Citation: Charles Aimiuwu Osaretin, Tariq Iqbal, Stephen Butt. Optimal sizing and techno-economic analysis of a renewable power system for a remote oil well[J]. AIMS Electronics and Electrical Engineering, 2020, 4(2): 132-153. doi: 10.3934/ElectrEng.2020.2.132
| [1] | Aguilera RF and Radetzki M (2016) The price of oil. University Printing House, Cambridge university press, Cambridge, United Kingdom. |
| [2] | Armacanqui JS, Eyzaguirre L, Lujan C, et al. (2016) Managing Oil Fields in a Low Oil Price Environment. Society of Petroleum Engineers. |
| [3] | Saadawi H (2019) Application of Renewable Energy in the Oil and Gas Industry. Society of Petroleum Engineers. |
| [4] | Shedid SA (2009) Effects of Subsurface Pump Size and Setting Depth on Performance of Sucker-Rod Artificial Lift: A Simulation Approach. Society of Petroleum Engineers. |
| [5] | Guillory R, Wan Razali WAA, Masoudi R, et al. (2019) Total Well Management: Maximising Well Lifecycle Value - A Regulator Perspective. International Petroleum Technology Conference. |
| [6] | Muehlenbachs L (2017) 80,000 Inactive Oil Wells: A Blessing or a Curse? SPP Research paper. |
| [7] | Temizel C, Irani M, Canbaz CH, et al. (2010) Technical and Economic Aspects of Use of Solar Energy in Oil & Gas Industry in the Middle East. Society of Petroleum Engineers. |
| [8] | Van Heel AP, Van Wunnik JNM, Bentouati S, et al. (2010) The Impact of Daily and Seasonal Cycles in Solar-Generated Steam on Oil Recovery. Society of Petroleum Engineers. |
| [9] | Poythress MW, Rowlan OL (2008) Low-Volume Pumping Systems: Moving Gallons to Produce Thousands. Society of Petroleum Engineers. |
| [10] | Dave MK, Ghareeb Mustafa M (2017) Performance Evaluations of the Different Sucker Rod Artificial Lift Systems. Society of Petroleum Engineers. |
| [11] |
Feng ZM, Tan JJ, Li Q, et al. (2018) A review of beam pumping energy-saving technologies. Journal of Petroleum Exploration and Production Technology 8: 299-311. doi: 10.1007/s13202-017-0383-6
|
| [12] | Di Tullio MT, Marfella F (2018) Enhanced Sucker Rod Pumping Model: A Powerful Tool for Optimizing Production, Efficiency and Reliability Beam Pump Motors: The Effect of Cyclical Loading on Optimal Sizing. Society of Petroleum Engineers. |
| [13] | National Stripper Well Association (2019) Stripper Well Facts. Available from: http://nswa.us/custom/showpage.php?id=25 |
| [14] | Hicks AW (1986) Using Fiberglass Sucker Rods in Deep Wells. Society of Petroleum Engineers. |
| [15] | Takacs G (2015) Sucker-Rod Pumping Handbook - Production Engineering Fundamentals and Long Stroke Rod Pumping. 1st edition, Gulf Professional Publishing, Oxford, United Kingdom. |
| [16] | Skinner DR (1984) Efficient Use of Electric Power in Production Operations. Society of Petroleum Engineers. |
| [17] | Johnson JE (1988) Electrical Savings in Oil Production. Society of Petroleum Engineers. |
| [18] | Environment Canada (2019) Canadian Climate Normals 1981-2010 Station Data, 2016. |
| [19] | Dorozio J (2019) Alberta's 'Gas City' to shut down 2,000 wells, laying off up to 100 people. Available from: http://www.cbc.ca |
| [20] | Surface meteorology and Solar Energy (SSE) Data Archive (2019) POWER projects Data Sets. Available from: https://power.larc.nasa.gov |
| [21] | Lambert T, Gilman P, Lilienthal P (2006) Micropower System Modeling with Homer. Wiley & Sons, Hoboken (NJ), USA. |
| [22] | Aziz AS, Tajuddin MFN, Adzman MR, et al. (2019) Energy Management and Optimization of a PV/Diesel/Battery Hybrid Energy System Using a Combined Dispatch Strategy. Sustainability 11: 1-26. |
| [23] |
Aziz AS, Tajuddin MFN, Adzman MR, et al. (2019) Optimization and sensitivity analysis of standalone hybrid energy systems for rural electrification: A case study of Iraq. Renew Energ 138: 775-792. doi: 10.1016/j.renene.2019.02.004
|
| [24] |
Baniasad Askari I, Baniasad Askari L, Kaykhah MM, et al. (2014) Optimisation and techno-economic feasibility analysis of hybrid (photovoltaic/wind/fuel cell) energy systems in Kerman, Iran; Considering the effects of electrical load and energy storage technology. International Journal of Sustainable Energy 33: 635-649. doi: 10.1080/14786451.2013.769991
|