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Academic Journal of Energy, 2020, 1(3); doi: 10.38007/RE.2020.010303.

Modeling and Simulation Research of Wind Energy Heat Pump Direct Heating System Based on Geographic Information System

Author(s)

McMaster Ellen

Corresponding Author:
McMaster Ellen
Affiliation(s)

University of Antwerp, Belgium

Abstract

In order to ensure the normal heating of residents during the heating season in my country, with the increase of the air extraction volume of the cogeneration unit, the power generation also exceeds the use demand, so that the poor quality wind power will be forced to give up during the peak shaving of the power grid. The aggravation of coal-fired pollution also leads to a waste of energy. The use of wind-driven compression heat pumps to run heating reduces energy and capital waste. Taking into account the volatility and instability of wind energy itself, the heating technology of WEHPDHS is one of the effective ways to achieve renewable clean energy heating in severe cold regions. In this paper, a simulation model of the wind energy heat pump direct heating system(WEHPDHS) is established, and the simulation experiment is carried out on the use of the model. The geographic information system is used to collect the wind speed data under the working condition, and the variation characteristics of the system energy parameters and the energy efficiency coefficient of the mechanical energy of the wind turbine are analyzed under the variable wind speed condition. COP, and then compared the performance coefficients of different heating methods to verify the high heating efficiency of the system in this paper and the high benefits in environmental protection.

Keywords

Geographic Information System, Wind Energy Heat Pump Direct Heating System, Heating Technology, Energy Efficiency Coefficient

Cite This Paper

McMaster Ellen. Modeling and Simulation Research of Wind Energy Heat Pump Direct Heating System Based on Geographic Information System. Academic Journal of Energy (2020), Vol. 1, Issue 3: 17-24. https://doi.org/10.38007/RE.2020.010303.

References

[1] Yzda B , Ake A , Maez B , et al. Arbitrary estimation of uranium ore reserves in Qattar–V, North Eastern Desert, Egypt using geographic information system. Journal of Radiation Research and Applied Sciences, 2020, 15( 1):224-231. https://doi.org/10.1016/j.jrras.2022.01.022

[2] Singh A , Ahuja H , Bhadoria V S , et al. Control Implementation of Squirrel Cage Induction Generator based Wind Energy Conversion System. Journal of scientific and industrial research, 2020, 79(4):306-311. https://doi.org/10.1063/5.0043408

[3] Hirmiz R , Teamah H M , Lightstone M F , et al. Performance of heat pump integrated phase change material thermal storage for electric load shifting in building demand side management. Energy and Buildings, 2019, 190(MAY):103-118.

[4] Mazzeo D . Solar and wind assisted heat pump to meet the building air conditioning and electric energy demand in the presence of an electric vehicle charging station and battery storage. Journal of Cleaner Production, 2019, 213(MAR.10):1228-1250.

[5] Keerthy S , Vishnu C L , Li S S , et al. Reconstructing the dimension of Dhala Impact Crater, Central India, through integrated geographic information system and geological records. Planetary and space science, 2019, 177(Nov.):104691.1-104691.8. https://doi.org/10.1016/j.pss.2019.07.006

[6] Leurent M . Analysis of the district heating potential in French regions using a geographic information system. Applied Energy, 2019, 252(Oct.15):113460.1-113460.7.

[7] Santibanez-Aguilar J E , Lozano-Garcia D F , Lozano F J , et al. Sequential Use of Geographic Information System and Mathematical Programming for Optimal Planning for Energy Production Systems from Residual Biomass. Industrial And Engineering Chemistry Research, 2019, 58(35):15818-15837. https://doi.org/10.1021/acs.iecr.9b00492

[8] Lamaison N , Collette S , Vallee M , et al. Storage influence in a combined biomass and power-to-heat district heating production plant. Energy, 2019, 186(Nov.1):115714.1-115714.12.

[9] Jabari F , Mohammadi-Ivatloo B ,  Sharifian M , et al. Design and robust optimization of a novel industrial continuous heat treatment furnace. Energy, 2018, 142(jan.1):896-910.

[10] Suciu R , Girardin L , F Maréchal. Energy integration of CO2 networks and power to gas for emerging energy autonomous cities in Europe. Energy, 2018, 157(AUG.15):830-842.

[11] A S B E K , B R E M S , B S A S , et al. Using remote sensing and geographic Information system to assess the status of the nesting habitat of hawksbill turtles ( Eretmochelys imbricata ): At Big Giftun Island, Red Sea, Egypt. The Egyptian Journal of Remote Sensing and Space Science, 2020, 23( 1):77-87. https://doi.org/10.1016/j.ejrs.2018.07.005

[12] Ali D , Levin A , Abdulkarim M , et al. A cost-effectiveness analysis of traditional and geographic information system-supported microplanning approaches for routine immunization program management in northern Nigeria. Vaccine, 2020, 38(6):1408-1415.

[13] Bindu G , Rajan P , Jishnu E S , et al. Carbon stock assessment of mangroves using remote sensing and geographic information system - ScienceDirect. The Egyptian Journal of Remote Sensing and Space Science, 2020, 23( 1):1-9. https://doi.org/10.1016/j.ejrs.2018.04.006

[14] Schlosser F , Seevers J P , Peesel R H , et al. System efficient integration of standby control and heat pump storage systems in manufacturing processes. Energy, 2019, 181(AUG.15):395-406. https://doi.org/10.1016/j.energy.2019.05.113

[15] A A V , A X R , F. Lacressonnière a, et al. Scaling of wind energy conversion system for time-accelerated and size-scaled experiments - ScienceDirect. Mathematics and Computers in Simulation, 2019, 158(C):65-78.

[16] Shukla R D , Tripathi R K . Instantaneous direct voltage and frequency control in DC grid tied DFIG based wind energy system. International Journal of Electrical Power & Energy Systems, 2018, 100(SEP.):309-319. https://doi.org/10.1016/j.ijepes.2018.02.043

[17] Ishaq H , Dincer I . Evaluation of a wind energy based system for co-generation of hydrogen and methanol production - ScienceDirect. International Journal of Hydrogen Energy, 2020, 45( 32):15869-15877.

[18] Amh A , Ea B , Es C , et al. Optimum design of hybrid wind/PV energy system for remote area - ScienceDirect. Ain Shams Engineering Journal, 2020, 11( 1):11-23. https://doi.org/10.1016/j.asej.2019.08.005

[19] Karakasis N E , Mademlis C A . High efficiency control strategy in a wind energy conversion system with doubly fed induction generator. Renewable Energy, 2018, 125(SEP.):974-984. https://doi.org/10.1016/j.renene.2018.03.020

[20] Mani P , Lee J H , Kang K W , et al. Digital Controller Design via LMIs for Direct-Driven Surface Mounted PMSG-Based Wind Energy Conversion System. IEEE Transactions on Cybernetics, 2019, PP(99):1-12.