ENGINEERING DESIGN AND OPTICAL INVESTIGATION OF A CONCENTRATING COLLECTOR: CASE STUDY OF A PARABOLIC TROUGH CONCENTRATOR
Mokhtar Ghodbane, Boussad Boumeddane
Abstract
Mokhtar Ghodbane, Boussad Boumeddane
Abstract
In this paper, an optical investigation study of a solar radiation collector has been treated through a precise model, which it has integrated all the geometrical characteristics of the concentrator to determine the optimal conditions of its operation. The type of solar collector chosen is the parabolic trough concentrator (PTC). This concentrator comprises a single mirror in the form of a half cylinder (cylindrical-parabolic) and a single receiver tube. A mathematical model has been introduced for the calculation the various optical factors, such as concentrator ratio “C”, intercept factor “γ” and incidence angle modifier factor “K (θ)”. The collector optical efficiency has exceeded 61 % with an external diameter of the receiver tube equal to 0.07 m, a focal distance equal to 3.76 m, a rim angle equal to 90° and a concentration ratio equal to 68.39. Keywords : solar energy; parabolic trough concentrator; optical factors; modeling.
OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In this paper, an optical investigation study of a solar radiation collector has been treated through a precise model, which it has integrated all the geometrical characteristics of the concentrator to determine the optimal conditions of its operation. The type of solar collector chosen is the parabolic trough concentrator (PTC). This concentrator comprises a single mirror in the form of a half cylinder (cylindrical-parabolic) and a single receiver tube. A mathematical model has been introduced for the calculation the various optical factors, such as concentrator ratio “C”, intercept factor “γ” and incidence angle modifier factor “K (θ)”. The collector optical efficiency has exceeded 61 % with an external diameter of the receiver tube equal to 0.07 m, a focal distance equal to 3.76 m, a rim angle equal to 90° and a concentration ratio equal to 68.39. Keywords : solar energy; parabolic trough concentrator; optical factors; modeling.
Key concepts: Parabolic trough, Concentrator, Nonimaging optics, Acceptance angle, Optics, Cylinder, Parabolic reflector, Solar energy