Helio-aero-gravity electric power production at low cost

The power production from the helio-aero-gravity concept can be demonstrated by selecting a flat patch of land in an isolated desert where solar radiation is abundant. The land may be sprayed with black paint and canopied with some transparent material. A chimney containing an air turbine is to be i...

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Main Authors: Lodhi, M.A.K., Sulaiman, M.Yusof
Format: Article
Published: Elsevier 1992
Online Access:http://psasir.upm.edu.my/id/eprint/114120/
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author Lodhi, M.A.K.
Sulaiman, M.Yusof
author_facet Lodhi, M.A.K.
Sulaiman, M.Yusof
author_sort Lodhi, M.A.K.
building UPM Institutional Repository
collection Online Access
description The power production from the helio-aero-gravity concept can be demonstrated by selecting a flat patch of land in an isolated desert where solar radiation is abundant. The land may be sprayed with black paint and canopied with some transparent material. A chimney containing an air turbine is to be installed at the center of the black patch. At the periphery of the patch, the canopy should be kept above the ground leaving sufficient space for cold air to enter the region under the canopy. The black patch is heated by direct sun's radiation entering through the transparent cover. The cold air gets heated as it moves over the heated land surface under the canopy. Due to the pressure difference, the hot air will rise into the chimney and drive the turbine. The power thus generated could be about 50 MW per kilometer square of land at a low cost of per energy unit. A systematic theoretical study is carried out to investigate the scientific and technical merits of this system for large scale power production, in particular to investigate heat transfer processes in the system in a quantitative manner.
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institution Universiti Putra Malaysia
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publishDate 1992
publisher Elsevier
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spelling upm-1141202024-12-03T04:00:55Z http://psasir.upm.edu.my/id/eprint/114120/ Helio-aero-gravity electric power production at low cost Lodhi, M.A.K. Sulaiman, M.Yusof The power production from the helio-aero-gravity concept can be demonstrated by selecting a flat patch of land in an isolated desert where solar radiation is abundant. The land may be sprayed with black paint and canopied with some transparent material. A chimney containing an air turbine is to be installed at the center of the black patch. At the periphery of the patch, the canopy should be kept above the ground leaving sufficient space for cold air to enter the region under the canopy. The black patch is heated by direct sun's radiation entering through the transparent cover. The cold air gets heated as it moves over the heated land surface under the canopy. Due to the pressure difference, the hot air will rise into the chimney and drive the turbine. The power thus generated could be about 50 MW per kilometer square of land at a low cost of per energy unit. A systematic theoretical study is carried out to investigate the scientific and technical merits of this system for large scale power production, in particular to investigate heat transfer processes in the system in a quantitative manner. Elsevier 1992-04 Article PeerReviewed Lodhi, M.A.K. and Sulaiman, M.Yusof (1992) Helio-aero-gravity electric power production at low cost. Renewable Energy, 2 (2). pp. 183-189. ISSN 0960-1481; eISSN: 0960-1481 https://linkinghub.elsevier.com/retrieve/pii/096014819290105C 10.1016/0960-1481(92)90105-c
spellingShingle Lodhi, M.A.K.
Sulaiman, M.Yusof
Helio-aero-gravity electric power production at low cost
title Helio-aero-gravity electric power production at low cost
title_full Helio-aero-gravity electric power production at low cost
title_fullStr Helio-aero-gravity electric power production at low cost
title_full_unstemmed Helio-aero-gravity electric power production at low cost
title_short Helio-aero-gravity electric power production at low cost
title_sort helio-aero-gravity electric power production at low cost
url http://psasir.upm.edu.my/id/eprint/114120/
http://psasir.upm.edu.my/id/eprint/114120/
http://psasir.upm.edu.my/id/eprint/114120/