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Use of saline water for irrigation in monsoon climate and deep water table regions: Simulation modeling with SWAP

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  • Verma, A.K.
  • Gupta, S.K.
  • Isaac, R.K.

Abstract

SWAP (Soil-Water-Atmosphere-Plant) version 2.0 was evaluated for its capability to simulate crop growth and salinity profiles under various combinations of fresh and saline water use for irrigation at Agra (India), located in a semiarid monsoon climatic region having a deep water table. Best available water (BAW, EC 3.6dS/m) was used for pre-sowing irrigation to wheat crop and thereafter, twelve treatment combinations were imposed with four replications to supplement missed BAW water irrigations with saline water (EC 6/8 and 12dS/m). The model was calibrated and validated using measurements made in field trial during 2000–2003. A close agreement was observed between the measured data and simulated values. SWAP simulated and observed values for the relative yield ranged within absolute deviations of 4.2–9.7%. The validated model was later used to illustrate the consequences of long-term use of saline water on crop growth and salinity profiles. Simulated results confirmed that a yield potential exceeding 80% could be maintained by substituting saline waters up to 8dS/m in the absence of fresh water following a pre-sowing irrigation with BAW. This strategy helps to overcome the build-up of salts particularly in years when the monsoon rainfall is below average. It could be shown and concluded that seasonal build-up of salts due to use of saline water in winter season (November–April) crops is leached during the monsoon season (June–September) when rainfall at least during the months of July and August exceeds the potential evapotranspiration. On the whole, short-term field observations could be confirmed with application of SWAP that long-term use of saline water in monsoon climate under deep water table conditions is sustainable.

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  • Verma, A.K. & Gupta, S.K. & Isaac, R.K., 2012. "Use of saline water for irrigation in monsoon climate and deep water table regions: Simulation modeling with SWAP," Agricultural Water Management, Elsevier, vol. 115(C), pages 186-193.
  • Handle: RePEc:eee:agiwat:v:115:y:2012:i:c:p:186-193
    DOI: 10.1016/j.agwat.2012.09.005
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    1. Pasternak, D. & De Malach, Y. & Borovic, I., 1986. "Irrigation with brackish water under desert conditions VII. Effect of time of application of brackish water on production of processing tomatoes (Lycopersion esculentum Mill.)," Agricultural Water Management, Elsevier, vol. 12(1-2), pages 149-158, October.
    2. Hirekhan, Meenakshi & Gupta, S.K. & Mishra, K.L., 2007. "Application of WaSim to assess performance of a subsurface drainage system under semi-arid monsoon climate," Agricultural Water Management, Elsevier, vol. 88(1-3), pages 224-234, March.
    3. Gupta, G. P. & Prasher, S. O. & Chieng, S. T. & Mathur, I. N., 1993. "Application of DRAINMOD under semi-arid conditions," Agricultural Water Management, Elsevier, vol. 24(1), pages 63-80, September.
    4. Sarwar, Asad & Bastiaanssen, W. G. M. & Feddes, R. A., 2001. "Irrigation water distribution and long-term effects on crop and environment," Agricultural Water Management, Elsevier, vol. 50(2), pages 125-140, September.
    5. Chauhan, C.P.S. & Singh, R.B. & Gupta, S.K., 2008. "Supplemental irrigation of wheat with saline water," Agricultural Water Management, Elsevier, vol. 95(3), pages 253-258, March.
    6. Singh, Rajinder, 2004. "Simulations on direct and cyclic use of saline waters for sustaining cotton-wheat in a semi-arid area of north-west India," Agricultural Water Management, Elsevier, vol. 66(2), pages 153-162, April.
    7. Minhas, P. S. & Gupta, R. K., 1993. "Conjunctive use of saline and non-saline waters. I. Response of wheat to initial salinity profiles and salinisation patterns," Agricultural Water Management, Elsevier, vol. 23(2), pages 125-137, April.
    8. Naresh, R. K. & Minhas, P. S. & Goyal, A. K. & Chauhan, C. P. S. & Gupta, R. K., 1993. "Conjunctive use of saline and non-saline waters. II. Field comparisions of cyclic uses and mixing for wheat," Agricultural Water Management, Elsevier, vol. 23(2), pages 139-148, April.
    9. Breve, M. A. & Skaggs, R. W. & Parsons, J. E. & Gilliam, J. W., 1998. "Using the DRAINMOD-N model to study effects of drainage system design and management on crop productivity, profitability and NO3-N losses in drainage water," Agricultural Water Management, Elsevier, vol. 35(3), pages 227-243, January.
    10. Singh, R. B. & Minhas, P. S. & Chauhan, C. P. S. & Gupta, R. K., 1992. "Effect of high salinity and SAR waters on salinization, sodication and yields of pearl-millet and wheat," Agricultural Water Management, Elsevier, vol. 21(1-2), pages 93-105, June.
    11. Majeed, Abdul & Stockle, Claudio O. & King, Larry G., 1994. "Computer model for managing saline water for irrigation and crop growth: preliminary testing with lysimeter data," Agricultural Water Management, Elsevier, vol. 26(4), pages 239-251, December.
    12. Tedeschi, A. & Menenti, M., 2002. "Simulation studies of long-term saline water use: model validation and evaluation of schedules," Agricultural Water Management, Elsevier, vol. 54(2), pages 123-157, March.
    13. Lamsal, K. & Paudyal, Guna N. & Saeed, M., 1999. "Model for assessing impact of salinity on soil water availability and crop yield," Agricultural Water Management, Elsevier, vol. 41(1), pages 57-70, June.
    14. Vazifedoust, M. & van Dam, J.C. & Feddes, R.A. & Feizi, M., 2008. "Increasing water productivity of irrigated crops under limited water supply at field scale," Agricultural Water Management, Elsevier, vol. 95(2), pages 89-102, February.
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