Assessing climatic water balance and growing period length for crop planning under rainfed condition
DOI:
https://doi.org/10.53550/Keywords:
Crop planning, Length of growing period, Probability distribution, Rainfall, Water balanceAbstract
An agroclimatic study was conducted at Pusa, Samastipur region of Bihar using database of 45 years (1968-2012) to assess water balance and length of growing period for efficient crop planning under rainfed condition. The average annual rainfall computed was 1226.7 ± 388.9 mm. More than 30mmrainfall week was found to occur during 24 Standard Meteorological Weeks (SMW) to 39 SMW and more than 50 mm rainfall week was available during 25-39 SMW, except 38 SMW. Total water surplus estimated was 487.3 mm during 24 to 43 SMW, as against the total annual water deficit of 75.4 mm during the corresponding period. Under average rainfall condition, actual evapotranspiration (AET) was more than 0.25 of potential evapotranspiration (PET) during the period from 18 to 50 SMW, whereas it was more than 50% of PET during 24 to 44 SMW. Chisquare test showed that Weibull distribution was the best fit distribution for annual and monsoon rainfall, whereas for non-monsoon season, Cauchy distribution was found to be appropriate. Out of annual average rainfall of 1227 mm, the surplus and effective rainfall were 39.7 and 60.3%, respectively. The average effective rainfall was 739.4 ± 89 mm. The effective rainfall, which was calculated by subtracting surplus water from rainfall, was equal to rainfall during 1 to 23 SMW and 44 to 52 SMW and lesser than rainfall during 24 to 43 SMW, which coincided with the surplus period. Year-wise lengths of growing periods (LGP) were worked out based on moisture adequacy index (I ). Mean LGP based on I , was 217± 46 days, with 60% of the total years recording LGP ≥ 200 days. Crop planning based on LGP has been suggested for the region for sustainable crop production under rainfed condition.
References
Bannerjee, Tapati, Dutta, D., Sarkar, Deepak and Das, Debabrata. 2010. Soil moisture based crop planning for farmers' land- A case study for Silai sub water shed ofWest Bengal. 38(2): Ind. J. Soil Cons., 89-93.
Chang, J.H. 1968. Climate and Agriculture: An Ecological Survey. Aldine Publishing Company, 320 West Adams Street, Chicago, Illinois 60606, U.S.A., 296 p.
Dey, S. 2008. An agroclimatic assessment of water availability for crop planning in the plains of West Bengal. Ph.D. thesis. Department of Agril. Meteorology & Physics, BCKV, Mohanpur.
Gupta, A., Khan, S.A. and Saha, A. 2010. Characterization of agricultural climate for crop planning under rainfed condition in laterite region of West Bengal. In: Agrometeorological Services for Farmers (Ed. Vyas Pandey), Anand Agricultural University, Anand, pp. 90-97.
Gupta, S.C. and Larson, W.E. 1979. Estimating water retention characteristics from particle size distribution, organic matter percent and bulk density. Water Resour. Res., 15(6): 1633-1635.
Khan, S.A. and Saha, G. 1993. Agrometeorological study for crop planning in a drought prone district in West Bengal. Environ. Ecolo 11(2): 446-449.
Kovilavani, S., Geethalaksmi, V., Arthirani, B. and Natarajan, S.K. 2012. Variability of length of growing period in Coimbatore district. J. Agrometeorol., 14 (Special Issue): 368-371.
Krishnan, A. 1983. Use of water balance approach for appraisal of double cropping and estimation of surplus water for harvesting in semi-arid region. Proc. Symp. “Water Balanance and National Development” 19-21 December, 1983, Andhra University, Waltair, India, pp.143-148.
Krishnan, A., Ramakrishna, Y.K. and Sastry, A.S.R.A.S. (1980). System analysis for crop planning in Jodhpur district. Indian J. Agric. Sci, 50: 412-21.
Kumar, Ambrish, Pal, R. and Sharma, H.C. 2007. Probability analysis of mansoon rainfall data of Saharanpur for agricultural planning. Ind. J. Soil Cons 35(2): 122-124.
Mishra, P.K., Khare, D., Mondal, A., Kundu, S. and Shukla, R. 2013. Statistical and probability analysis of rainfall for crop planning in a canal command. Agril Sustainable Dev 1: 45-52.
Saxton, K.E., Rawls, W.J. Romberger, J.S. and Papendick, R.I. 1986. Estimating generalized soil water characteristics from texture. Soil Sci. Soc. Am. J., 50(4):1031 1036.
Thornthwaite, C.W. and Mather, J.R. 1955. The water balance: Publication in Climatology, Drexel Institute of Technology, New Jersey, 8: 1-104.
Verma, I.J., Koppar, A.L., Balasubramanian, R., Jadhav, V.N. and Erande, R.S. 2012. Monthly climatic water balance at selected locations in India. Mausam, 63(1): 129-136.



