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Soteris A. Kalogirou

Researcher at Cyprus University of Technology

Publications -  243
Citations -  26904

Soteris A. Kalogirou is an academic researcher from Cyprus University of Technology. The author has contributed to research in topics: Solar energy & Renewable energy. The author has an hindex of 72, co-authored 229 publications receiving 22731 citations. Previous affiliations of Soteris A. Kalogirou include Higher Technical Institute of Cyprus.

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Flat-plate collector construction and system configuration to optimize the thermosiphonic effect

TL;DR: In this article, the authors investigated through modeling and simulation possible configurations, which will optimize the performance of the system and found that the best-optimized system is obtained for small header and riser pipe diameters and very close performance was obtained for various combinations.
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Comparison of performance and cost effectiveness of solar water heaters at different collector tracking modes in Cyprus and Greece

TL;DR: In this paper, the authors investigated the thermal performance and cost effectiveness of thermosyphon solar water heaters with different solar collector tracking modes under the weather and socioeconomic conditions of Nicosia-Cyprus and Athens-Greece.
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Performance enhancement of an integrated collector storage hot water system

TL;DR: In this paper, a primary 110 mm diameter cylinder is introduced at the space between the main cylinder and the glass to reduce the convection currents created during the night, circulating around the top glass cover.
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Artificial neural networks for the generation of geothermal maps of ground temperature at various depths by considering land configuration

TL;DR: In this paper a neural network is used for the generation of geothermal maps (contours) of temperature at three depths (20, 50 and 100 m) in Cyprus and a multiple hidden layer feedforward architecture was chosen after testing a number of architectures.
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FPGA‐based implementation of a real time photovoltaic module simulator

TL;DR: An implementation of an intelligent photovoltaic module on reconfigurable Field Programmable Gate Array (FPGA) is described in this paper and permits the evaluation of performance of the PV module using only environmental parameters and involves less computational effort.