Aneesh Chandra Nunna

About

Work

Technical University of Denmark

Denmark

Technical University of Denmark
|

Postdoc

Denmark

Education

Technical University of Denmark
Denmark

PhD

Norwegian University of Science and Technology
Norway

PhD

Loughborough University
United Kingdom of Great Britain and Northern Ireland

MSc in Renewable Energy

Technical University of Denmark
Denmark

Research project

National Technical University of Athens
Greece

Wind Energy

Indian Institute of Technology Delhi
India

B.Tech in Production and Industrial Engineering

Publications

Optimal control of a bio-based phase change material thermal energy storage for demand response

Published by

Energy Conversion and Management

Summary

journal-article

Optimal control of a bio-based phase change material thermal energy storage for demand response

Published by

Energy Conversion and Management

Summary

journal-article

Optimal control of a bio-based phase change material thermal energy storage for demand response

Published by

Energy Conversion and Management

Summary

journal-article

Feasibility Investigation of Thermal Management and Heat Recovery of Low-Temperature Hydrogen Electrolysis Systems

Published by

Proceedings of 2024 IEEE PES Innovative Smart Grid Technologies Europe (ISGT EUROPE)

Summary

conference-paper

Optimal Control of a Bio-Based Phase Change Material Thermal Energy Storage for Demand Response

Published by

SSRN

Summary

other

Energy flexibility in buildings through thermal storage devices

Summary

dissertation-thesis

Demand response with active phase change material based thermal energy storage in buildings

Published by

Energy Reports

Summary

journal-article

Demand response with active phase change material based thermal energy storage in buildings

Published by

Energy Reports

Summary

journal-article

Demand response with active phase change material based thermal energy storage in buildings

Published by

Energy Reports

Summary

journal-article

Demand side flexibility for a Heat Booster Substation with ultra low temperature district heating

Published by

Sustainable Energy, Grids and Networks

Summary

journal-article

Demand side flexibility for a Heat Booster Substation with ultra low temperature district heating

Published by

Sustainable Energy, Grids and Networks

Summary

journal-article

Demand side flexibility for a Heat Booster Substation with ultra low temperature district heating

Published by

Sustainable Energy, Grids and Networks

Summary

journal-article

Enhancing demand-side flexibility for Heat Booster Substations in Ultra-Low Temperature District Heating systems

Published by

SEST 2022 - 5th International Conference on Smart Energy Systems and Technologies

Summary

conference-paper

Enhancing demand-side flexibility for Heat Booster Substations in Ultra-Low Temperature District Heating systems

Published by

Proceedings of International Conference on Smart Energy Systems and Technologies (SEST)

Summary

conference-paper