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New features for various thermal performance enclosure elements are introduced.
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Various important thermal performance indicators such as heat utilisation factors, convective heat transfer coefficient, coefficient of performance and percentage of net heat gain have been evaluated to validate the effectiveness of modifications.
Effects of various parameters on the thermal performance and pressure drop characteristics have been discussed.
Experimental investigations on the effect of various parameters on the thermal performance of the THPCT were carried out.
Various parameters affecting the thermal performance of graphene heat spreaders were discussed, e.g. layer numbers of graphene, phonon scattering, thermal boundary resistance.
Most of the previous numerical and experimental studies evaluated the effect of various nanofluids on the thermal performance of a pre-designed collector, and did not consider the effect of varying collector dimensions on its overall performance.
In this study, the thermal performance of various shapes and geometries of atriums in buildings is examined under various conditions.
A numerical model was developed and validated to predict the thermal performance of various types of ground heat exchangers.
(Rittidech et al. (2010)) investigated the thermal performance of various horizontal closed loop oscillating heat pipe systems with check valves (HCLOHPs/CVs).
The second level focuses on the most commonly studied nanofluid types and compositions and makes possible to extract trends linking the various nanofluid properties with their thermal performance.
The thermal performance of various types of systems like PCM Trombe wall, PCM wallboards, PCM shutters, PCM building blocks, air-based heating systems, floor heating, ceiling boards, etc., was presented.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com