Original Article

Estimation of Broccoli Crop Water Requirement under Variable Microclimatic Conditions of Different Protected Structures and Open Field

Year: 2026 | Month: June | Volume 19 | Issue 2

References (13)

1.Agung Putra, P. and Yuliando, H. 2015. Soilless culture system to support water use efficiency and product quality: A review. Agric. Agric. Sci. Procedia., 3: 283–288.

View at Google Scholar

2.Allen, R.G., Pereira, L.S., Raes, D. and Smith, M. 1998. Crop Evapotranspiration – Guidelines for Computing Crop Water Requirements. FAO Irrigation and Drainage Paper 56. FAO, Rome, Italy.

View at Google Scholar

3.Durak, E. and Y?ld?r?m, M. 2017. Yield and quality compounds of broccoli (Brassica oleracea L. cv. Beaumont) as affected by different irrigation levels. ÇOMÜ Zir. Fak. Derg., 5(1): 13–20.

View at Google Scholar

4.Francescangeli, N., Sangiacomo, M.A. and Martí, H.R. 2007. Vegetative and reproductive plasticity of broccoli at three levels of incident photosynthetically active radiation. Span. J. Agric. Res., 5(3): 389–401.

View at Google Scholar

5.Hashem, F.A., Medany, M.A., Abd El-Moniem, E.M. and Abdallah, M.M.F. 2011. Influence of green-house cover on potential evapotranspiration and cucumber water requirements. Ann. Agric. Sci., 56: 49–55.

View at Google Scholar

6.Klar, A.E. and Fontes, E.W.S. 2003. Water use by broccoli plants (Brassica oleracea F, var. Italica). Irriga., 8(1): 37–43.

View at Google Scholar

7.Nooprom, K., Santipracha, Q. and Te-Chato, S. 2013. Effect of shading and variety on the growth and yield of broccoli during the dry season in Southern Thailand. Int. J. Plant Anim. Environ. Sci., 3(2): 111–115

View at Google Scholar

8.O’Connor, N. and Mehta, K. 2016. Modes of greenhouse water savings. Procedia Eng., 159: 259–266.

View at Google Scholar

9.Santosh, D.T., Tiwari, K.N. and Singh, V.K. 2017. Influence of different protected cultivation structures on water requirements of winter vegetables. nt. J. Agric. Environ. Biotechnol., 10(1): 93–103.

View at Google Scholar

10.Satasiya, R.M., Sojitra, M.A., Prajapati, G.V. and Chauhan, P.M. 2024. Performance of offseason okra under protected structures in semi-arid region. Int. J. Environ. Clim. Change., 14(2): 933–941.

View at Google Scholar

11.Singh, V.K., Tiwari, K.N. and Santosh, D.T. 2016. Estimation of crop coefficient and water requirement of Dutch roses (Rosa hybrida) under greenhouse and open field conditions. Irrig. Drain. Syst. Eng., 5(3): 169.

View at Google Scholar

12.Wang, S., Boulard, T. and Haxaire, R. 1999. Air speed profiles in a naturally ventilated greenhouse with a tomato crop. Agric. For. Meteorol., 96(4): 181–188.

View at Google Scholar

13.Zhang, Z., Liu, S., Liu, S. and Huang, Z. 2010. Estimation of cucumber evapotranspiration in solar greenhouse in Northeast China. Agric. Sci. China, 9(4): 512–518.

View at Google Scholar

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