energy | 2 |
| surface | 1 |
| scaffolds | 1 |
| slurry pot test | 1 |
| rotating cylinder electrode | 1 |
| solid particle erosion | 1 |
| practical estimation | 1 |
| surface analysis | 1 |
| transport | 1 |
| validation method | 1 |
| x65 steel | 1 |
| inverse analysis | 1 |
| damage | 1 |
| erosion wear | 1 |
| fast fourier transform | 1 |
| fast fourier-transform | 1 |
| fiber alignment | 1 |
| flow simulation | 1 |
| image processing | 1 |
| impact velocity | 1 |
| resistance | 1 |
| large-scale motions | 1 |
| les-wale | 1 |
| number | 1 |
| particle erosion | 1 |
| performance | 1 |
| anisotropy | 1 |
| prediction | 1 |