Возобновляемые источники энергии (это в виде солнечная энергия, ветровая, биомасса)

Заказать уникальный реферат
Тип работы: Реферат
Предмет: Экономика
  • 20 20 страниц
  • 60 + 60 источников
  • Добавлена 27.01.2024
748 руб.
  • Содержание
  • Часть работы
  • Список литературы
-
Фрагмент для ознакомления

– М.: Проспект, 2015. – 224 с. Городов О.А. О системе договоров, заключаемых в отдельных отраслях энергетики / О.А. Городов // Закон, – 2015. – № 1. Зарубежная электроэнергетика (Электронный ресурс) // официальный сайт Ассоциации «НП Совет Рынка»(сайт) URL:http://www.№p-sr.ru/market/comi№fo/foreig№/i№dex.htm (дата обращения: 22.12.2023).Иосифов В.В. Перспективы развития в России рынков энергоэффективных технологий массового спроса // Дайджест-финансы. 2017. Т. 22, вып. 1. С. 19—32.Иосифов В.В. Сценарный анализ сонаправленного развития инновационных автотранспортных технологий и технологий электрогенерации // Экономический анализ: теория и практика. 2016. № 11 (458). С. 167—178.Лукутин Б.В. и др. Возобновляемая энергетика в децентрализованном электроснабжении. Монография / Б.В. Лукутин, О.А. Суржикова., Е.Б. Шандарова. -М.: Энергоатомиздат, 2008. - 231 с.Лукутин Б.В. Возобновляемые источники электроэнергии: учеб. пособие / Б.В. Лукутин - Томск: Изд-во Томского политехнического университета, 2008. - 187 с. Ратнер С.В. Управление качеством энергоснабжения в энергосистемах со смешанным типом генерации: организационно-экономические аспекты // Финансовая аналитика: проблемы и решения. 2016. № 19. С. 2—6.Удалов С.Н. Возобновляемые источники энергии: учеб. пособие / С.Н.Удалов. – 3-е изд., перераб. и доп. – Новосибирск: Изд-во НГТУ, 2013 – 459 с.+ цв. вкл. –(Серия «Учебники НГТУ).Abbasi,T.,Premalatha,M.&Abbasi,S.(2011).Thereturntorenewables:Willithelpinglobalwarmingcontrol?RenewableandSustainableEnergyReviews,15. – p.891–894.Ajanovic,A.(2011).Biofuelsversusfoodproduction:Doesbiofuelsproductionincreasefoodprices?Energy,36,2070–2076.10.1016/j.energy.2010.05.019Asumadu-Sarkodie,S.,&Owusu,P.A.(2016a).FeasibilityofbiomassheatingsysteminMiddleEastTechnicalUniversity,NorthernCypruscampus.CogentEngineering,3.Asumadu-Sarkodie,S.,&Owusu,P.A.(2016b).AreviewofGhana’senergysectornationalenergystatisticsandpolicyframework.CogentEngineering,3.Asumadu-Sarkodie,S.,&Owusu,P.A.(2016c).Multivariateco-integrationanalysisoftheKayafactorsinGhana.EnvironmentalScienceandPollutionResearch.Asumadu-Sarkodie,S.,&Owusu,P.A.(2016d).ThepotentialandeconomicviabilityofsolarphotovoltaicinGhana.EnergySources,PartA:Recovery,Utilization,andEnvironmentalEffects.Asumadu-Sarkodie,S.,&Owusu,P.A.(2016e).ThepotentialandeconomicviabilityofwindfarmsinGhanaEnergySources,PartA:Recovery,Utilization,andEnvironmentalEffects.Asumadu-SarkodieS,&Owusu,P.A.(2016f).TherelationshipbetweencarbondioxideandagricultureinGhana,acomparisonofVECMandARDLmodel.EnvironmentalScienceandPollutionResearch.Asumadu-Sarkodie,S.,&Owusu,P.A.(2016g).Carbondioxideemissions,GDP,energyuseandpopulationgrowth:AmultivariateandcausalityanalysisforGhana,1971–2013.EnvironmentalScienceandPollutionResearchInternational.Asumadu-Sarkodie,S.,Owusu,P.A.,&Jayaweera,H.M.(2015).FloodriskmanagementinGhana:AcasestudyinAccra.AdvancesinAppliedScienceResearch,6,196–201.Asumadu-Sarkodie,S.,Owusu,P.A.,&Rufangura,P.(2015).ImpactanalysisoffloodinAccra,Ghana.AdvancesinAppliedScienceResearch,6,53–78.Asumadu-Sarkodie,S.,Rufangura,P.,Jayaweera,H.M.,&Owusu,P.A.(2015).SituationalanalysisoffloodanddroughtinRwanda.InternationalJournalofScientificandEngineeringResearch,6,960–970.Ayoub,M.,&Abdullah,A.Z.(2012).Criticalreviewonthecurrentscenarioandsignificanceofcrudeglycerolresultingfrombiodieselindustrytowardsmoresustainablerenewableenergyindustry.RenewableandSustainableEnergyReviews,16,2671–2686.Baños,R.,Manzano-Agugliaro,F.,Montoya,F.,Gil,C.,Alcayde,A.,&Gómez,J.(2011).Optimizationmethodsappliedtorenewableandsustainableenergy:Areview.RenewableandSustainableEnergyReviews,15,1753–1766.Badal,F.R.,Das,P.,Sarker,S.K.etal.Asurveyoncontrolissuesinrenewableenergyintegrationandmicrogrid.ProtControlModPowerSyst4,8(2019).https://doi.org/10.1186/s41601-019-0122-8Barbier,E.(2002).Geothermalenergytechnologyandcurrentstatus:Anoverview.RenewableandSustainableEnergyReviews,6,3–65.10.1016/S1364-0321(02)00002-3БобровА.В.Возобновляемыеисточникиэнергии:учеб.-метод.пособие(Электронныйресурс)/А.В.Бобров,В.А.Тремясов.–Электрон.дан.–Красноярск:Сиб.федер.ун-т,2013.- 216с.Baum,C.,Leinweber,P.,Weih,M.,Lamersdorf,N.,&Dimitriou,I.(2009).Effectsofshortrotationcoppicewithwillowsandpoplaronsoilecology.LandbauforschungvTIAgricultureandForestryResearch59,09–2009.Brew-Hammond,A.(2010).EnergyaccessinAfrica:Challengesahead.EnergyPolicy,38,2291–2301.10.1016/j.enpol.2009.12.016Demirbas,M.F.,Balat,M.,&Balat,H.(2009).Potentialcontributionofbiomasstothesustainableenergydevelopment.EnergyConversionandManagement,50,1746–1760.EarthSystemResearchLaboratory(2015)TheNOAAannualgreenhousegasindex(AGGI).RetrievedOctober24,2015. -URL: http://www.esrl.noaa.gov/gmd/aggi/aggi.htmlEdenhofer,O.,Pichs-Madruga,R.,Sokona,Y.,Seyboth,K.,Matschoss,P.,Kadner,S.,...vonStechow,C.(2011).RenewableEnergySourcesandClimateChangeMitigation.Cambridge:CambridgeUniversityPress.10.1017/CBO9781139151153Esteban,M.,&Leary,D.(2012).Currentdevelopmentsandfutureprospectsofoffshorewindandoceanenergy.AppliedEnergy,90,128–136.10.1016/j.apenergy.2011.06.011Førsund,F.R.(2015).Hydropowereconomics(Vol.217).NewYork,NY:Springer.Fräss-Ehrfeld,C.(2009).Renewableenergysources:Achancetocombatclimatechange(Vol.1).KluwerLawInternational.HamannA.(2015).Coordinatedpredictivecontrolofahydropowercascade.Headey,D.,&Fan,S.(2008).Anatomyofacrisis:Thecausesandconsequencesofsurgingfoodprices.AgriculturalEconomics,39,375–391.10.1111/agec.2008.39.issue-s1Hoogwijk,M.,Faaij,A.,Eickhout,B.,deVries,B.,&Turkenburg,W.(2005).Potentialofbiomassenergyoutto2100,forfourIPCCSRESland-usescenarios.BiomassandBioenergy,29,225–257.10.1016/j.biombioe.2005.05.002InternationalEnergyAgency.(2014).WorldEnergyOutlookSpecialReport.RetrievedAugust17,2015,fromhttp://www.iea.org/publications/freepublications/publication/WEO2014_AfricaEnergyOutlook.pdfJacobson,M.Z.,&Delucchi,M.A.(2011).Providingallglobalenergywithwind,water,andsolarpower,PartI:Technologies,energyresources,quantitiesandareasofinfrastructure,andmaterials.EnergyPolicy,39,1154–1169.Koh,L.P.,&Ghazoul,J.(2008).Biofuels,biodiversity,andpeople:Understandingtheconflictsandfindingopportunities.BiologicalConservation,141,2450–2460.10.1016/j.biocon.2008.08.005.Kruyt,B.,vanVuuren,D.P.,deVries,H.,&Groenenberg,H.(2009).Indicatorsforenergysecurity.EnergyPolicy,37,2166–2181.10.1016/j.enpol.2009.02.006.LarsenH.H.,KristensenN.B.,SønderbergPetersenL.,KristensenH.O.H.,PedersenA.S.,JensenT.C.,&SchrammJ.(2009,March17-18).Manwell,J.F.,McGowan,J.G.,&Rogers,A.L.(2010).Windenergyexplained:Theory,designandapplication.Wiley.Panwar,N.,Kaushik,S.,&Kothari,S.(2011).Roleofrenewableenergysourcesinenvironmentalprotection:Areview.RenewableandSustainableEnergyReviews,15,1513–1524.10.1016/j.rser.2010.11.037.Robertson,G.,Dale,V.H.,Doering,O.C.,Hamburg,S.P.,Melillo,J.M.,Wander,M.M.,…Wilhelm,W.W.(2008).Sustainablebiofuelsredux.Science,322,49–50.doi:10.1126/science.1161525.Rogelj,J.,McCollum,D.L.,Reisinger,A.,Meinshausen,M.,&Riahi,K.(2013).Probabilisticcostestimatesforclimatechangemitigation.Nature,493,79–83.10.1038/nature11787.R.Singh,Y.R.Sood,N.P.PadhyandB.Venkatesh,"AnalysisofrenewablepromotionalpoliciesandtheircurrentstatusinIndianrestructuredpowersector,"IEEEPEST&D2010,2010,pp.1-8,doi:10.1109/TDC.2010.5484406.SemichImpram,SecilVarbakNese,BülentOral,Challengesofrenewableenergypenetrationonpowersystemflexibility:Asurvey,EnergyStrategyReviews,Volume31,2020,100539,ISSN2211-467X,https://doi.org/10.1016/j.esr.2020.100539.Schulz,U.,Brauner,O.,&Gruß,H.(2009).Animaldiversityonshort-rotationcoppices–areview.VTIAgricultureandForestryResearch,3,171–181.Solaun,K.andCerdá,E.,2019.Climatechangeimpactsonrenewableenergygeneration.Areviewofquantitativeprojections.RenewableandsustainableenergyReviews,116,p.109415.Spulbar,C.,Trivedi,J.,Birau,R.(2020),Investigatingabnormalvolatilitytransmissionpatternsbetweenemerginganddevelopedstockmarkets:Acasestudy.JournalofBusinessEconomicsandManagement,21(6),1561-1592.TesterJ.W.(2005).Sustainableenergy:Choosingamongoptions.London:MITPress.Tilman,D.,Hill,J.,&Lehman,C.(2006).Carbon-negativebiofuelsfromlow-inputhigh-diversitygrasslandbiomass.Science,314,1598–1600.Tiwari,G.N.,&Mishra,R.K.(2011).Advancedrenewableenergysources.RoyalSocietyofChemistry.Twidell,J.,&Weir,T.(2015).Renewableenergyresources.Routledge.UnitedStatesEnvironmentalProtectionAgency.(2014).Carbondioxideemissions.RetrievedDecember2,2015,URL: http://www3.epa.gov/climatechange/ghgemissions/gases/co2.htmlUrban,F.,&Mitchell,T.(2011).Climatechange,disastersandelectricitygeneration.U.S.EnergyInformationAdministration.(2012).Internationalenergystatistics.RetrievedOctober18,2015,URL: http://www.eia.gov/cfapps/ipdbproject/IEDIndex3.cfm?tid=2&pid=2&aid=2Verbruggen,A.,Fischedick,M.,Moomaw,W.,Weir,T.,Nadaï,A.,Nilsson,L.J,Sathaye,J.(2010).Renewableenergycosts,potentials,barriers:Conceptualissues.EnergyPolicy,38,850–861.10.1016/j.enpol.2009.10.036WorldEnergyCouncil.(2013).WorldEnergyResources:Hydro.RetrievedJanuary26,2016,URL: https://www.worldenergy.org/wp-content/uploads/2013/10/WER_2013_5_Hydro.pdf

1. Городов О.А. Введение в энергетическое право: учебное пособие / О.А. Городов. – М.: Проспект, 2015. – 224 с.
2. Городов О.А. О системе договоров, заключаемых в отдельных отраслях энергетики / О.А. Городов // Закон, – 2015. – № 1.
3. Зарубежная электроэнергетика (Электронный ресурс) // официальный сайт Ассоциации «НП Совет Рынка» (сайт) URL: http://www.№p-sr.ru/market/comi№fo/foreig№/i№dex.htm (дата обращения: 22.12.2023).
4. Иосифов В.В. Перспективы развития в России рынков энергоэффективных технологий массового спроса // Дайджест-финансы. 2017. Т. 22, вып. 1. С. 19—32.
5. Иосифов В.В. Сценарный анализ сонаправленного развития инновационных автотранспортных технологий и технологий электрогенерации // Экономический анализ: теория и практика. 2016. № 11 (458). С. 167—178.
6. Лукутин Б.В. и др. Возобновляемая энергетика в децентрализованном электроснабжении. Монография / Б.В. Лукутин, О.А. Суржикова., Е.Б. Шандарова. -М.: Энергоатомиздат, 2008. - 231 с.
7. Лукутин Б.В. Возобновляемые источники электроэнергии: учеб. пособие / Б.В. Лукутин - Томск: Изд-во Томского политехнического университета, 2008. - 187 с.
8. Ратнер С.В. Управление качеством энергоснабжения в энергосистемах со смешанным типом генерации: организационно-экономические аспекты // Финансовая аналитика: проблемы и решения. 2016. № 19. С. 2—6.
9. Удалов С.Н. Возобновляемые источники энергии: учеб. пособие / С.Н.Удалов. – 3-е изд., перераб. и доп. – Новосибирск: Изд-во НГТУ, 2013 – 459 с.+ цв. вкл. –(Серия «Учебники НГТУ).
10. Abbasi, T., Premalatha, M. & Abbasi, S. (2011). The return to renewables: Will it help in global warming control? Renewable and Sustainable Energy Reviews, 15. – p. 891–894.
11. Ajanovic, A. (2011). Biofuels versus food production: Does biofuels production increase food prices? Energy , 36 , 2070–2076.10.1016/j.energy.2010.05.019
12. Asumadu-Sarkodie, S., & Owusu, P. A. (2016a). Feasibility of biomass heating system in Middle East Technical University, Northern Cyprus campus. Cogent Engineering, 3.
13. Asumadu-Sarkodie, S., & Owusu, P. A. (2016b). A review of Ghana’s energy sector national energy statistics and policy framework. Cogent Engineering, 3.
14. Asumadu-Sarkodie, S., & Owusu, P. A. (2016c). Multivariate co-integration analysis of the Kaya factors in Ghana. Environmental Science and Pollution Research.
15. Asumadu-Sarkodie, S., & Owusu, P. A. (2016d). The potential and economic viability of solar photovoltaic in Ghana. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects.
16. Asumadu-Sarkodie, S., & Owusu, P. A. (2016e). The potential and economic viability of wind farms in Ghana Energy Sources, Part A: Recovery, Utilization, and Environmental Effects.
17. Asumadu-Sarkodie S, & Owusu, P. A. (2016f). The relationship between carbon dioxide and agriculture in Ghana, a comparison of VECM and ARDL model. Environmental Science and Pollution Research.
18. Asumadu-Sarkodie, S., & Owusu, P. A. (2016g). Carbon dioxide emissions, GDP, energy use and population growth: A multivariate and causality analysis for Ghana, 1971–2013. Environmental Science and Pollution Research International.
19. Asumadu-Sarkodie, S., Owusu, P. A., & Jayaweera, H. M. (2015). Flood risk management in Ghana: A case study in Accra. Advances in Applied Science Research , 6 , 196–201.
20. Asumadu-Sarkodie, S., Owusu, P. A., & Rufangura, P. (2015). Impact analysis of flood in Accra, Ghana. Advances in Applied Science Research, 6, 53–78.
21. Asumadu-Sarkodie, S., Rufangura, P., Jayaweera, H. M., & Owusu, P. A. (2015). Situational analysis of flood and drought in Rwanda. International Journal of Scientific and Engineering Research, 6, 960–970.
22. Ayoub, M., & Abdullah, A. Z. (2012). Critical review on the current scenario and significance of crude glycerol resulting from biodiesel industry towards more sustainable renewable energy industry. Renewable and Sustainable Energy Reviews, 16, 2671–2686.
23. Baños, R., Manzano-Agugliaro, F., Montoya, F., Gil, C., Alcayde, A., & Gómez, J. (2011). Optimization methods applied to renewable and sustainable energy: A review. Renewable and Sustainable Energy Reviews, 15, 1753–1766.
24. Badal, F.R., Das, P., Sarker, S.K. et al. A survey on control issues in renewable energy integration and microgrid. Prot Control Mod Power Syst 4, 8 (2019). https://doi.org/10.1186/s41601-019-0122-8
25. Barbier, E. (2002). Geothermal energy technology and current status: An overview. Renewable and Sustainable Energy Reviews, 6, 3–65.10.1016/S1364-0321(02)00002-3
26. Бобров А.В. Возобновляемые источники энергии: учеб.-метод. пособие (Электронный ресурс) / А.В. Бобров, В.А. Тремясов. – Электрон. дан. – Красноярск: Сиб. федер. ун-т, 2013. - 216 с.
27. Baum, C., Leinweber, P., Weih, M., Lamersdorf, N., & Dimitriou, I. (2009). Effects of short rotation coppice with willows and poplar on soil ecology. Landbauforschung vTI Agriculture and Forestry Research 59, 09–2009.
28. Brew-Hammond, A. (2010). Energy access in Africa: Challenges ahead. Energy Policy , 38 , 2291–2301.10.1016/j.enpol.2009.12.016
29. Demirbas, M. F., Balat, M., & Balat, H. (2009). Potential contribution of biomass to the sustainable energy development. Energy Conversion and Management, 50, 1746–1760.
30. Earth System Research Laboratory (2015) The NOAA annual greenhouse gas index (AGGI). Retrieved October 24, 2015. - URL: http://www.esrl.noaa.gov/gmd/aggi/aggi.html
31. Edenhofer, O., Pichs-Madruga, R., Sokona, Y. , Seyboth, K. , Matschoss, P. , Kadner, S. , ... von Stechow, C. (2011). Renewable Energy Sources and Climate Change Mitigation. Cambridge : Cambridge University Press.10.1017/CBO9781139151153
32. Esteban, M., & Leary, D. (2012). Current developments and future prospects of offshore wind and ocean energy. Applied Energy , 90 , 128–136.10.1016/j.apenergy.2011.06.011
33. Førsund, F. R. (2015). Hydropower economics (Vol. 217). New York, NY: Springer.
34. Fräss-Ehrfeld, C. (2009). Renewable energy sources: A chance to combat climate change (Vol. 1). Kluwer Law International.
35. Hamann A. (2015). Coordinated predictive control of a hydropower cascade.
36. Headey, D., & Fan, S. (2008). Anatomy of a crisis: The causes and consequences of surging food prices. Agricultural Economics , 39 , 375–391.10.1111/agec.2008.39.issue-s1
37. Hoogwijk, M., Faaij, A., Eickhout, B., de Vries, B., & Turkenburg, W. (2005). Potential of biomass energy out to 2100, for four IPCC SRES land-use scenarios. Biomass and Bioenergy , 29 , 225–257.10.1016/j.biombioe.2005.05.002
38. International Energy Agency. (2014). World Energy Outlook Special Report. Retrieved August 17, 2015, from http://www.iea.org/publications/freepublications/publication/WEO2014_AfricaEnergyOutlook.pdf
39. Jacobson, M. Z., & Delucchi, M. A. (2011). Providing all global energy with wind, water, and solar power, Part I: Technologies, energy resources, quantities and areas of infrastructure, and materials. Energy Policy, 39, 1154–1169.
40. Koh, L. P., & Ghazoul, J. (2008). Biofuels, biodiversity, and people: Understanding the conflicts and finding opportunities. Biological Conservation , 141 , 2450–2460.10.1016/j.biocon.2008.08.005.
41. Kruyt, B., van Vuuren, D. P., de Vries, H., & Groenenberg, H. (2009). Indicators for energy security. Energy Policy, 37, 2166–2181.10.1016/j.enpol.2009.02.006.
42. Larsen H. H. , Kristensen N. B. , Sønderberg Petersen L. , Kristensen H. O. H., Pedersen A. S. , Jensen T. C. , & Schramm J. (2009, March 17-18).
43. Manwell, J. F., McGowan, J. G., & Rogers, A. L. (2010). Wind energy explained: Theory, design and application. Wiley.
44. Panwar, N., Kaushik, S., & Kothari, S. (2011). Role of renewable energy sources in environmental protection: A review. Renewable and Sustainable Energy Reviews , 15 , 1513–1524.10.1016/j.rser.2010.11.037.
45. Robertson, G. , Dale, V. H. , Doering, O. C. , Hamburg, S. P. , Melillo, J. M. , Wander, M. M. , … Wilhelm, W. W. (2008). Sustainable biofuels redux. Science, 322, 49–50. doi:10.1126/science.1161525.
46. Rogelj, J., McCollum, D. L., Reisinger, A., Meinshausen, M., & Riahi, K. (2013). Probabilistic cost estimates for climate change mitigation. Nature, 493, 79–83.10.1038/nature11787.
47. R. Singh, Y. R. Sood, N. P. Padhy and B. Venkatesh, "Analysis of renewable promotional policies and their current status in Indian restructured power sector," IEEE PES T&D 2010, 2010, pp. 1-8, doi: 10.1109/TDC.2010.5484406.
48. Semich Impram, Secil Varbak Nese, Bülent Oral, Challenges of renewable energy penetration on power system flexibility: A survey, Energy Strategy Reviews, Volume 31, 2020, 100539, ISSN 2211- 467X, https://doi.org/10.1016/j.esr.2020.100539.
49. Schulz, U., Brauner, O., & Gruß, H. (2009). Animal diversity on short-rotation coppices–a review. VTI Agriculture and Forestry Research, 3, 171–181.
50. Solaun, K. and Cerdá, E., 2019. Climate change impacts on renewable energy generation. A review of quantitative projections. Renewable and sustainable energy Reviews, 116, p.109415.
51. Spulbar, C., Trivedi, J., Birau, R. (2020), Investigating abnormal volatility transmission patterns between emerging and developed stock markets: A case study. Journal of Business Economics and Management, 21(6), 1561-1592.
52. Tester J. W. (2005). Sustainable energy: Choosing among options. London: MIT Press.
53. Tilman, D., Hill, J., & Lehman, C. (2006). Carbon-negative biofuels from low-input high-diversity grassland biomass. Science , 314 , 1598–1600.
54. Tiwari, G. N., & Mishra, R. K. (2011). Advanced renewable energy sources. Royal Society of Chemistry.
55. Twidell, J., & Weir, T. (2015). Renewable energy resources. Routledge.
56. United States Environmental Protection Agency. (2014). Carbon dioxide emissions. Retrieved December 2, 2015, URL: http://www3.epa.gov/climatechange/ghgemissions/gases/co2.html
57. Urban, F., & Mitchell, T. (2011). Climate change, disasters and electricity generation.
58. U.S. Energy Information Administration. (2012). International energy statistics. Retrieved October 18, 2015, URL: http://www.eia.gov/cfapps/ipdbproject/IEDIndex3.cfm?tid=2&pid=2&aid=2
59. Verbruggen, A., Fischedick, M., Moomaw, W., Weir, T., Nadaï, A., Nilsson, L. J, Sathaye, J. (2010). Renewable energy costs, potentials, barriers: Conceptual issues. Energy Policy , 38 , 850–861.10.1016/j.enpol.2009.10.036
60. World Energy Council. (2013). World Energy Resources: Hydro. Retrieved January 26, 2016 , URL: https://www.worldenergy.org/wp-content/uploads/2013/10/WER_2013_5_Hydro.pdf