Have a personal or library account? Click to login
Mathematical Models and Computer Simulations of Aerial Spraying and Droplets Distribution in a Target Site Cover

Mathematical Models and Computer Simulations of Aerial Spraying and Droplets Distribution in a Target Site

Open Access
|Nov 2019

References

  1. [1] Ashley H., Landahl M.T. 1965. Aerodynamics of Wing and Bodies. Reading, Addison-Wesley Publishing Co.
  2. [2] Atias M., Weihs D., 1984. Motion of Aircraft Trailing Vortices Near the Ground. Journal of Aircraft. 21 (10): p. 783-786.10.2514/3.45042
  3. [3] Bache D.H., Sayer W.J.D., 1975. Transport of Aerial Spray. A Model of Aerial Dispersion. Agricultural Meteorology V. (15): p. 257-271.10.1016/0002-1571(75)90009-6
  4. [4] Beyer E.M., 1991. Crop Protection Meeting the Challenge. Proceeding Brighton Crop Protection Conference, Weeds. 18-21 November, Brighton: p. 3-22.
  5. [5] Bilianin A.J., Teske M.E., Barry J.W., Ekblad R.B., 1989. The Aircraft Spray Dispersion Model. Code Development and Experimental Validation. AGDISP. ASAE, V.32 (1): p. 327-33410.13031/2013.31005
  6. [6] Boothroyd R.G., 1971. Flowing Gas-Solid Suspensions. London, Chapman and Hall.
  7. [7] Bragg M.B., 1986. A Numerical Simulation of the Dispersal of Liquids from Aircraft. Transaction of the ASAE,V.29: p.10-15.10.13031/2013.30091
  8. [8] Csanady G.T., 1973. Turbulent Diffusion in the Environment. D. Reidel Publishing Company. Dordrecht-Boston.10.1007/978-94-010-2527-0
  9. [9] Derevianko V.S., 1974. Vlijanie aerodynamiczeskich vozmuscenii na procesy aviacionnogo opylivanija i opryskivanija. Transport, Moskwa.
  10. [10] Elliot J.G., Wilson B.J., (Editors). 1983. The Influence of Weather on the Efficiency and Safety of Pesticide Application. Occ. Publ. No.3 BCPC. Rand D. Council.
  11. [11] ESDU No. 72026., 1972. Characteristics of the Wind Speed in the Lower of the Atmosphere Near the Ground: Strong Winds (Neutral Atmosphere). London.
  12. [12] Harvey J.K., Perry F.J., 1971. Flow Field Produced by Trailing Vortices in the Vicinity of Ground. AIAA Journal, 9(8): p. 1659-1660.10.2514/3.6415
  13. [13] Leonard A., 1980. Vortex Methods for Slow Simulation. Journal of Computational Physics. 37: p. 289-335.10.1016/0021-9991(80)90040-6
  14. [14] Kamiński S., 1970. Analiza parametrów charakteryzujących rozpylanie ciekłych środków ochrony roślin. Sprawozdanie 4.31.15. Instytut Lotnictwa, Warszawa.
  15. [15] Kaul P., Meyer E., Gebauer S., 1995. Direkte abtrift von Pflanzenschutzmitteln-Flugzeug Nachrichtenbl. Deut. Pflanzenschutzd. 47(2): p. 36-44.
  16. [16] Miranda L.R., Elliot R.D., Baker W.M., 1977. A Generalized Vortex Lattice Method for Subsonic and Supersonic Flow Applications. NASA CR 2865.
  17. [17] Moore D.W., 1974. A Numerical Study of the Roll-up of a Finite Vortex Sheet. Journal of Fluid Mechanics 63(2): p. 225-235.10.1017/S002211207400111X
  18. [18] Pietruszka J., Rowiński R.S., 2004. Computer Simulation of Aerial Spraying. Annual Review of Agricultural Engineering. 3(1): p.125-140.
  19. [19] Ranz W.E., Marschall W.R., 1952. Evaporation from Drops. Chemical Engineering Progress. 48(3): 141-146, 48(4): p.173-180.
  20. [20] Reed W.H., 1954. An Analytical Study of the Effectof Airplane Wake on the Lateral Dispersion of Aerial Sprays. NACA Report 1196.
  21. [21] Rowiński R.S., 1993. Problems of Spray Drift in Plant Protection Using Aviation Techniques. Acta Acad. Agricult. Techn. Olst., Aed et 16: p. 171-195.
  22. [22] Rowiński R.S., 2009. Zabiegi lotnicze w ochronie lasu. (praca pod red. Prof. B. Głowackiej). Wyd. Centrum Informacyjne Lasów Państwowych. Warszawa: p. 9-48.
  23. [23] Rowiński R.S., Ferenc M., 2000. Some Problems Concerned with the Theory of Drift. Annual Review of Agricultural Engineering. 2(1): p. 148-156.
  24. [24] Rowiński R.S., Wodecka C., Jumrych M., 1985. Metodyka badań Rolniczych Statków Powietrznych. Wydawnictwo. ART Olsztyn. Olsztyn.
  25. [25] Seredyn T., Rowiński R., 2014. Experimental Investigations of a drifting Cloud of Droplets Dispersed from Aircrafts. Archive of Mechanical Engineering V. LXI. Nr. 3. p. 393-407.10.2478/meceng-2014-0022
  26. [26] Seredyn T. 2017. Weryfikacja formuł matematycznych opisujących proces ruchu kropel rozprzestrzenianych ze statku powietrznego. Wyd. Instytut Lotnictwa. Warszawa (Rozprawa doktorska).
  27. [27] Soo S.L., 1971. Gidrodinamika mnogofaznych system. Izdatielstwo Mir. Moskawa. (Russian translation).
  28. [28] Slade D.H., 1966. Summary Measurements of Dispersion from Quasi Instantaneous Sources. Nuclear Safety 7(2).
  29. [29] Stenke W.E., Yates W.E., 1988. Modifying Gaussian Models to Obtain Improved Drift Prediction. Agricultural Engineering Department, University of California, Davis.
  30. [30] Teske M.E, Thistle H.W., Londergan R.J. 2011. Modification of Droplets Evaporation in the Symulation of Fine Droplet Motion using AGDISP. Tran. of ASAE 54(2) p. 417-421.10.13031/2013.36444
  31. [31] Teske M.E., Thistle H.W., Schou W.C., Miller P.C.H., Strager J.M., Richardson B., Butler E.M.C., Barry J.W., Twardus D.B., Thompson D.G., 2011. A Review of Computer Models for pesticide Deposition Prediction. Trans. ASAE 54(3): p. 789-801.10.13031/2013.37094
  32. [32] Trayford R.S., Welch L.W., 1977. Aerial Spraying.: A Simulation of Factors Influencing the Distributionand Recovery of Liquid Droplets. Journal of Agricultural Engineering Research, Vol. 22: p. 183-196.10.1016/0021-8634(77)90062-2
  33. [33] Wickens R.H., 1977. Calculation of Wake Vortex Trajectories for Low Flying Spraying 2 Aircraft. National Aero Report LTR-LA-215 Nat. Res. Council. Canada.
Language: English
Page range: 24 - 42
Published on: Nov 8, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Robert S. Rowiński, published by ŁUKASIEWICZ RESEARCH NETWORK – INSTITUTE OF AVIATION
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.