Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A Brief Review on Radiant Cooling Panel with Different Chilled Water Pipe Configurations

View through CrossRef
Radiant cooling systems are commonly applied in commercial applications because of their energy-saving potential. This potential can be further enhanced by evaluating the cooling performance of the radiant cooling panel in terms of flow configurations. Although studies have been conducted on the flow configurations of the radiant cooling panel, the most suitable flow configurations have yet to be determined. The conventional serpentine flow configuration does not bring out the best cooling performance of the radiant cooling panel, therefore different flow configurations are still needed to be explored. This study conducted a quick literature review on the different radiant cooling systems as well as radiant cooling panel with different chilled water pipe configurations. The objective of this review is to provide a brief comparison of the performance of radiant cooling panel with different chilled water pipe configurations and to suggest further studies for the system development. The cooling characteristics and heat transfer of the panel are investigated by using numerical study. A comparison between the designs of flow configurations is presented. In all of the cases, the plate area and flow volume are fixed. Based on the findings obtained, applying a different chilled water pipe configuration on the radiant cooling panel will affect the flow uniformity and also the temperature distribution uniformity. An optimized flow configurations for the radiant cooling panel is important for enhancing the overall efficiency of the system.
Title: A Brief Review on Radiant Cooling Panel with Different Chilled Water Pipe Configurations
Description:
Radiant cooling systems are commonly applied in commercial applications because of their energy-saving potential.
This potential can be further enhanced by evaluating the cooling performance of the radiant cooling panel in terms of flow configurations.
Although studies have been conducted on the flow configurations of the radiant cooling panel, the most suitable flow configurations have yet to be determined.
The conventional serpentine flow configuration does not bring out the best cooling performance of the radiant cooling panel, therefore different flow configurations are still needed to be explored.
This study conducted a quick literature review on the different radiant cooling systems as well as radiant cooling panel with different chilled water pipe configurations.
The objective of this review is to provide a brief comparison of the performance of radiant cooling panel with different chilled water pipe configurations and to suggest further studies for the system development.
The cooling characteristics and heat transfer of the panel are investigated by using numerical study.
A comparison between the designs of flow configurations is presented.
In all of the cases, the plate area and flow volume are fixed.
Based on the findings obtained, applying a different chilled water pipe configuration on the radiant cooling panel will affect the flow uniformity and also the temperature distribution uniformity.
An optimized flow configurations for the radiant cooling panel is important for enhancing the overall efficiency of the system.

Related Results

Optimized Design of Pipe-in-Pipe Systems
Optimized Design of Pipe-in-Pipe Systems
Abstract Deepwater subsea developments must address the flow assurance issues and increasingly these are forming a more critical part of the design. Pipe-in-pipe ...
Pipe-in-Pipe Swaged Field Joint for Reel Lay
Pipe-in-Pipe Swaged Field Joint for Reel Lay
Abstract Subsea 7 and ITP InTerPipe (ITP) have developed a highly efficient Pipe in Pipe technology to be installed by the Reel-Lay method. This solution is based...
Kinematics Analysis and Trajectory Planning of Segmentation Robot for Chilled Sheep Carcass
Kinematics Analysis and Trajectory Planning of Segmentation Robot for Chilled Sheep Carcass
HighlightsAn automatic sheep segmentation robot system was developed to realize the automatic segmentation of chilled sheep carcass and improve the segmentation efficiency.The mech...
Clad Steel Pipe for Corrosive Gas Transportation
Clad Steel Pipe for Corrosive Gas Transportation
ABSTRACT This paper describes the applicability and reliability Of clad steel pipe and its welds in sour gas environments in comparison with those of 22%Cr-5.5%Ni...
Thermal performance of energy barrettes in an urban environment
Thermal performance of energy barrettes in an urban environment
Energy geostructures are renewable heating and cooling technologies that promise to massively decarbonize buildings with other shallow geothermal heat exchangers. However, the perf...
The Development of Hybrid Cooling Photovoltaic Panel by using Active and Passive Cooling System
The Development of Hybrid Cooling Photovoltaic Panel by using Active and Passive Cooling System
Photovoltaic (PV) panel are crucial in the conversion of solar irradiance into electrical energy. However, the efficiency of PV panel is indirectly influenced by the surface temper...
Dynamics of a Near- Surface Pipeline Tow
Dynamics of a Near- Surface Pipeline Tow
1. Introduction This project arose from a series of experiments carried out by the Melbourne node of the Australian Maritime Engineering Cooperative Research Cent...

Back to Top