A dataset provided by the European Space Agency

Name Multiscale Boiling - Reference mUltiscale Boiling Investigation (RUBI)
Operational Nomenclature Multiscale Boiling
URL https://hreda.esac.esa.int/hreda/#/pages/investigation;investigationAcronym=MultiscaleBoiling_ISS
DOI https://doi.org/10.57780/esa-djofhku
Platform ISS
HRE-E3P Category Physical Sciences
Mission Inc61, Inc62, Inc63, Inc64
Team Coordinator Name Peter Stephan
Version 1.0
Team Members MultiscaleBoiling_ISS
Publication G Huber, S Taguy, M Sagan, C Colin, 2017, Direct numerical simulation of nucleate pool boiling at large microscopic contact angle and moderate Jakob number, International Journal of Heat and Mass Transfer, 113, 662-682

D Brutin, L Tadrist, 2004, Pressure drop and heat analysis of flow boiling in a minichannel: influence of the inlet condition on two phase flow stability, International Journal of Heat and Mass Transfer, 47, 10-11, 2365-2377, DOI: https://doi.org/10.1016/j.ijheatmasstransfer.2003.11.007

M Barthès, 2005, Ebullition sur site isolé: étude expérimentale de la dynamique de croissance d’une bulle et des transferts associés, diploma thesis

M Barthès, C Reynard, R Santini, L Tadrist, 2005, Détermination de la croissance géométrique d´une bulle de vapeur et des transferts de chaleur associés: Influence des incondensables sur le seuil de déclenchement des instabilités thermoconvectives, Mécanique et Industrie

C Reynard, M Barthès, R Santini, L Tadrist, 2005, Experimental study of the onset of the 3D oscillatory C. convection around an air or vapour bubble: influence on heat transfer, Experimental Thermal and Fluid Science, 29, 7, 783-793, DOI: 10.1016/j.expthermflusci.2005.03.001

Schweitzer, 2005, Design and assembly of an experimental set up for high resolution measurements of wall temperature distribution and bubble shape in nucleate boiling, diploma thesis (in German language), , , Darmstadt University of Technology

C Sodtke, J Kern, N Schweitzer, P Stephan, 2005, High resolution measurements of wall temperature distribution underneath a single vapour bubble under low gravity conditions, International Journal of Heat and Mass Transfer, 49, 5-6, 1100-1106, DOI: 10.1016/j.ijheatmasstransfer.2005.07.054

GP Celata, M Cumo, M Gervasi, G Zummo, 2006, Quenching Experiments of Hot Tubes in Microgravity, 6th ECI International Conference on Boiling Heat Transfer, Spoleto, 7-12 May 2006

GP Celata, M Cumo, M Gervasi, G Zummo, 2006, Flow Pattern Analysis of Flow Boiling in Microgravity, 6th ECI International Conference on Boiling Heat Transfer, Spoleto, 7-12 May 2006

S David, K Sefiane, T Tadrist, 2006, Experimental investigation of the effect of thermal properties of the substrate in the wetting and evaporation of sessile drops, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 298, 1-2, 108-114, DOI: https://doi.org/10.1016/j.colsurfa.2006.12.018

A Urbano, S Tanguy, G Huber, C Colin, 2018, Direct numerical simulation of nucleate boiling in micro-layer regime, International Journal of Heat and Mass Transfer, 123, 1128-1137

L Tadrist, 2007, Review on two-phase flow instabilities in narrow spaces, International Journal of Heat and Fluid Flow, 28, 1, 54-62, DOI: https://doi.org/10.1016/j.ijheatfluidflow.2006.06.004

M Barthès, C Reynard, R Santini, L Tadrist, 2007, Non-condensable gas influence on the Marangoni convection during a single vapour bubble growth in a subcooled liquid, Europhysics Letters, 77, 1

B Verthier, GP Celata, G Zummo, C Colin, J Follet, 2009, Effect of Gravity on Film Boiling Heat Transfer and Rewetting Temperature during Quenching, Microgravity Science and Technology, 21, Suppl 1, S185-S191

O Kannengieser, C Colin, W Bergez, 2010, Pool Boiling with Non-condensable Gas in Microgravity: Results of a Sounding Rocket Experiment, Microgravity Science and Technology, 22, 447-454

A Salim, C Colin, ME Dreyer, 2010, Experimental investigation of a bubbly flow in an open capillary channel in microgravity conditions, Microgravity Science and Technology, 22, 87-89

A Salim, C Colin, ME Dreyer, A Grah, 2010, Laminar bubbly flow in on open capillary channel in microgravity, International Journal of Multiphase Flows, 36, 707-719

O Kannengieser, C Colin, W Bergez, 2011, Influence of gravity on pool boiling on a flat plate: Results of parabolic flights and ground experiments, Experimental Thermal and Fluid Science, 35, 788-796

C Colin, J Fabre, A Kamp, 2012, Turbulent bubbly flow in a pipe under gravity and microgravity conditions, Journal of Fluid Mechanics, 711, 469-515

CWM van der Geld, C Colin, QIE Segers, VH Pereira Da Rosa, HN Yoshikawa, 2012, Forces on a boiling bubble in a developing boundary layer, in microgravity with gjitter and in terrestrial conditions, Physics of Fluids, 24, 082104, DOI: 10.1063/1.4743026

Hollander, 2013, Contribution à la modélisation de la croissance d’une bulle de vapeur sur une plaque surchauffée: acte élémentaire d’ébullition, ULB-TIPs Master Thesis

M Hernando Revilla, 2014, Modeling of nucleate boiling: Single vapor bubble growth on a superheated surface, ULB-TIPs Master Thesis

M Narcy, E De Malmazet, C Colin, 2014, Flow boiling in tube under normal gravity and microgravity conditions, International Journal of Multiphase Flows, , 50-63

S Tanguy, B Lalanne, F Couderc, C Colin, 2014, Benchmarks and numerical methods for the simulation of boiling flows, Journal of Computational Physics, 264, 1-22

M Narcy, C Colin, 2015, Two-phase pipe flow in microgravity with and without phase change: recent progress and future prospects, Interfacial Phenomena and Heat Transfer, 3, 1, 1-17, DOI: http://dx.doi.org/10.1615/InterfacPhenomHeatTransfer.2015012413

Margaritis Kostoglou, Theodoros D. Karapantsios, C Colin, O Kannengieser, 2016, Analysis of bubble growth on a hot plate during decompression in microgravity, International Journal of Thermal Sciences, 106, 102-111

VS Ajaev, Oleg A. Kabov, 2017, Heat and Mass Transfer Near Contact lines on heated surfaces, International Journal of Heat and Mass Transfer, 108, 918-932

C Colin, O Kannengieser, W Bergez, M Lebon, J Sebilleau, M Sagan, S Tanguy, 2017, Nucleate Pool Boiling in microgravity: recent progress and future prospects, Comptes Rendus Mécanique, 345, 21-34

M Lebon, J Sebilleau, C Colin, 2018, Dynamics of growth and detachment of an isolated bubble on an inclined surface, Physical Review Fluids, 3, 073602

AY Rednikov, P Colinet, 2017, Asymptotic analysis of the contact-line microregion in a pure-vapor atmosphere, Physical Review Fluids, 2, 124006

Oleg A. Kabov, DV Zaitsev, DP Kirichenko, VS Ajaev, 2017, Interaction of levitating microdropletswith moist air flow in the contact line region, Nanoscale and Microscale Themophysical Engineering, 21, 2, 60-69, DOI: https://doi.org/10.1080/15567265.2017.1279249

Paolo Di Marco, Alekos Ioannis Garivalis, 2022, Isolated bubbles growing and detaching within an electric field in microgravity, Applied Thermal Engineering, 212, 118538, Elsevier, DOI: https://doi.org/10.1016/j.applthermaleng.2022.118538

Oleg A. Kabov, Axel Sielaff, D Mangini, M. Q. Raza, Alekos Ioannis Garivalis, M. Zupančič, Sam Dehaeck, Sotiris Evgenidis, C Jacobs, D. Van Hoof, O. Oikonomidou, X Zabulis, A. Bender, F. Ronshin, Martin Schinnerl, J Sebilleau, C Colin, Paolo Di Marco, Theodoros D. Karapantsios, I Golobič, A Rednikov, P Colinet, P Stephan, L Tadrist, 2022, The multiscale boiling investigation on-board the International Space Station: An overview, Applied Thermal Engineering, 205, 117932, , DOI: https://doi.org/10.1016/j.applthermaleng.2021.117932

Paolo Di Marco, W Grassi, 2002, Motivation and Results of a Long-Term Research on Pool Boiling Heat Transfer in Low Gravity, International Journal of Thermal Sciences, 41, 7, 567-585, DOI: https://doi.org/10.1016/S1290-0729(02)01351-0

Paolo Di Marco, W Grassi, S Hosokawa, G Memoli, T Takamasa, A Tomiyama, 2003, Influence of Electric Field on Single Gas-Bubble Growth and Detachment in Microgravity, International Journal of Multiphase Flow, 29, 4, 559-578

D Brutin, F Topin, L Tadrist, 2003, Experimental study of unsteady convective boiling in heated minichannels, International Journal of Heat and Mass Transfer, 46, 16, 2957-2965, DOI: https://doi.org/10.1016/S0017-9310(03)00093-0
Temporal Coverage 2019-10-04T00:00:00Z/2021-04-17T00:00:00Z
Mission Description The HRE Data Archive (HREDA) collects information and data of investigations funded or co-funded by ESA’s Directorate for Human and Robotic Exploration (HRE) and performed on microgravity and ground-based facilities since 1972.
Creator Contact https://hreda.esac.esa.int/hreda/#/pages/help/contact
Date Published 2023-09-12T18:02:29Z
Last Update 2024-11-21
Publisher And Registrant European Space Agency
Credit Guidelines European Space Agency, 2023, 'Multiscale Boiling', 1.0, European Space Agency, https://doi.org/10.57780/esa-djofhku