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Hydro aeropower for sustainable electricity cost reduction in South African farming applications

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Veröffentlicht in: Energy reports 5(2019) vom: Nov., Seite 1645-1650
Personen und Körperschaften: Kusakana, Kanzumba (VerfasserIn)
Titel: Hydro aeropower for sustainable electricity cost reduction in South African farming applications/ Kanzumba Kusakana
Format: E-Book-Kapitel
Sprache: Englisch
veröffentlicht:
2019
Gesamtaufnahme: : Energy reports, 5(2019) vom: Nov., Seite 1645-1650
, volume:5
Schlagwörter:
Quelle: Verbunddaten SWB
Lizenzfreie Online-Ressourcen
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520 |a This paper develops a model which can be used to minimize the electricity cost of South African farms through the usage of a wind pump with pico hydro generator and a borehole in pumped hydro storage configuration referred to as "hydro aeropower". This model will optimally schedule the generation power flow from the pico turbine given the demand, the state of water level in the reservoir as well as the electricity pricing period. This model can be implemented to control the power flow in small farming activities where boreholes and windmill are available. Therefore, a 2kW hydro aeropower using groundwater in a farming environment and operating under the Time of Use in South Africa is used to evaluate the possible cost reduction linked to the electricity usage achievable compared to the grid. Therefore, the problem can be seen as a minimization of the cost of energy purchased from the main electricity supplier, and the maximization of the energy used by the load directly supplied by the hydro aeropower in a dynamic pricing environment. Afterwards, the techno-economic performance of the proposed system is analysed using Matlab software. The results have revealed that up to 63.62% can be saved on the cost of energy consumed using the developed setup rather than supplying the load demand by the grid exclusively. 
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contents This paper develops a model which can be used to minimize the electricity cost of South African farms through the usage of a wind pump with pico hydro generator and a borehole in pumped hydro storage configuration referred to as "hydro aeropower". This model will optimally schedule the generation power flow from the pico turbine given the demand, the state of water level in the reservoir as well as the electricity pricing period. This model can be implemented to control the power flow in small farming activities where boreholes and windmill are available. Therefore, a 2kW hydro aeropower using groundwater in a farming environment and operating under the Time of Use in South Africa is used to evaluate the possible cost reduction linked to the electricity usage achievable compared to the grid. Therefore, the problem can be seen as a minimization of the cost of energy purchased from the main electricity supplier, and the maximization of the energy used by the load directly supplied by the hydro aeropower in a dynamic pricing environment. Afterwards, the techno-economic performance of the proposed system is analysed using Matlab software. The results have revealed that up to 63.62% can be saved on the cost of energy consumed using the developed setup rather than supplying the load demand by the grid exclusively.
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spelling Kusakana, Kanzumba VerfasserIn aut, Hydro aeropower for sustainable electricity cost reduction in South African farming applications Kanzumba Kusakana, 2019, Text txt rdacontent, Computermedien c rdamedia, Online-Ressource cr rdacarrier, This paper develops a model which can be used to minimize the electricity cost of South African farms through the usage of a wind pump with pico hydro generator and a borehole in pumped hydro storage configuration referred to as "hydro aeropower". This model will optimally schedule the generation power flow from the pico turbine given the demand, the state of water level in the reservoir as well as the electricity pricing period. This model can be implemented to control the power flow in small farming activities where boreholes and windmill are available. Therefore, a 2kW hydro aeropower using groundwater in a farming environment and operating under the Time of Use in South Africa is used to evaluate the possible cost reduction linked to the electricity usage achievable compared to the grid. Therefore, the problem can be seen as a minimization of the cost of energy purchased from the main electricity supplier, and the maximization of the energy used by the load directly supplied by the hydro aeropower in a dynamic pricing environment. Afterwards, the techno-economic performance of the proposed system is analysed using Matlab software. The results have revealed that up to 63.62% can be saved on the cost of energy consumed using the developed setup rather than supplying the load demand by the grid exclusively., Aufsatz in Zeitschrift DE-206, Enthalten in Energy reports Amsterdam [u.a.] : Elsevier, 2015 5(2019) vom: Nov., Seite 1645-1650 Online-Ressource (DE-627)820689033 (DE-600)2814795-9 (DE-576)427950821 2352-4847 nnns, volume:5 year:2019 month:11 pages:1645-1650, https://doi.org/10.1016/j.egyr.2019.11.023 Resolving-System kostenfrei, https://www.sciencedirect.com/science/article/pii/S2352484718303172/pdfft?md5=4c25af62415f42d546ff158712851bc1&pid=1-s2.0-S2352484718303172-main.pdf Verlag kostenfrei, http://hdl.handle.net/10419/243700 Resolving-System kostenfrei, https://creativecommons.org/licenses/by-nc-nd/4.0/ Verlag Terms of use, https://doi.org/10.1016/j.egyr.2019.11.023 LFER, https://www.sciencedirect.com/science/article/pii/S2352484718303172/pdfft?md5=4c25af62415f42d546ff158712851bc1&pid=1-s2.0-S2352484718303172-main.pdf LFER, LFER 2020-02-17T00:00:00Z
spellingShingle Kusakana, Kanzumba, Hydro aeropower for sustainable electricity cost reduction in South African farming applications, This paper develops a model which can be used to minimize the electricity cost of South African farms through the usage of a wind pump with pico hydro generator and a borehole in pumped hydro storage configuration referred to as "hydro aeropower". This model will optimally schedule the generation power flow from the pico turbine given the demand, the state of water level in the reservoir as well as the electricity pricing period. This model can be implemented to control the power flow in small farming activities where boreholes and windmill are available. Therefore, a 2kW hydro aeropower using groundwater in a farming environment and operating under the Time of Use in South Africa is used to evaluate the possible cost reduction linked to the electricity usage achievable compared to the grid. Therefore, the problem can be seen as a minimization of the cost of energy purchased from the main electricity supplier, and the maximization of the energy used by the load directly supplied by the hydro aeropower in a dynamic pricing environment. Afterwards, the techno-economic performance of the proposed system is analysed using Matlab software. The results have revealed that up to 63.62% can be saved on the cost of energy consumed using the developed setup rather than supplying the load demand by the grid exclusively., Aufsatz in Zeitschrift
title Hydro aeropower for sustainable electricity cost reduction in South African farming applications
title_auth Hydro aeropower for sustainable electricity cost reduction in South African farming applications
title_full Hydro aeropower for sustainable electricity cost reduction in South African farming applications Kanzumba Kusakana
title_fullStr Hydro aeropower for sustainable electricity cost reduction in South African farming applications Kanzumba Kusakana
title_full_unstemmed Hydro aeropower for sustainable electricity cost reduction in South African farming applications Kanzumba Kusakana
title_in_hierarchy Hydro aeropower for sustainable electricity cost reduction in South African farming applications / Kanzumba Kusakana,
title_short Hydro aeropower for sustainable electricity cost reduction in South African farming applications
title_sort hydro aeropower for sustainable electricity cost reduction in south african farming applications
topic Aufsatz in Zeitschrift
topic_facet Aufsatz in Zeitschrift
url https://doi.org/10.1016/j.egyr.2019.11.023, https://www.sciencedirect.com/science/article/pii/S2352484718303172/pdfft?md5=4c25af62415f42d546ff158712851bc1&pid=1-s2.0-S2352484718303172-main.pdf, http://hdl.handle.net/10419/243700, https://creativecommons.org/licenses/by-nc-nd/4.0/