default author photo

Chan Hwang See

Edinburgh Napier University

Edinburgh, EH10 5LG

United States

SCHOLARLY PAPERS

2

DOWNLOADS

71

TOTAL CITATIONS

0

Scholarly Papers (2)

Advanced Thermal Management Strategies of Building-Integrated Photovoltaic Systems Using Hybrid Pcm-Copper Channel Networks

Number of pages: 35 Posted: 01 Aug 2025
Edinburgh Napier University, Edinburgh Napier University, Edinburgh Napier University, Edinburgh Napier University, London South Bank University, University of Exeter - Environment and Sustainability Institute (ESI), University of Exeter and Teesside University
Downloads 25 (1,445,011)

Abstract:

Loading...

Building-integrated photovoltaics (BIPV), Phase change materials (PCMs), Computational Fluid Dynamics, Sustainable building technologies, Hybrid cooling systems

Advanced Thermal Management Strategies of Building-Integrated Photovoltaic Systems Using Hybrid Pcm-Copper Channel Networks

Number of pages: 35 Posted: 06 Aug 2025
Edinburgh Napier University, Edinburgh Napier University, Edinburgh Napier University, Edinburgh Napier University, London South Bank University, University of Exeter - Environment and Sustainability Institute (ESI), University of Exeter and Teesside University
Downloads 19 (1,525,626)

Abstract:

Loading...

Building-integrated photovoltaics (BIPV), Phase change materials (PCMs), Computational Fluid Dynamics, Sustainable building technologies, Hybrid cooling systems

2.

Advanced Thermal Management Strategies of Building-Integrated Photovoltaic Systems Using Hybrid Phase Change Material-Copper Channel Networks

Number of pages: 37 Posted: 07 Oct 2025
Edinburgh Napier University, Edinburgh Napier University, Edinburgh Napier University, Edinburgh Napier University, London South Bank University, University of Exeter - Environment and Sustainability Institute (ESI), University of Exeter and Teesside University
Downloads 27 (1,372,601)

Abstract:

Loading...

Building-integrated photovoltaics, Phase change materials, Copper channels, Thermal management, Hybrid cooling