Dr. Malleswararao Katamala

Profile

Academic positionPost Doc
Research fieldsTechnical Thermodynamics,Energy Process Engineering
KeywordsCascaded thermal system, Thermochemical energy, Heat pump, Energy efficiency, Waste heat recovery
Honours and awards

2023: DLR-DAAD Postdoctoral Fellowship

Current contact address

CountryIndia
CityBengaluru
InstitutionIndian Institute of Science (IISC)
InstituteMechanical Engineering

Host during sponsorship

Priv. Doz. Dr. Marc Philipp LinderInstitut für Technische Thermodynamik, Deutsches Zentrum für Luft- und Raumfahrt e.V. (DLR), Stuttgart
Start of initial sponsorship01/08/2024

Programme(s)

2024Humboldt Research Fellowship Programme for Postdocs

Publications (partial selection)

2026K Malleswararao, Eva Klocklow, Alexander Wimmer, Marc Linder, Inga Bürger Hydrogen based heat pumps using metal hydrides: Synergies between H2 infrastructure and industrial heat supply. In: International Journal of Hydrogen Energy, 230, 2026, 154794
2026K Malleswararao, Inga Bürger, Aldo Cosquillo Mejia, Seon Tae Kim, Marc Linder: Innovative approaches to waste heat recovery: Coupling high temperature vapour compression heat pumps with salt hydrate thermochemical systems. In: Applied Energy, 405, 2026, 127229
2025K Malleswararao, Eva Klocklow, Marc Linder, Bürger Inga: Advanced Industrial Heat Supply: H2 Infrastructure and Metal Hydride Synergies for increased Energy Efficiency. In: Onder Kizilkan, Serpil Celik Toker, Gamze Soyturk, PROCEEDINGS of the 8th International Conference on Polygeneration. ISBN 978-625-00-3499-6, 2025. 137-141
2025K Malleswararao, Christian Brack, Andrea Hanke, Bürger Inga, Marc Philipp Linder: Evaluation of K2CO3/H2O system for Thermal Storage and Heat Pumps: Insights from Experimental Studies. In: Onder Kizilkan, Serpil Celik Toker, Gamze Soyturk, PROCEEDINGS of the 8th International Conference on Polygeneration. ISBN 978-625-00-3499-6, 2025. 292-297
2024K. Malleswararao, Inga Bürger, Aldo Cosquillo Mejia, Seon Tae Kim, Marc Linder: Salt hydrate based thermochemical systems cascaded with high temperature mechanical heat pumps for waste heat recovery. In: Energy Conversion and Management: X, 24, 2024,