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In the present work two parabolic trough concentrator system of different rim angle and different reflector aperture area is designed, fabricated, and evaluated, and operated for generate hot water .There one system is 45° rim angle and next is of 90° rim angles, here reflector aperture area of 45° rim angle has operatically 20% more than 90° rim angle system, but remaining all other features are same for both the 90° and 45° system. On operation of the system we gets nearly same efficiency for both the system thus we observe that for all same equal features except of reflector aperture area, the efficiency got 20+% more for 90° rim angle compare to 45° rim angle.
COMPARATIVE STUDY OF PARABOLIC TROUGH CONCENTRATORS
COMPARATIVE STUDY OF PARABOLIC TROUGH CONCENTRATORS
IAEME Publication
I Have Make This Presentation For You.......!! Hope You Find It........!!
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Solar technology offers great potential in terms of supplying the world’s energy needs. However, its current contribution to the world is still limited. The main factor is related to high initial cost of building the system. This paper will provide an up-to-date review of solar concentrators and their benefits to make solar technology affordable. It will also analyse on some of the existing solar concentrators used in the solar technology for the past four decades. The design and performance of each concentrator will be explained and compared.
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To download, head to - http://solarreference.com/parabolic-trough-collectors-comparison/ A detailed comparison of different types of parabolic trough collectors on the basis of specifications, technology, material etc. If CSP is your arena, this is one presentation you just can't miss !!! Source: NREL For more quality resources visit us at http://solarreference.com
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Parabolic Trough Collectors are widespread in CSP applications. Their adoption is less developed in industrial heat demand applications. In the present thesis the design and test of two prototypes of PTC for the thermal loads in the range 80 - 250 °C is described. A mathematical model has also been developed to predict optical efficiency and thermal losses for any PTC. The model has been validated through comparison with the experimental results on the prototypes. Then it has been included in a custom-built simulation environment to predict yearly perfor- mances of a PTC field coupled with an industrial process heat demand. Energetic results are shown and final considerations are drawn for this application.
Design, test and mathematica modeling of parabolic trough solat collectors (P...
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In the present work two parabolic trough concentrator system of different rim angle and different reflector aperture area is designed, fabricated, and evaluated, and operated for generate hot water .There one system is 45° rim angle and next is of 90° rim angles, here reflector aperture area of 45° rim angle has operatically 20% more than 90° rim angle system, but remaining all other features are same for both the 90° and 45° system. On operation of the system we gets nearly same efficiency for both the system thus we observe that for all same equal features except of reflector aperture area, the efficiency got 20+% more for 90° rim angle compare to 45° rim angle.
COMPARATIVE STUDY OF PARABOLIC TROUGH CONCENTRATORS
COMPARATIVE STUDY OF PARABOLIC TROUGH CONCENTRATORS
IAEME Publication
I Have Make This Presentation For You.......!! Hope You Find It........!!
Solar concentrator
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Solar technology offers great potential in terms of supplying the world’s energy needs. However, its current contribution to the world is still limited. The main factor is related to high initial cost of building the system. This paper will provide an up-to-date review of solar concentrators and their benefits to make solar technology affordable. It will also analyse on some of the existing solar concentrators used in the solar technology for the past four decades. The design and performance of each concentrator will be explained and compared.
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To download, head to - http://solarreference.com/parabolic-trough-collectors-comparison/ A detailed comparison of different types of parabolic trough collectors on the basis of specifications, technology, material etc. If CSP is your arena, this is one presentation you just can't miss !!! Source: NREL For more quality resources visit us at http://solarreference.com
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Parabolic Trough Collectors are widespread in CSP applications. Their adoption is less developed in industrial heat demand applications. In the present thesis the design and test of two prototypes of PTC for the thermal loads in the range 80 - 250 °C is described. A mathematical model has also been developed to predict optical efficiency and thermal losses for any PTC. The model has been validated through comparison with the experimental results on the prototypes. Then it has been included in a custom-built simulation environment to predict yearly perfor- mances of a PTC field coupled with an industrial process heat demand. Energetic results are shown and final considerations are drawn for this application.
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