References

  1. S.R. Evett, T.A. Howell, A.D. Schneider, D.R. Upchurch, D.F. Wanjura, Automatic Drip Irrigation of Corn and Soybean, Proceedings of the 4th Decennial Symposium National Irrigation Symposium, Phoenix, Arizona, 2000, pp. 401–408.
  2. J. Li, Y. Meng, Y. Liu, Hydraulic performance of differential pressure tanks for fertigation, Trans. ASABE, 49 (2006) 1815–1822.
  3. G.C. Karshner, Automatic Fertilizer, P.a.t. Office, Washington, U.S., 1932.
  4. F. Thalasso, H. Naveau, E.-H. Nyns, Design and performance of a bioreactor equipped with a Venturi injector for high gas transfer rates, Chem. Eng. J. Biochem. Eng. J., 57 (1995) B1–B5.
  5. J.S. Li, R.E. Yoder, L.O. Odhiambo, J. Zhang, Simulation of nitrate distribution under drip irrigation using artificial neural networks, Irrig. Sci., 23 (2004) 29–37.
  6. F. Yoldas, S. Ceylan, B. Yagmur, N. Mordogan, Effects of nitrogen fertilizer on yield quality and nutrient content in broccoli, J. Plant Nutr., 31 (2008) 1333–1343.
  7. S.T. Zodape, V.J. Kawarkhe, J.S. Patolia, A.D. Warade, Effect of liquid seaweed fertilizer on yield and quality of okra (Abelmoschus esculentus L.), J. Sci. Ind. Res., 67 (2008) 1115–1117.
  8. R. Tognetti, M. Palladino, A. Minnocci, S. Delfine, A. Alvino, The response of sugar beet to drip and low-pressure sprinkler irrigation in southern Italy, Agric. Water Manage., 60 (2003) 135–155.
  9. L. Woltering, D. Pasternak, J. Ndjeunga, The African market garden: the development of a low-pressure drip irrigation system for smallholders in the sudano sahel, Irrig. Drain., 60 (2011) 613–621.
  10. A. Hamdy, R. Ragab, E. Scarascia-Mugnozza, Coping with water scarcity: water saving and increasing water productivity, Irrig. Drain., 52 (2003) 3–20.
  11. I. Papadopoulos, Micro-irrigation systems and fertigation, L.S. Pereira, R.A. Feddes, J.R. Gilley, B. Lesaffre, Eds., Sustainability of Irrigated Agriculture, Springer, Dordrecht, 1996, pp. 309–322.
  12. I.E.L. Neto, R.D. Porto, Performance of low-cost ejectors, J. Irrig. Drain. Eng., 130 (2004) 122–128.
  13. Z. Yuan, C.Y. Choi, P.M. Waller, P. Colaizzi, Effects of liquid temperature and viscosity on Venturi injectors, Trans. ASAE, 43 (2000) 1441–1447.
  14. J.D. Anderson, J. Wendt, Computational Fluid Dynamics, McGraw-Hill, New York, 1995.
  15. B. Blocken, P. Moonen, T. Stathopoulos, J. Carmeliet, Numerical study on the existence of the Venturi effect in passages between perpendicular buildings, J. Eng. Mech., 134 (2008) 1021–1028.
  16. D.A. Ji, M.L. Zhang, T.G. Xu, K.Y. Wang, P.C. Li, F. Ju, Experimental and numerical studies of the jet tube based on venturi effect, Vacuum, 111 (2015) 25–31.
  17. Z. Qiu, Simulation Study of Venturi Fertilizer Injector Based on Fluent, In: Agricultural Bio-environment and Energy Engineering, Southwest University, Chongqing, 2012 (in Chinese).
  18. Y. Sun, Effects of Venturi Structural Parameters on the Absorption Fertilizer Performance, In: Agricultural Soil and Water Engineering, Northwest A&F University, Yangling, 2010 (in Chinese).
  19. H. Yan, X. Chu, Numerical Simulation for Influence of Throat Diameter on Venturi Injector Performance, J. Drain. Irrig. Mach. Eng., 29 (2011) 359–363 (in Chinese).
  20. Y.J. Zhang, K.P. Liu, J.P. Liao, Y.D. Zhang, C.L. Wu, Y.C. Hu, Parameter Optimization of Multi-Stage Coilgun using Orthogonal Test Approach, 16th International Symposium on Electromagnetic Launch Technology, IEEE, Beijing, China, 2012.
  21. L.J. Ji, Y.F. Si, H.F. Liu, X.L. Song, W. Zhu, A.P. Zhu, Application of orthogonal experimental design in synthesis of mesoporous bioactive glass, Microporous Mesoporous Mater., 184 (2014) 122–126.
  22. X. Wu, D.Y.C. Leung, Optimization of biodiesel production from camelina oil using orthogonal experiment, Appl. Energy, 88 (2011) 3615–3624.