Design and application of electrostatic spraying system

RU Yu, ZHOU Hongping, JIA Zhicheng, WU Xiaowei, FAN Qingni

Journal of Nanjing Forestry University (Natural Sciences Edition) ›› 2011, Vol. 35 ›› Issue (01) : 91-94.

PDF(1472408 KB)
PDF(1472408 KB)
Journal of Nanjing Forestry University (Natural Sciences Edition) ›› 2011, Vol. 35 ›› Issue (01) : 91-94. DOI: 10.3969/j.jssn.1000-2006.2011.01.021

Design and application of electrostatic spraying system

  • RU Yu, ZHOU Hongping, JIA Zhicheng, WU Xiaowei, FAN Qingni
Author information +
History +

Abstract

An aerial electrostatic spaying system was designed for Y5B aircraft including aerial nozzles, high voltage DC power supply and inlay cylinder acicular induction charging device which can makes spraying droplets more uniformly and droplets charging more effectively and fully. Some experimental studies about aerial electrostatic spraying set were introduced and conducted on the electrostatic spraying system assembled in the Y5B aircraft. These experiments included the effective spraying breadth, droplets deposition characteristics and droplets drift and so on. The results showed that the electrostatic spraying could make coverage rate of target increase 14 droplets/cm2 compared with the non-electrostatic spraying, the effective spray breadth of Y5B aircraft reached 42 m, and droplets drift decreased obviously. Electrostatic spraying could produce uniform and fine droplets with good droplet adhesion and distribution, higher depositing efficiency, low environmental contamination, low pesticide application rate, and aerial spray can improve efficiency for prevention and cure pests in agriculture and forestry. Combining electrostatic spraying with aerial spraying technology will take an important role for preventing and curing pests in agriculture and forestry.

Cite this article

Download Citations
RU Yu, ZHOU Hongping, JIA Zhicheng, WU Xiaowei, FAN Qingni. Design and application of electrostatic spraying system[J]. Journal of Nanjing Forestry University (Natural Sciences Edition). 2011, 35(01): 91-94 https://doi.org/10.3969/j.jssn.1000-2006.2011.01.021

References

[1]Law S E, Cooper S C, Oetting R D. Advances in electrostatic crop spraying of conductive pesticides [J]. Transactions of ASAE, 1992,11(4): 1062-1067.
[2]Cramariuc R, Nisiparu L, Tanase G, et al. Test for the electro static crop spraying as a method of treatment with vctra low volume, the modern problems of electrostatics with applications in environment protection[J].NATO ASI Seriea, 1998,118:33-38,379-392.
[3]Jahannama M R. Examination of electro statically charged spray for agricultural spraying applications[J]. ILASSEurope, 1999, 7:120-127.
[4]Giles D K,Law S E Y Dai. Enhancement of spray electrodepositon by active precharging of a dielectricboundary[J]. British Inst of Physics Ser, 1991,118:33-38
[5]Carlton J B. Technique to reduce chemical usage and concomitant Drift From Aerial Sprays. United States, 5975425[P].1999.
[6]Clint HoffmannW,Andrew J Hewitt, Jane A S Barber, et al. Field swath and techniques drift analysis[EB/OL].
[2010-04-20].http//aprnru.usda.gov/Aerial/2003ASAE/AA03007PP.pdf.
[7]Kirk I W, Hoffmann W C, Carlton J B. Aerial electrostatic sprary system performance[J]. Transactions of American Society of Agricultural Engineers, 2001, 44(5): 1089-1092.
[8]Law S E, Bowen H D. Dual particlespecie concept for improved electrostatic deposition through spacecharge field enhancement[J]. IEEE, 1985,IA21(4): 694-698.
[9]何雄奎,严苛荣,储金宇. 果园自动对靶静电喷雾机设计与试验研究[J].农业工程学报,2003,19(6):78-80.
[10]Carlton J B, Bouse L F, Kirk I W. Electrostatic charging of aerial spray over cotton[J]. Trans ASAE,1995, 38(6):1641-1645.
[11]栾华,张青,王稳祥. Z03K000B静电频谱喷洒系统加改装与飞行试验[J].新疆农垦科技,2006(5):46-47.
[12]梁成杰,赵玲,黄金义,等. 航空喷洒设备及监测技术的研究:喷洒设备性能测试[J].林业科学研究, 1998,11(6): 607-611.
[13]伍远平,周继亮,梅爱华,等. 飞机超低量喷洒长效壁垒防治黄脊竹蝗试验[J]. 中国森林病虫, 2005,3(2):21-23.
[14]梁成杰,赵玲,黄金义,等. 航空喷洒设备及监测技术的研究:喷洒设备防治松毛虫[J].林业科学研究, 1999,12(1): 74-78.
[15]王勇.美国农用航空现状与启示[J]. 江苏农机化, 2003, 98(5): 17-18.
[16]黄向东,方志蓉. 超轻型直升飞机与固定翼飞机在森林病虫害防治应用中的比较研究[J].长沙电力学院学报:自然科学版,1999(3): 279-281.
[17]Law S E, Cooper S C, Law W B. Bipolar spray charging for enhanced deposition onto nonconductive and electrically isolated targets[G]//10th International Conference ELECTROSTATICS99.Cambridge:University Conf on Electrostatics, British Inst of Physics,1999.
[18]RobertE Wolf. Equipment to Reduce Spray Drift[D]. Manhattan:Kansas State University, 2000.
[19]Bradley K Fritz, Role of atmospheric stability in drift and deposition of aerially applied sprayspreliminary results[J]. Transactions of ASAE, 2004,58(9): 742-755.
[20]Thistle H W. Meteorological concepts in the drift of pesticides[C]//Proceedings of the International Conference on Pesticide Application for Drift Management. Hawaii: Waikoloa, 2004.
PDF(1472408 KB)

Accesses

Citation

Detail

Sections
Recommended
The full text is translated into English by AI, aiming to facilitate reading and comprehension. The core content is subject to the explanation in Chinese.

/