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1.1 | 11:00 | Jionghui Liu, Daniel Orejon, Jonathan G Terry, Anthony J Walton, Camelia Dunare and Khellil Sefiane | Effect of cavity diameter and pressure on pool boiling bubble dynamics |
1.2 | 11:20 | Michał Pysz, Stanisław Głuch and Dariusz Mikielewicz | Study of R-1233ZD(E) convective boiling heat transfer at moderate reduced temperatures |
1.3 | 11:40 | Thien-Binh Nguyen, Quoc Vo, Xiaopeng Shang, Farith Buang and Tuan Tran | Bypassing film boiling state for maintaining high boiling heat transfer efficiency by dielectrophoretic effect |
1.4 | 12:00 | Hannah R. Moran, Victor Voulgaropoulos, Shunsuke Yamada, Omar K. Matar and Christos N. Markides | Detailed experimental characterisation of flow boiling in horizontal pipes using laser-diagnostic techniques |
1.5 | 12:20 | Muhammad Wakil Shahzad, Kim Choon Ng, Muhammad Ahmad Jamil and Ben Bin Xu | Adsorbent coated adsorption cycle performance investigation |
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4.1 | 14:05 | Mike Rabbitt | Matching computational predictions with temperature measurements of the Dungeness B dome |
4.2 | 14:25 | Ilyas Khurshid, Imran Afgan, Muritala Alade Amidu and Yacine Addad | The effect of metal content in molten corium on concrete ablation: new insights with thermochemical approach |
4.3 | 14:45 | Marcus Dahlfors, Jivan Khatry, Marat Margulis, Harvey Plows, Jinfeng Li, Simon C. Middleburgh, India Marshall, Michael Rushton and William E. Lee | Open-Access Water Thermal Hydraulics Facility Development in North Wales |
4.4 | 15:05 | Graham Macpherson, Carolyn Howlett, Richard Underhill, Tim Houghton, Shuisheng He, Hector Iacovides, Juan Uribe, Steve Graham and Charles Moulinec | The UK Nuclear Innovation Programme - Thermal hydraulics research, innovation and industrial capability development |
4.5 | 15:25 | Haani Rahman, Timothy Hunter and Peter Heggs | Simplified heat transfer model for buffer storage of highly active raffinate on the Sellafield site |
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11.1 | 09:50 | Efe Öztabak, Oğuzhan Gökkaya and Hojin Ahn | Experimental investigation on heat transfer characteristics of supercritical carbon dioxide flowing in horizontal and vertical microtubes |
11.2 | 10:10 | Federico Municchi, Hannah Moran, Ismail El Mellas, Omar Matar and Mirco Magnini | Direct numerical simulations of flow boiling in microchannels |
11.3 | 10:30 | Vivian Lee, Gary Henderson and Tassos Karayiannis | Evaluation of flow boiling pressure drop models for HFE-7200 in multi-microchannels |
11.4 | 10:50 | Ren Yang, Yi Wang, Yulong Ding and Yongliang Li | Numerical simulation on flow boiling heat transfer of PCM-R134A slurry in a microchannel |
11.5 | 11:10 | Alessio Lavino, Edward Smith, Mirco Magnini and Omar Matar | Role of surface topography in pool boiling systems via molecular dynamics simulations |
11.6 | 11:30 | Xiaojing Ma, Wen Li, Jinliang Xu, Yuying Yan, Yan Wang and Lei Lei | Effect of wall subcoolings on dropwise condensation with inverted trapezoid nano-structure surface |
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12.1 | 09:50 | Adnan Safar, Max Vasey and Peter Heggs | Modelling the heating and cooling cycles of a sodium sulphur battery |
12.2 | 10:10 | Marco Bernagozzi, Anastasios Georgoulas, Nicolas Miche, Cedric Rouaud and Marco Marengo | Comparison between different battery thermal management systems during fast charge cycles |
12.3 | 10:30 | Erik Resendiz-Mora, Valerie Dupont, Tariq Mahmud and Peter John Heggs | Transient heating of a packed bed comprising two different refractory materials |
12.4 | 10:50 | Klarissa Niedermeier, Stefan Sinning, Franziska Müller-Trefzer, Luca Marocco and Thomas Wetzel | Liquid metal as heat transfer fluid in dual-media sensible and latent heat storage |
12.5 | 11:10 | Renaldo Nicholls, Mohammad Moghimi and Alison Griffiths | A comparative study of corrugated fins during melting of phase change material in a double pipe heat exchanger |
12.6 | 11:30 | George Thomas Staley, Mohammad Jadidi and Yasser Mahmoudi | A numerical study of active and passive heat transfer enhancement in latent heat thermal energy storage devices |
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13.1 | 13:15 | Constantinos Katsamis, Tim Craft, Hector Iacovides and Juan Uribe | URANS and LES computations for the heat transfer characteristics of wall bounded buoyant flows |
13.2 | 13:35 | Elin Vesper, Sebastian Tietjen, Manu Chakkingal and Sasa Kenjeres | Studying effects of fins and conductive horizontal walls on natural convection in differentially heated enclosures |
13.3 | 13:55 | Minto Kavyan, Hector Iacovides, Alex Skillen and Andrea Cioncolini | URANS modelling for mixed convection thermal transients in a U-bend |
13.4 | 14:15 | Georges Saliba, Vincent Raimbault, Rémi Gilblas and Lucien Baldas | Pulsed impinging jets produced by fluidic oscillators can improve heat transfer |
13.5 | 14:35 | Thien-Binh Nguyen, Dongdong Liu, Harshal Raut, Amitabh Bhattacharya, Atul Sharma and Tuan Tran | Enhancement of convective heat transfer using magnetically flapping fin array |
13.6 | 14:55 | Jonas Bender, Konrad Dubil, Felix Hoffmann, Benjamin Dietrich, Martin Doppelbauer and Thomas Wetzel | Spray cooling of plain surfaces with a highly viscous model fluid |
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Author(s)
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Title
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P.1.1 | Abdallah Ahmed, Edward Wright, James Wright and Yuying Yan | Numerical investigation of slot jet reverse impingement |
P.1.2 | Abdallah Ahmed, Edward Wright, Alexandros Terzis and Yuying Yan | Experimental heat transfer investigation of single reverse jet impingement |
P.1.3 | Tongyan Zeng, James Jewkes and Essam Abo-Serie | Conformal cooling channel shape optimisation for high-pressure aluminium die-casting tools using the adjoint method |
P.1.4 | Muhammad Ahmad Jamil, Kim Choon Ng, Ben Bin Xu and Muhammad Wakil Shahzad | Sensitivity analysis of a novel humidifier retrofitted indirect evaporative cooler |
P.1.5 | Daniel Hawkins and Sung In Kim | Software for the rapid design and analysis of condenser heat exchangers |
P.1.6 | Khaloud Al Balushi, Gail Duursma, Prashant Valluri, Khellil Sefiane and Daniel Orejon | Evaporation of binary mixture droplets on structured surfaces |
P.1.7 | Tuo Hou, Yong Ren and Yuying Yan | Numerical investigation of the coupling effect of heat and vibration on triggering the release kinetics of double emulsion for drug delivery |
P.1.8 | Akam Aboubakri, Yigit Akkus, Abdolali Sadaghiani, Khellil Sefiane and Ali Kosar | On the evaporation dynamics of array of cylindrical aqueous droplets |
P.1.9 | Arun Mambazhasseri Divakaran, Essam Abo-Seiri, James Jewkes and Evangelos Gkanas | Heat transfer performance enhancement on wheel hub motor with fin adjoint optimisation |
P.1.10 | Natalie Schwerdtfeger, Katharina Jasch and Stephan Scholl | Enhanced vacuum condensation in vertical tubes in the presence of noncondensable gas |
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Author(s)
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Title
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P.2.1 | Amy Jardine, Hector Iacovides, Tim Craft and Andrea Cioncolini | Validation of turbulence models for flow and heat transfer over a backward-facing step |
P.2.2 | Saleh Alshaaili, Sean Malkeson and Nilanjan Chakraborty | Laminar natural convection of Bingham fluids in a trapezoidal enclosure heated from the bottom |
P.2.3 | Samuel Wakefield and Milan Mihajlovic | Numerical simulation of the onset of turbulence in natural convection loops |
P.2.4 | Konrad Dubil, Thomas Wetzel and Benjamin Dietrich | Predicting convective heat transfer during unsteady flow in cubic periodic open cellular structures |
P.2.5 | Hector Amino, Cedric Flageul, Sofiane Benhamadouche, Iztok Tiselj, Bertrand Carissimo and Martin Ferrand | A second order conservative time-staggered scheme for all speed flow |
P.2.6 | Adrien Grenouilloux, Vincent Moureau, Ghislain Lartigue, Pierre Bénard and Paul Ferrey | Feature-based mesh adaptation applied to the large-eddy simulation of multiple jets impinging on a surface |
P.2.7 | Giulia Righetti, Giovanni Longo, Claudio Zilio and Simone Mancin | Lattice frame material geometry optimization for air heat transfer |
P.2.8 | Tzu-Hsuan Chiu and Chao-An Lin | Simulations of natural convection for FENE-P fluid on GPU cluster |
P.2.9 | Fatema Alhendal, Yousuf Alhendal and Mohammad Alhendal | The effect of changing surface tension with temperature on the coalescence of two bubbles in zerogravity condition |
P.2.10 | Adriano Cerminara | Heat flux and coolant concentration in hypersonic turbulent flow with transpiration cooling |
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P.3.2 | Nabeel Abed, Imran Afgan, Andrea Cioncolini, Hector Iacovides and Adel Nasser | Thermal-hydraulic evaluation of various strip shapes and nanofluids on the performance of parabolic trough collectors |
P.3.3 | Foteini Zagklavara, Peter Jimack, Nikil Kapur, Osvaldo Querin and Harvey Thompson | CFD investigation of the effect of heater spacing on DNA amplification and pressure drop in a microfluidic PCR device |
P.3.4 | William Alexander | Performance of a linear, high flux, foil and slot thermal transfer (FASTT) device |
P.3.5 | Yingai Jin, Luyuan Nie, Liang Li, Fuxin Ma and Yaohong Xing | A fast response main steam temperature control system based on heat transfer model and DCS |
P.3.6 | Muhammed Abdullahi, Muyiwa Oyinlola, Abdulhafiz Ahmed and Muyideen Balogun | Investigating the performance of a solar collector with plastic bottles as glazing cover |
P.3.7 | Alexandros Askounis, Duncan Osborne and Maryam Parsa | How do colloidal droplets evaporate when at an incline? |
P.3.9 | Mohammed Sardar, Alex Skillen, Samuel Draycott, Małgorzata J. Zimoń and Alistair Revell | A machine learning framework for prediction of discretisation errors on coarse CFD grids |
P.3.10 | Thomas Prevenslik | Near-field heat transfer by the Planck law |