Güneş Enerjisi ile Tarımsal Sulama

Yazarlar

Özet

-

Referanslar

ABU-ALIGAH, M., 2011. Design of photovoltaic water pumping system and compare it with diesel powered pump. Jordan Journal Mechanical & Industrial Engineering, 5(3), 273–280.

AKAR, M., SİLAY, A.E., AKKAYA, H., TOMAR, A. 2010. Sulama Araç, Yöntem Ve Organizasyonlarının Geliştirilmesi. Ziraat Mühendisliği VII. Teknik Kongresi Bildirileri.

ALIYU, M., HASSAN, G., SAID, S.A., SIDDIQUI, M.U., ALAWAMI, A.T., ELAMIN, I.M., 2018. A review of solar-powered water pumping systems. Renewable Sustainable Energy Reviews, 87, 61–76.

ALLEN, R.G., JENSEN, M.E., WRIGHT, J.L., BURMAN, R.D. 1989. Operational estimate of reference evapotranspiration.Agron.J.81:650-662.

ALLEN, R.G., PEREIRA, L.S., RAES, D., SMITH, M., 2006. Evapotranspiración del Cultivo Guías Para la Determinación de los Requerimientos de Agua de los Cultivos, FAO: Rome, Italy, pp. 1–322. 24. CNR. Boletín N◦ 6: Coeficiente de Cultivo, CNR: Santiago, Chile, pp. 1–7.

AMOUCHE, B., GUESSOUM, A., BELHAMEL, M., 2012. A simple behavioral model for solar module electric characteristics based on the first order system step response for MPPT study and comparison.

ANIS, W.R., NOURZ, M.A., 1994. Optimum design of a photovoltaic powered pumping system. Energy Conversion and Management, 35(12), 1123–1130.

ANONIM, 2013. Monocrystalline PV-Modules, LCS M200-JA/SI, Solarstrom AG Renewable Energy Solutions.

ARCE A. et al. 2012. A simulation of the economic impact of renewable energy development in Morocco. Energy Policy 46.

ARJYADHARA, P., ALI S.M., CHITRALEKHA, J. 2013. Analysis o f s olar P V c ell performance with changing irradiance and temperature. International Journal of Engineering and Computer, 2 (1), 214–220.

ARORA, N.D., HAUSER, J.R., 1982. Temperature dependence of silicon solar cell characteristics. Solar Energy Materials, 6(2) 151–158.

ASCOUGH, G.W., KIKER, G.A., 2002. The effect of irrigation uniformity on irrigation water requirements. Water Sa, 28(2), 235–242.

BAGNALL, D. M., BORELAND M., 2008. Photovoltaic technologies. Energy Policy, 36: 4390-4396.

BELGACEM, B.G., 2012. Performance of submersible PV water pumping systems in Tunisia. Energy Sustainable Development, 16(4), 415–420.

BENGHANEM, M., DAFFALLAH, K.O., JORAID, A.A., ALAMRI, S.N., JABER, A.2013. Performances of solar water pumping system using helical pump for a deep well: A case study for Madinah, Saudi Arabia. Energy Conversion and Management 65: 50– 56.

BETKA, A., ATTALI, A. 2010. Optimization of a photovoltaic pumping system based on the optimal control theory. Solar Energy 84(7): 1273–1283.

BOUTELHIG, A., HADJARAB, A., BAKELLI, Y. 2011. Comparison study to select an optimum photovoltaic pumping system (PVPS) configuration upon experimental performances data of two different dc pumps tested at Ghardaïa site. Energy Procedia (6): 769−776.

BOUTELHIG, A., BAKELLI, Y., HADJ MAHAMMED, I., HADJ ARAB, A. 2012. Performances study of different PV powered DC pump configurations for an optimum energy rating at different heads under the outdoor conditions of a desert area. Energy 39(1): 33−39.

BROUWER, C., PRINS, K., HEIBLOEM, M., 1989. Irrigation Water Management: Irrigation Scheduling (Rome: FAO)

CÁCERES, G., ANRIQUE, N., GIRARD, A., DEGRÈVE, J., BAEYENS, J., ZHANG, H.L., 2013. Performance of molten salt solar power towers in Chile. Journal of Renewable Sustainable Energy, 5(5), 053142.

CAI, F., CHAO, W., LONG, T.J., XIONG, L.D., FU, H.S., GANG, X.Z., 2012. The influence of environment temperatures on single crystalline and polycrystalline silicon solar cell performance. Science China Physics, Mechanics and Astronomy, 55(2): 235–241.

ÇALLI İ., YİĞİT K.S., KORKMAZ Y., TOKLU E., 1994. “Santrifüj Pompalarda Optimum Devir Sayısının Teorik ve Deneysel İncelenmesi”, 8. Mühendislik Haftası, Isparta, Türkiye, Mayıs 26-28.

CAMPANA, P.E., ZHU, Y., BRUGIATI, E., LI, H., YAN, J., 2014. PV water pumping for irrigation equipped with a novel control system for water savings. Energy Procedia, 61, 949-952.

CAMPANA, P.E., LI, H., YAN, J. 2013. Dynamic modelling of a PV pumping system with special consideration on water demand. Applied Energy 112: 635–645.

CARROQUINO, J., DUFO-LÓPEZ, R., BERNAL-AGUSTIN, J.L., 2015. Sizing of off-grid renewable energy systems for drip irrigation in Mediterranean crops. Renewable Energy, 76, 566–574.

CHEGAAR, M., HAMZAOUI, A., NAMODA, A., PETIT, P., AILLERIE, M., HERGUTH, A. 2013. Effect of illumination intensity on solar cells parameters. Energy Procedia, 36, 722–729.

CHOI, P., KIM, H., BAEK, D., CHOI, B., 2012. A study on the electrical characteristic analysis of c-Si solar cell diodes. Journal of Semiconducter Technology and Science, 12(1), 59–65.

COELLO, J., CASTRO, M., ANTON, I., SALA, G., VAZQUEZ, M.A., 2004. Conversion of commercial Si solar cells to keep their efficient performance at 15 suns. Progress in Photovoltaics Research and Application, 12(5), 323–331.

COOPER, M., 2012. Energías Renovables no Convencionales en la Agricultura, Ministerio De Agricultura, Gobierno De Chile: Santiago, Chile.

CUADROS, F., LÓPEZ-RODRIGUEZ, F., MARCOS, A., COELLO, J., 2004. A procedure to size solar-powered irrigation (photoirrigation) schemes. Solar Energy, 76(4), 465- 473.

CUCE, E., CUCE, P.M., BALI, T. 2013. An experimental analysis of illumination intensity and temperature dependency of photovoltaic cell parameters. Applied Energy, 111, 374–382.

ÇAKMAK, B. 2010. Sulama Suyu Gereksinimi; Bitki Su Tüketimi, Tahmin Yöntemleri.

ÇAKMAK, B., YILDIRIM, M., AKÜZÜM, T. Türkiye’de Tarımsal Sulama Yönetimi, Sorunlar Ve Çözüm Önerileri. TMMOB 2. Su Politikaları Kongresi 215-224.

ÇETİN, Ö. 2004. Tarımsal Sulama Yöntemleri. Tarım ve Köyişleri Bakanlığı Yayın Dairesi Başkanlığı Çiftçi Eğitim Serisi Yayınları, No: 2004/7, Ankara.

DACCACHE, A., CIURANA, J.S., RODRIGUEZ DIAZ, J.A., KNOX, J.W., 2014. Water and energy footprint of irrigated agriculture in the Mediterranean region. Environmental Research Letter 9 (12), 124014.

DE FRAITURE, C., GIORDANO, M., 2014. Small private irrigation: A thriving but overlooked sector. Agricultural Water Management, 131, 167–174.

DEKKER, T. D. 2015. Solarizing Indian agriculture by deploying solar irrigation pumps.

DOORENBOS, J., PRUITT, W.O., 1977. Guidelines for Predicting Crop. Water Requirements, FAO Irrigation and Drainage Paper, FAO: Rome, Italy, Volume 24, ISBN 92-5-100279-7.

DOORENBOS, J., 1975. Crop water requirements. Food and Agriculture Organization of the United Nations (FAO), Rome.

DOORENBOS, J., PRUİTT, W.O., 1997. Guideline for predicting crop water requirements. FAO Irrigation and Drainage. Paper 24, Rome.

DUBEY, S., SARVAIYA, J.N., SESHADRI, B. 2013.Temperature dependent photovoltaic (PV) efficiency and its effect on PV production in the world a review. Energy Procedia, 33, 311–321.

EBAID, M.S.Y., QANDIL, H., HAMMAD, M., 2013. A unified approach for designing a photovoltaic solar system for the underground water pumping well-34 at Disi aquifer. Energy Conversion and Management, 75, 780–795.

EMERY, K., OSTERWALD, C., 1987. Measurement of photovoltaic device current as a function of voltage, temperature, intensity and spectrum Solar Cells, 21, 313–327.

ERTÖZ, A.Ö., 2003. “Pompalarda Enerji Verimliliği”, 6. Ulusal Tesisat Mühendisliği ve Kongresi, Tesisat Dergisi, TES-22, İstanbul.

FERON, S., 2016. Sustainability of Off-Grid Photovoltaic Systems for Rural Electrification in Developing Countries: A Review. Sustainability, 8, 1326.

FERON, S., CORDERO, R.R., LABBE, F., 2017. Rural Electrification Efforts Based on Off- Grid Photovoltaic Systems in the Andean Region: Comparative Assessment of Their Sustainability. Sustainability, 9(10), 1825.

FERON, S., HEINRICHS, H., CORDERO, R.R., 2016. Are the Rural Electrification Efforts in the Ecuadorian Amazon Sustainable? Sustainability, 8(5), 443.

FESHARAKI, V.J., DEHGHANI, M., FESHARAKI, J.J., 2011. The effect of temperature on photovoltaic cell efficiency. In: Proceedings of the 1st International Conference on Emerging Trends in Energy Conservation- ETEC, Tehran, Iran, November 20–22.

FIASCHI, D., GRANIGLIA, R., MANFRIDA, G. 2005. Improving the effectiveness of solar pumping systems by using modular centrifugal pumps with variable rotational speed. Solar Energy 79: 234–244.

FOSTER R.E. 2015. Solar Water Pumping: Kenya and Nepal Market Acceleration. ISES Solar World Congress.

GANDIA, J.J., CARABE, J., FABERO, F., JIMENEZE, R., RIVERO, J.M., 2001. A new procedure for the accurate in door measurements of solar cell I–V characteristics. J. Solar Energy, 21, 243–256.

GARCIA, A.M., GARCIA, I.F., POYATO, E.C., BARRIOS, P.M., DIAZ, J.R., 2018. Coupling irrigation scheduling with solar energy production in a smart irrigation management system. Journal of Cleaner Production, 175, 670–682.

GHONEIM, A.A. 2006. Design optimization of photovoltaic powered water pumping systems. Energy Conversion and Management, 47(11–12): 1449–1463.

GIZ India. Solar water pumping for irrigation: Opportunities in Bihar, India. Indo-German Energy Programme.

GIZ. Frequently Asked Questions on solar powered irrigation pumps, Indo-German Energy Programme – Access to Energy in Rural Areas.

GLASNOVIC, Z., MARGETA, J., 2007. A model for optimal sizing of photovoltaic irrigation water pumping systems. Solar Energy 81, 904–916.

GOETZBERGER, A., HEBLING C., SCHOCK H.W., 2003. Photovoltaic materials, history, status and Outlook. Materials Science and Engineering, 40, 1-46.

GOETZBERGER, A., SHOCKLEY, W., 1960. Metal precipitates in silicon p-n junctions. Journal of Applied Physics, 31(10), 1821-1824.

GÖKALP, Y. 2013. Güneş Enerjisinden Yararlanarak Santrifüj Pompa İle Su Pompalama Üzerine Bir Araştırma. Yüksek Lisans Tezi, Ç.Ü. Fen Bilimleri Enstitüsü Tarım Makinaları Anabilim Dalı, Adana.

GREEN, M. A., EMERY K., HISHIKAWA Y., WARTA W., 2010. Solar cell efficiency tables (version 36). Progress in Photovoltaics: Research and Applications, 18: 346- 352.

GREEN, M.A. 2009. The path to 25% silicon solar cell efficiency: History of silicon cell evolution. Progress in Photovoltaics: Research and Applications, 17: 183-189.

GÜVEN, S., TERZİOĞLU, R.G., http://www.eeb.hacettepe.edu.tr.

GÜLEÇ, M., “Pnömatik Sistemlerde Tasarruf Önlemleri Ve Yöntemleri”, I. Ulusal Hidrolik Pnömatik Kongresi Ve Sergisi.

HILL, N., WALKER, H., CHOUDRIE, S., JAMES, K., 2012. Guidelines to Defra/DECC’s GHG Conversion Factors for Company Reporting: Methodology Paper for Emission Factors. Department for Environment, Food and Rural Affairs (DEFRA). PB 13792 July 2012.

HOLDSWORTH, J., 1997. “Conserving Energy in Compressed Air Systems”, Plant Engineering, 51 (13):103-104.

IEA, 2012. CO2 emissions from fuel combustion highlights (www. iea.org/statistics)

IDB, 2011. Inter-American Development Bank EVALUATION OF WATER PUMPING SYSTEMS Energy Efficiency Assessment Manual First Edition. Water and Sanitation Initiative Sustainable Energy and Climate Change Initiative Washington, D.C.

ITDG, 2007. Intermediate Technology Development Group. Solar (photovoltaic) water pumping.

ISO 9905, “Radyal (Santrifüj) Pompa Teknik Özellikleri”, Sınıf I, POMSAD Yayınları, No: 7, 2000.

ISO 9908, “Radyal (Santrifüj) Pompa Teknik Özellikleri”, Sınıf III, POMSAD Yayınları, No: 8, 2000.

ISO 3555, “Radyal, Karışık Akımlı ve Eksenel Pompalar Kabul Deneyi Esasları”, B Sınıfı, POMSAD Yayınları, No: 3, 1998.

ISO 2548, “Radyal, Karışık Akımlı ve Eksenel Pompalar Kabul Deneyi Esasları”, C Sınıfı, POMSAD Yayınları, No: 4, 1998.

IRENA. 2016. Solar pumping for irrigation: Improving livelihoods and sustainability.

IRMAK, S., ODHIAMBO, L., KRANZ, W.L., EISENHAUER, D., 2011. Irrigation Efficiency and Uniformity, and Crop Water Use Efficiency. Biological Systems Engineering Papers, 451: 1-8.

JOSHI, A., DINCER, I., REDDY, B.V., 2009. Thermodynamic assessment of photovoltaic systems, Solar Energy, Vol. 83, No. 8, pp. 1139–1149.

KALDELLIS, J.K., MEIDANIS, E., ZAFIRAKIS, D., 2011. Experimental energy analysis of a stand-alone photovoltaic-based water pumping installation. Applied Energy 88(12): 4556–4562.

KANSAKAR, D.R. 2011. Regulating common pool groundwater under fugitive surface water law, limitation in laws and regulations in Nepal. Global Water Partnership, Nepal.

KARAKOÇ,T.H., KARAKOÇ, N., ERBAY, B., ARAS, H., “Enerji Analizi”, T.C. Anadolu Üniversitesi Yayını No: 2486, Açık Öğretim Fakültesi Yayını No: 1457.

KARIMI, H.J., SAIDI, M.H., “Heat Transfer and Energy Analysis of a Pusher Type Reheating Furnace Using Oxygen Enhanced Air for Combustion”, International Journal of Iron and Steel Research, 17 (4): 12-17, 2010.

KAYA, D., 2001. “Eksenel Pompalarda Çark Kanat Konstrüksiyonunun Pompa Genel Verimine Etkisi”, Doktora Tezi, Sakarya Üniversitesi Fen Bilimleri Enstitüsü, Sakarya,

KAYA, D., 2002. “Açık ve Kapalı Eksenel Akışlı Pompa Çarklarının Pompa Performansına Etkisinin Deneysel Etüdü”, Mühendis ve Makina, 508:47-53,

KAYA, D., YAGMUR E.A, YIGIT K.S, KILIC F.C, EREN A.S, CELIK C, 2008. “Energy Efficiency in Pumps”, Energy Conversion and Management, 49 (6): 1662-1673.

KAYA, D., ÖZTÜRK, H.H., 2014. “Sanayide Enerji Yönetimi ve Enerji Verimliliği”, Umuttepe Yayınları, ISBN: 9786055100179.

KHAN F., SINGH, S.N., HUSAIN, M., 2010. Effect of illumination intensity on cell parameters of silicon solar cell Solar Energy Materials Solar Cells, 94, 1473–1476.

KIM, H., PARK, S., KANG, B., KIM, S., TARK, S.J., KIM, D., DAHIWALE, S.S., 2013. Effect of text Turing process involving saw-damage etching on crystalline silicon solar cells Applied Surface Science, 284, 133–137.

KING, D.L., BOYSON, W.E., KRATOCHVIL, J.A., 2004. Photovoltaic Array Performance Model. Department of Energy, United States.

KISHORE A. ve ark. 2014. Solar irrigation pumps: Farmers’ experience and state policy in Rajasthan. Economic and Political Weekly.

KÖKSAL, M.A. 2012. Güneş Enerjisiyle Su Pompalama Üzerine Bir Araştırma. Yüksek Lisans Tezi, Ç.Ü. Fen Bilimleri Enstitüsü Tarım Makinaları Anabilim Dalı, Adana.

KUMAR, B., CHAUHAN, Y.K., SHRIVASTAVA, V. 2013. A comparative study of maximum power point tracking methods for a photovoltaic-based water pumping system. International Journal of Sustainable Energy, DOI: 10.1080/14786451.2013.769990.

LAMMERT, M. D., SCHWARTS, R.J., 1997. The integrated back contact solar cell: A silicon solar cell for use in concentrated sunlight IEEE Trans. Electron Devices, ED- 24, 337–342.

JENSEN, M.E., BURMAN, R.D., ALLEN, R.G. 1990. Evapotranspiration and İrrigation Water Requirements.ASCE Manual and Reports on Engineering Practice No.70.

MALEKI, A., ASKARZADEH, A., 2014. Optimal sizing of a PV/wind/diesel system with battery storage for electrification to an off-grid remote region: A case study of Rafsanjan, Iran. Sustainable Energy Technology Assessments, 7, 147–153.

MEAH, K., ULA, S., BARRETT, S. 2008a. Solar photovoltaic water pumping—opportunities and challenges. Renewable and Sustainable Energy Reviews 12: 1162–1175.

MEAH, K., FLETCHER, S., ULA, S. 2008b. Solar photovoltaic water pumping for remote locations. Renewable and Sustainable Energy Reviews 12(2): 472–487.

MECHAM, B.Q. 1996. Scheduling turfgrass irrigationby various ET equations. Proceeding of the International Conference.(Eds. C.R.Camp, E.J.Sadler, and R.E.Yoder). 3-6 November,San Antonio,TX.245-249.

MILIVOJEVIC, J., NEDIC, M., STOJANOVIC, Z., BOSNJAKOVIC. 1996. Supplement to adapted Blaney-Criddle method for determining evapotranspiration. Proceeding of the International Conference.(Eds. C.R.Camp, E.J.Sadler, and R.E.Yoder). San Antonio, TX.1046-1052.

MOKEDDEM, A., MIDOUN, A., KADRI, D., HIADSI, S., RAJA, I.A., 2011. Performance of a directly coupled PV water pumping system. Energy Conversation Management, 52(10), 3089–3095.

MOLINA, A., FALVEY, M., RONDANELLI, R., 2017. A solar radiation database for Chile. Scientific Reports, 7(1), 1-11.

MONTEITH, J.L. 1965. Evaporation and the environment.In the state and movement of water in living organism.XIXth Symposium Soc.for Exp.Biol.Swansea,Cambridge University Pres.pp.205-234.

MUKHERJI, A. et al. 2017a. Solar powered irrigation pumps in South Asia: Challenges, opportunities and the way forward.

MUKHERJI, A. et al. 2017b. Sustainable financial solutions for the adoption of solar powered irrigation pumps in Nepal’s Terai. ICIMOD Research Highlight, Available at: lib.icimod.org/ record/32565.

NADEL, S., SHEPARD, M., GRENBERG, S., KATZ, G., ALMEIDA, A., 1991. “Energy Efficient Motor Systems”, A Handbook on Technology, Program, and Policy Opportunities. Washington D.C.

NARVARTE, L., LORENZO, E., CAMANO, E., 2000. PV pumping analytical design and characteristics of boreholes. Solar Energy 68 (1), 49–56.

NAVRUZ, T.S., 2008. Arabant yapılı güneş pillerinde verim optimizasyonu. Doktora, Gazi Üniversitesi, Fen Bilimleri Enstitüsü, Ankara, 1-143.

NOTARO J. 2016. California continues to make big strides on solar. The American Prospect.

NDUNGA S. N. et al. 2016. Solar-powered Irrigation: Study of Ingotse Village, Kakamega County, Kenya. CTA Working Paper 16/10.

ÖZCAN, E.C., EROL, S. 2013. Türkiye’de elektrik üretim planlaması için çok amaçlı bir karışık tam sayılı doğrusal programlama modeli. S.Ü. Müh. Bilim ve Tekn. Derg., c.1, s.1, 2013 Selcuk Univ. J. Eng. Sci. Tech., v.1, n.1, 2013 ISSN: 2147-9364.

ÖZKAYA, M.T., KAYNAŞ, N., ÖZKAN, A. 2015. Zeytin Yetiştiriciliği. S ( 192), H asad Yayıncılık, İstanbul, ISBN: 978-975-8377-22-0.

ÖZTÜRK, H.H. 2010. Güneş pili ile çalışan tarımsal sulama sistemleri için tasarım ölçütlerinin belirlenmesi. 4. Güneş Enerjisi Sistemleri Sempozyumu ve Sergisi, Bildiri Kitabı: 58–73, 6-7 Kasım 2009, Mersin.

ÖZTÜRK, H.H., EREN, Ö., ÖZSAVRAN, M., ARSLAN, M. 2011. Güneş enerjisiyle termomekanik dönüşüm ilkesine göre çalışan su pompalama uygulamalarının değerlendirilmesi. 5. Güneş enerjisi Sistemleri Sempozyumu ve Sergisi Bildiriler Kitabı: 277–294, MMO Yayın No: E/2011/562, 6-7 Ekim 2011, Mersin.

ÖZTÜRK, H.H. 2008. Bitkisel Üretimde Enerji Yönetimi. Hasad Yayınları.

ÖZTÜRK, H.H., Kaya, D., 2012. “İkincil Enerji Üretimi Ve Elektrik Motorları”, Ufuktepe Yayınları, Yayın No: 73, ISBN:978-605-5936.

ÖZTÜRK, H.H., 2013. “İklim Bilgisi Ve İklimsel Ölçme Tekniği”, BİRSEN Yayınevi Kod No: Y.0028, ISBN:978-975-511-590-0.

PAGLIETTI L., MACHADO D. 2016. Senegal: Irrigation market brief.

PARAJULI, R., POKHAREL, G.J., ØSTERGAARD, P.A. 2013. A comparison of diesel, biodiesel and solar PV-based water pumping systems in the context of rural Nepal.

PETELA, R. 2003. Exergy of undiluted thermal radiation. Solar Energy, 74(6), 469–488.

PRADHAN P. 2012. Revitalizing irrigation systems for food security: vision and approaches in Nepal irrigation systems. Hydro Nepal.

PILLAI, U., CRUZ, K., 2013. Source of Cost Reduction in Solar Photovoltaics.

PUROHIT, A., SHARMA, A., ARVIND, C., NEHRA, S.P., DHAKA, M.S., 2015. A study on photovoltaic parameters of monocrystalline silicon solar cell with cell temperature. Energy Reports, 1 (2015), 104–109.

RADZIEMSKA, E., 2003. The effect of temperature on the power drop in crystalline silicon solar cells. Renew. Energy, 28, 1–12.

RANA,G., KATERJI,N., MASTRORILLI, M. 1996. Evapotranspiration measurement of crops underwater stres. Proceeding of the International Conference.(Eds. C.R.Camp, E.J.Sadler, and R.E.Yoder). 3-6 November,San Antonio,TX.691-696.

RAZYKOV, T.M., FEREKIDES, C.S., MOREL, D., STEFANAKOS, E., ULLAL, H.S., UPADHYAYA, H.M. 2010. Solar photovoltaic electricity: current status and future prospects. Solar Energy 85, 1580–1608.

RECA, J., TORRENTE, C., LÓPEZ-LUQUE, R., MARTINEZ, J., 2016. Feasibility analysis of a standalone direct pumping photovoltaic system for irrigation in Mediterranean greenhouses. Renewable Energy, 85, 1143–1154.

REHMAN, S., ŞAHİN, A.Z. 2012. Wind-solar pv hybrid power system with battery backup for water pumping in remote localities. International Journal of Green Energy, DOI:10.1080/15435075.2012.729169.

REICH, N.H., SARK, W. G. J. H. M. V., ALSEMA, E.A., LOF, R.W., SCHROPP, R.E.I., SINKE, W.C., TURKENBURG, W.C., 2009. Crystalline silicon cell performance at low light intensity. Solar Energy Materials and Solar Cells, 93, 1471–1481.

ROY, S., SHARMIN, R.S., FERDOUS, T., 2014. Performance analysis of mono-crystalline and poly-crystalline silicon solar cells under different climatic conditions: A comparative study. Dept. of Electrical & Electronic Engineering, BRAC University.

QOAIDER, L., STEINBRECHT, D. 2010. Photovoltaic systems: A cost competitive option to supply energy to off-grid agricultural communities in arid regions. Applied Energy 87(2): 427–435.

SABRY, M., GHITAS, A.E., 2008. Influence of temperature on methods for determining Silicon solar cell series resistance. Journal of Solar Energy Engineering, 129 (2008), 331–335.

SALOUX, E., TEYSSEDOU, A., SORIN, M., 2011. Explicit model of photovoltaic panels to determine voltages and currents at the maximum power point. Solar Energy 85(5): 713–722.

SARAN, A., PRASAD, B., CHANDRIL, S., SINGH, S.P., SAXENA, A.K., PATHAK, M., CHAHAR, N., BHATTACHARYA, S., 2013. Study of temperature on performance of c-Si homo junction and a-Si/c-Si heterojunction solar cells. International Journal of Renewable Energy Research, 3 (3), 707–710.

SASS, J. HAHN, A., 2020. Solar Powered Irrigation Systems (SPIS) Technology, Economy, Impacts. Deutsche Gesellschaft für Internationale Zusammenarbeit (GIZ) GmbH, Bonn, August 2020.

SHAH T. 2014. Groundwater Governance and Irrigated Agriculture, Global Water Partnership Technical Committee. TEC background paper No.19.

SHARMA, S.K., IM, H., KIM, D.Y., MEHRA, R.M., 2015. Review on Se-and S-doped hydrogenated amorphous silicon films. Indian Journal of Pure&Applied Physics, 52, 293–313.

SHERWANI, A.F., USMANI, J.A., VARUN. 2011. Life cycle assessment of solar PV based electricity generation systems: A review. Renewable and Sustainable Energy Reviews, 14, 540–544.

SHIMY, M.E. 2013. Sizing optimisation of stand-alone photovoltaic generators for irrigation water pumping systems. International Journal of Sustainable Energy 32(5): 333–350.

SHOEB, M.A., SHAFIULLAH, G., 2018. Renewable Energy Integrated Islanded Microgrid for Sustainable Irrigation A-Bangladesh Perspective. Energies, 11(5), 1283.

SMITH, M., ALLEN, R., PEREIRA, L., 1996. Revised FAO methodology for crop water requirements. Paper presented to ASAE International Conference on Evapotranspiration and Irrigation, San Antonio, USA.

SINGH, P., RAVINDRA, N. M., 2012. Temperature dependence of solar cell performance-ananalysis. Solar Energy Materials and Solar Cells, 101, 36–45.

SKOPLAKI, E., PALYVOS J.A., 2009. On the temperature dependence of photovoltaic module electrical performance: A review of efficiency/powercorrelations. Solar Energy, 83, 614–624.

SOLAR ENERGY FOUNDATION. 2017. Solar-powered irrigation: Food security in Kenya's drought areas.

SOLANKI, C. S., 2013. Solar photovoltaics: Fundamentals technologies and applications. PHI Learning Private Limited, New Delhi.

SULTAN L. New solar pumping technology with efficient irrigation advisory system.

SUNPOWER, 2016. Powering a Brighter Tomorrow, Our progress toward a circular economy in 2015-2016.

ŞENOL, R., 2012. An analysis of solar energy and irrigation systems in Turkey. Energy Policy 47: 478–486.

TEWARI N.P. 2012. Solar Irrigation Pumps, The Rajasthan Experience. IWMI-TATA Water Policy Program.

TEZER, E. 1978. Sulamada Pompaj Tesisleri. T.C. Köy Hizmetleri Genel Müd.

THE EARTH INSTITUTE. 2015. Columbia University, Sustainable Engineering Lab. qsel. columbia.edu/acacia-irrigation-project/

TOKLU, E., KILIÇASLAN, İ., YIĞIT, K.S., 1996. “Pompa Dizaynında Optimum Karakteristiklerin Seçimi”, 2. Pompa Kongresi, İstanbul, Türkiye, Nisan 3-5.

TOPAK, A. 2017. Güç ve Güç Katsayısının Düzeltilmesi. 157-167.

TSUNO, Y., HISHIKAWA, Y., KUROKAWA, K., 2005. Temperature and irradiance dependence of the I–V curves of various kinds of solar cells. 15th International Photovoltaic Science&Engineering Conference, PVSEC-15, Shanghai, 422–423.

TÜİK, 2015. Türkiye İstatistik Kurumu, Ankara, http://www.tuik.gov.tr

VELASCO-MUÑOZ, J.F., AZNAR-SÁNCHEZ, J.A., BELMONTE-UREÑA, L.J., ROMÁN-SÁNCHEZ, I.M., 2018. Sustainable Water Use in Agriculture: A Review of Worldwide Research. Sustainability, 10(4): 1084.

VICK, B.D., NEAL, B.A., 2012. Analysis o f off-grid hybrid wind turbine/solar PV water pumping systems. Solar Energy, 86(5), 1197–1207.

VICK, B.D., CLARK, R. N. 2011. Experimental investigation of solar powered diaphragm and helical pumps. Solar Energy 85(5): 945–954.

WADE, N.S., SHORT, T.D. 2012. Optimization of a linear actuator for use in a solar powered water pump. Solar Energy 86(3): 867–876.

YAMAGUCHI, M., TAKAMOTO, T., ARAK, K., EKINS-DAUKES, N. 2005. Multijunction III–V solar cells: Current status and future potential, Solar Energy, 79 (1), 78–85.

YEGM, Yenilenebilir Enerji Kaynakları Genel Müdürlüğü, Ankara.

YEŞİLATA, B., FIRATOGLU, Z.A. 2008. Effect of solar radiation correlations on system sizing: PV pumping case. Renewable Energy 33: 155–161.

YİĞİT, K.S., ÇALLI İ., SÖZBİR N., SARAÇ H.İ., BRAWN D.M., 1995. “Experimental Investigation of Optimum Centrifugal Pumps Speeds”, Second International Conference on Pumps and Fans,Vol – II, Beijing Chine, Oct.

YIĞIT, K.S., KAYA D., YAĞMUR A., EREN A.S., 2009. “Sanayi Tipi Santrifüj Pompalarda Enerji Verimliliği”, Tesisat Dergisi, 164: 96-102,

YIĞIT, K.S., YAĞMUR A., KAYA D., EREN A.S., EREN A.S.,ÇELIK C., 2009. “Yüksek Kapasiteli Su Pompalarında Enerji Verimliliği”, Tesisat Dergisi, 157: 104-110.

YIĞIT, KS., KAYA D., EREN A.S., YAĞMUR A., ÇELIK C., 2007. “Buhar Türbin Tahrikli Pompalarda Enerji Verimliliği” , Enerji Verimliliği Kongresi Bildiriler Kitabı, Sayfa 223-231, 1-2 Haziran / İzmit-Kocaeli.

ZHI, YP, 2006. Determining Economic Pipe Diameter of Irrigation and Drainage Pumping Station With Kinetic Energy Economy Method.

ZULEHNER, W. 1989. Status and future of silicon crystal growth. Materials Science and Engineering B, 4:1-10.

Yayınlanan

16 Eylül 2024

Lisans

Lisans

Bu İnternet Sitesi içeriğinde yer alan tüm eserler (yazı, resim, görüntü, fotoğraf, video, müzik vb.) Akademisyen Kitabevine ait olup, 5846 sayılı Fikir ve Sanat Eserleri Kanunu ve 5237 sayılı Türk Ceca Kanunu kapsamında korunmaktadır. Bu hakları ihlal eden kişiler, 5846 sayılı Fikir ve Sanat eserleri Kanunu ve 5237 sayılı Türk Ceza Kanununda yer alan hukuki ve cezai yaptırımlara tabi olurlar. Yayınevi ilgili yasal yollara başvurma hakkına sahiptir.

Mevcut yayın biçimiyle ilgili ayrıntılar: PDF

PDF

ISBN-13 (15)

978-625-375-005-3

Publication date (01)

2025

Fiziksel Boyutlar