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A solar chimney power plant consists of a large greenhouse-type collector surrounding a tall chimney. The air, heated within the collector, passes through an inlet guide vane (IGV) cascade and then through a transition section to a turbine that powers a generator. The transition section contains the turbine inlet guide vanes that support the whole chimney and guides the flow entering the turbine. There is a surge in the use of the solar chimney power plant in the recent years which accomplishes the task of converting solar energy into kinetic energy. The existing models are sufficient to accurately describe the mechanism and evaluate the performance of a solar chimney power plant system, in which the effects of various parameters on the relative static pressure, driving force, power output and efficiency. This paper aims at development of mathematical model for obtaining the temperature lapse rate that takes in the solar chimney.
Dr. Shashank.B. Thakre. 1970. \u201cMathematical Modeling of Temperature Lapse Rate in Solar Chimney Power Plant\u201d. Global Journal of Research in Engineering - A : Mechanical & Mechanics GJRE-A Volume 13 (GJRE Volume 13 Issue A1): .
Crossref Journal DOI 10.17406/gjre
Print ISSN 0975-5861
e-ISSN 2249-4596
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Total Score: 109
Country: India
Subject: Global Journal of Research in Engineering - A : Mechanical & Mechanics
Authors: Dr. Shashank.B. Thakre, L.B. Bhuyar, Sachin.V. Dahake, Pankaj Wankhade (PhD/Dr. count: 1)
View Count (all-time): 185
Total Views (Real + Logic): 20810
Total Downloads (simulated): 11011
Publish Date: 1970 01, Thu
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A solar chimney power plant consists of a large greenhouse-type collector surrounding a tall chimney. The air, heated within the collector, passes through an inlet guide vane (IGV) cascade and then through a transition section to a turbine that powers a generator. The transition section contains the turbine inlet guide vanes that support the whole chimney and guides the flow entering the turbine. There is a surge in the use of the solar chimney power plant in the recent years which accomplishes the task of converting solar energy into kinetic energy. The existing models are sufficient to accurately describe the mechanism and evaluate the performance of a solar chimney power plant system, in which the effects of various parameters on the relative static pressure, driving force, power output and efficiency. This paper aims at development of mathematical model for obtaining the temperature lapse rate that takes in the solar chimney.
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