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Convection Suppression in Flat Plate Solar Collectors by the Use of Square Celled Honeycombs

Convection Suppression in Flat Plate Solar Collectors by the Use of Square Celled Honeycombs PDF Author: Christopher James Ford
Publisher:
ISBN:
Category :
Languages : en
Pages : 142

Book Description


Convection Suppression in Flat Plate Solar Collectors by the Use of Square Celled Honeycombs

Convection Suppression in Flat Plate Solar Collectors by the Use of Square Celled Honeycombs PDF Author: Christopher James Ford
Publisher:
ISBN:
Category :
Languages : en
Pages : 142

Book Description


Studies on Methods of Reducing Heat Losses from Flat Plate Solar Collectors, Phase 2. Annual Progress Report, February 1, 1976--January 1, 1977

Studies on Methods of Reducing Heat Losses from Flat Plate Solar Collectors, Phase 2. Annual Progress Report, February 1, 1976--January 1, 1977 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Improvements to flat plate solar collectors for heating and cooling of buildings are being investigated through two parallel studies. The first study, which deals with the free convective heat loss from V-corrugated absorber plate to a plane glass cover, has shown that, for the same average spacing, the free convective heat loss is greater for a V-corrugated absorber plate than for a plane absorber plate. However, provided the average spacing is large enough, the amount of increase is slight. The second study, which deals with the free convective heat loss in a honeycomb solar collector in which the honeycomb consists of a set of horizontal partitions, or slits, has shown that provided the solar collector is tilted to near vertical, such a honeycomb gives better free convective loss suppression than does a square-celled honeycomb having the same amount of material.

Methods for Reducing Heat Losses from Flat Plate Solar Collectors

Methods for Reducing Heat Losses from Flat Plate Solar Collectors PDF Author: K. G. T. Hollands
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 78

Book Description
Improvements to flat plate solar collectors for heating and cooling of buildings were investigated through two parallel studies. The first study, which deals with the free convective heat loss from V-corrugated absorber plate to a plane glass cover, has shown that, for the same average spacing, the free convective heat loss is greater for a V-corrugated absorber plate than for a plane absorber plate. However, provided the average spacing is large enough, the amount of increase is slight. The second study, which deals with the free convective heat loss in a honeycomb solar collector in which the honeycomb consists of a set of horizontal partitions, or slits, has shown that provided the solar collector is tilted to near vertical, such a honeycomb gives equivalent or superior free convective loss suppression than does a square-celled honeycomb having the same amount of material. Correlation equations for the free convective heat loss are given for both studies.

Convection Suppression and Heat Transfer in Air Layers Constrained by Slit Type Honeycombs with Application to Flat Plate Solar Collector Design

Convection Suppression and Heat Transfer in Air Layers Constrained by Slit Type Honeycombs with Application to Flat Plate Solar Collector Design PDF Author: D.R. Smart
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Methods for Reducing Heat Losses from Flat Plate Solar Collectors

Methods for Reducing Heat Losses from Flat Plate Solar Collectors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Improvements to flat plate solar collectors for heating and cooling of buildings were investigated through two parallel studies. The first study, which deals with the free convective heat loss from V-corrugated absorber plate to a plane glass cover, has shown that, for the same average spacing, the free convective heat loss is greater for a V-corrugated absorber plate than for a plane absorber plate. However, provided the average spacing is large enough, the amount of increase is slight. The second study, which deals with the free convective heat loss in a honeycomb solar collector in which the honeycomb consists of a set of horizontal partitions, or slits, has shown that provided the solar collector is tilted to near vertical, such a honeycomb gives equivalent or superior free convective loss suppression than does a square-celled honeycomb having the same amount of material. Correlation equations for the free convective heat loss are given for both studies.

Studies on Methods of Reducing Heat Losses from Flat Plate Solar Collectors

Studies on Methods of Reducing Heat Losses from Flat Plate Solar Collectors PDF Author: K. G. T. Hollands
Publisher: University of Waterloo Research Institute
ISBN:
Category : Heat
Languages : en
Pages : 129

Book Description
Improvements to flat plate solar collectors for heating and cooling of buildings have been evaluated through three parallel studies. The first study has demonstrated suppression of free convection by a honeycomb at all angles of inclination. Reductions by a factor of 5 in the free convective heat loss are reported, and equations and charts permitting the rational design of honeycombs for convection suppression in solar collectors are presented. The second study has resulted in a precise, easily programmable set of equations for the free convective heat loss through the air gaps in flat plate solar collectors, for any angle of tilt. The third study has theoretically and experimentally demonstrated that the solar transmittance of a flat transparent cover for a solar collector can be very substantially increased by V-corrugating. Since V-corrugating should also decrease the free convective and radiant losses, substantial improvements in collector efficiency are predicted.

Energy Research Abstracts

Energy Research Abstracts PDF Author:
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 962

Book Description


Solar Transmittance of Convection Suppression Devices for Flat Plate Solar Collectors

Solar Transmittance of Convection Suppression Devices for Flat Plate Solar Collectors PDF Author: Alan William Dickerson
Publisher:
ISBN:
Category : Heat
Languages : en
Pages :

Book Description


Studies on Methods of Reducing Heat Losses from Flat Plate Solar Collectors. Progress Report, August 1, 1974--January 31, 1976

Studies on Methods of Reducing Heat Losses from Flat Plate Solar Collectors. Progress Report, August 1, 1974--January 31, 1976 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Improvements to flat plate solar collectors for heating and cooling of buildings have been evaluated through three parallel studies. The first study has demonstrated suppression of free convection by a honeycomb at all angles of inclination. Reductions by a factor of 5 in the free convective heat loss are reported, and equations and charts permitting the rational design of honeycombs for convection suppression in solar collectors are presented. The second study has resulted in a precise, easily programmable set of equations for the free convective heat loss through the air gaps in flat plate solar collectors, for any angle of tilt. The third study has theoretically and experimentally demonstrated that the solar transmittance of a flat transparent cover for a solar collector can be very substantially increased by V-corrugating. Since V-corrugating should also decrease the free convective and radiant losses, substantial improvements in collector efficiency are predicted.

Methods for Reducing Heat Losses from Flat Plate Solar Collectors

Methods for Reducing Heat Losses from Flat Plate Solar Collectors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The present study extends earlier studies by examining the effect of the emissivities of both the absorber plate and the glass cover on the honeycomb's ability to suppress free convection, and on the radiative and conductive heat transfer which takes place across the honeycomb in the absence of free convection. By means of heat transfer measurements on ten Mylar honeycombs, this study has shown that the effect of the above emissivities on the suppression of convection by the honeycomb is slight, and can probably be ignored. On the other hand, the measurements also showed that the effect of these emissivities on the non-convective heat transfer is substantial, but not nearly so large as would have been predicted by existing theories. To explain this latter result theories were developed which take into account the important coupling (ignored by previous theories) between the conductive and radiative modes of heat transfer. These new theories predict the measured heat transfer rates to with about +-15%, depending on the emissivities. The results of this study have direct application to evaluating solar collectors which combine a selective surface with a honeycomb.