Comparative experiments and effectiveness evaluation on vertical blowing fans (VBF) for frost protection
Abstract
Keywords: frost protection, thermal inversion, weather modification, wind machines, vertical blowing fans (VBF), temperature
DOI: 10.3965/j.ijabe.20150805.1419
Citation: Hu Y G, Wu W Y, De Melo-Abreu J P, Shapland T M, Zhang H, Snyder R L. Comparative experiments and effectiveness evaluation on vertical blowing fans (VBF) for frost protection. Int J Agric & Biol Eng, 2015; 8(5): 36-42.
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Atkinson C J, Brennan R M, Jones, H. G. Declining chilling and its impact on temperate perennial crops. Environmental and Experimental Botany, 2013; 91: 48–62. doi: 10.1016/ j.envexpbot.2013.02.004.
Matzneller P, Götz K P, Chmielewski F M. Spring frost vulnerability of sweet cherries under controlled conditions. International Journal of Biometeorology, 2015; 1–8. doi: 10.1007/s00484-015-1010-1.
Augspurger C K. Spring 2007 warmth and frost: phenology, damage and refoliation in a temperate deciduous forest. Functional Ecology, 2009; 23(6): 1031–1039. doi: 10.1111/ j.1365-2435.2009.01587.x.
Stigter K. Applied Agrometeorology. Heidelberg: Springer, 2010.
Inouye D W. Effects of climate change on phenology, frost damage, and floral abundance of montane wildflowers. Ecology, 2008; 89(2): 353–362. doi: 10.1890/06-2128.1.
Gu L, Hanson P J, Mac Post W. The 2007 eastern US spring freeze: Increased cold damage in a warming world. Bio Science, 2008; 58(3): 253–262. doi: 10.1641/B580311.
Issa R J. Numerical heat transfer model for frost protection of citrus fruits by water from a spraying system. Thermal Science, 2012; 16(1): 31–42. doi: 10.2298/TSCI110331084I.
Ghaemi A A, Rafiee M R, Sepaskhah A R. Tree-temperature monitoring for frost protection of orchards in semi-arid regions using sprinkler irrigation. Agricultural Sciences in China, 2009; 8(1): 98–107. doi: 10.1016/S1671-2927 (09)60014-6.
Ribeiro A C, De Melo-Abreu J P, Snyder R L. Apple orchard frost protection with wind machine operation. Agricultural Forest Meteorology, 2006; 141(2-4): 71–81. doi: 10.1016/ j.agrformet.2006.08.019.
Snyder R L, De Melo-Abreu J P. Frost protection: fundamentals, practice, and economics-Volume I. Rome: Food and Agriculture Organization of the United Nations, 2005.
Hu Y G, Li P P, Dai Q L, Zhang X L, Tanaka K H, Cui G L. System design and experiment on elevated wind machine for tea frost protection. Transactions of the CSAM, 2007; 20(12): 97–99, 124. doi: 10.3969/j.issn.1000-1298.2007. 12.024. (in Chinese with English abstract)
Wu W Y, Hu Y G, Lu H Y, Asante E A, Liu S Z. Airfoil optimization design for frost protection wind machines using Profili software. International Agricultural Engineering Journal, 2015; 24(3): 43–51.
Takuya A K, Shinsuke A K, Daisuke M Y, Osamu S K. Development of the 3-headed type anti-frost fan. In: Proceedings of the 3rd International Conference on O-CHA (Tea) Culture and Science, Shizuoka, Japan, 2007. pp. 202–203.
Guarga R, Mastrangelo P, Scaglione G, Supino E. Evaluation of the SIS, a new frost protection method applied in a citrus orchard. In: Proceedings of the 9th Congress of the International Society of Citriculture, Orlando, USA, 2000. pp. 583.
Augsburger H K M. Frost control in temperate climates through dissipation of cold air. Aspects of Applied Biology, 2000; 61: 201–204.
Yazdanpanah H, Stigter C J. Selective inverted sink efficiency for spring frost protection in almond orchards northwest of Isfahan. Theoretical and Applied Climatology, 2011; 105(1): 27–35. doi: 10.1007/s00704-010-0367-7.
Arias M, Arbiza H, Mendina M. Two experiences of frost damage control in vineyards with selective extraction of coldest air; Alto Valley, Argentina and Napa Valley, California, USA. Acta Horticulturae (ISHS), 2010; 872: 407–414. doi: 10.17660/ActaHortic.2010.872.58.
Vardar A, Taşkın O. An experience of peach orchard frost protection with upward-blowing wind machines in the east of Bursa, Turkey. Journal of Agricultural Faculty of Uludag University, 2014; 28(1): 19–27.
Battany M C. Vineyard frost protection with upward-blowing wind machines. Agricultural and Forest Meteorology, 2012; 157: 39–48. doi: 10.1016/j.agrformet. 2012.01.009.
Zhang H. Design and simulation of suction-exhaust system for tea frost protection. Master’s dissertation. Zhenjiang: Jiangsu University, 2012. (in Chinese)
Wu W Y, Hu Y G, Zhang H, Sun H W. An improved design on suction-exhaust duct for frost protection in tea fields. Paper number: 141907096rev, In: Proceedings of the ASABE Annual Meeting, Montreal, Quebec Canada, 2014. pp.3548–3555. doi: 10.13031/aim.20141907096.
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