Search Results - "Flórez Mera, Juan Pablo"

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  1. 1

    Permeability model of sintered porous media: analysis and experiments by Flórez Mera, Juan Pablo, Chiamulera, Maria E., Mantelli, Marcia B. H.

    Published in Heat and mass transfer (01-11-2017)
    “…In this paper, the permeability of porous media fabricated from copper powder sintering process was modeled and measured, aiming the use of the porosity as…”
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    Journal Article
  2. 2

    Visualization and experimental analysis of Geyser boiling phenomena in two-phase thermosyphons by Londoño Pabón, Nelson Yurako, Florez Mera, Juan Pablo, Serafin Couto Vieira, Gabriel, Barbosa Henriques Mantelli, Marcia

    “…•The Geyser Boiling Phenomenon (GBP) in a two-phase closed thermosyphon was studied.•A new phenomenological description and explanation for GBP was…”
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    Journal Article
  3. 3
  4. 4

    Study of a new thin flat loop heat pipe for electronics by Domiciano, Kelvin Guessi, Krambeck, Larissa, Mera, Juan Pablo Floréz, Mantelli, Marcia Barbosa Henriques

    Published in Heat and mass transfer (01-11-2023)
    “…In this paper, a simple but detailed new theoretical model is developed for a thin loop heat pipe (LHP) to predict: the overall thermal resistance, the…”
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    Journal Article
  5. 5

    New water-stainless steel rod-plate heat pipe: model and experiments by de Araújo, Elvis Falcão, Mera, Juan Pablo Flórez, Cisterna, Luis H. R., Mantelli, Márcia Barbosa Henriques

    Published in Heat and mass transfer (01-06-2024)
    “…This work proposes a novel flat heat pipe technology, namely the rod-plate heat pipe, formed by the diffusion bonding of a set of parallel rods, of around 8 mm…”
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    Journal Article
  6. 6

    Experimental study of channel roughness effect in diffusion bonded pulsating heat pipes by Betancur-Arboleda, Luis Alonso, Flórez Mera, Juan Pablo, Mantelli, Marcia

    Published in Applied thermal engineering (05-02-2020)
    “…•This research reports the roughness effect in diffusion bonded pulsating heat pipes.•The device with higher roughness at evaporator zone increases thermal…”
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    Journal Article
  7. 7