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首页> 外文期刊>Agricultural Water Management >Integrated effect of transplanting date, cultivar and irrigation on yield, water saving and water productivity of rice (Oryza sativa L.) in Indian Punjab: Field and simulation study
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Integrated effect of transplanting date, cultivar and irrigation on yield, water saving and water productivity of rice (Oryza sativa L.) in Indian Punjab: Field and simulation study

机译:移栽日期,品种和灌溉对印度旁遮普邦水稻(Oryza sativa L.)的产量,节水和水分生产率的综合影响:田间和模拟研究

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摘要

Individual effect of different field scale management interventions for water saving in rice viz. changing date of transplanting, cultivar and irrigation schedule on yield, water saving and water productivity is well documented in the literature. However, little is known about their integrated effect. To study that, field experimentation and modeling approach was used. Field experiments were conducted for 2 years (2006 and 2007) at Punjab Agricultural University Farm, Ludhiana on a deep alluvial loamy sand Typic Ustipsamment soils developed under hyper-thermic regime. Treatments included three dates of transplanting (25 May, 10 June and 25 June), two cultivars (PR 118 inbred and RH 257 hybrid) and two irrigation schedules (2-days drainage period and at soil water suction of 16kPa). The model used was CropSyst, which has already been calibrated for growth (periodic biomass and LAI) of rice and soil water content in two independent experiments. The main findings of the field and simulation studies conducted are compared to any individual, integrated management of transplanting date, cultivar and irrigation, sustained yield (6.3-7.5thap#) and saved substantial amount of water in rice. For example, with two management interventions, i.e. shifting of transplanting date to lower evaporative demand (from 5 May to 25 June) concomitant with growing of short duration hybrid variety (90 days from transplanting to harvest), the total real water saving (wet saving) through reduction in evapotranspiration (ET) was 140mm, which was almost double than managing the single, i.e. 66mm by shifting transplanting or 71mm by growing short duration hybrid variety. Shifting the transplanting date saved water through reduction in soil water evaporation component while growing of short duration variety through reduction in both evaporation and transpiration components of water balance. Managing irrigation water schedule based on soil water suction of 16kPa at 15-20cm soil depth, compared to 2-day drainage, did not save water in real (wet saving), however, it resulted into apparent water saving (dry saving). The real crop water productivity (marketable yield/ET) was more by 17% in 25th June transplanted rice than 25th May, 23% in short duration variety than long and 2% in irrigation treatment of 16kPa soil water suction than 2-days drainage. The corresponding values for the apparent crop water productivity (marketable yield/irrigation water applied) were 16, 20 and 50%, respectively. Pooled experimental data of 2 years showed that with managing irrigation scheduling based on soil water suction of 16kPa at 15-20cm soil depth, though 700mm irrigation water was saved but the associated yield was reduced by 277kghap#.
机译:不同田间规模管理干预措施对水稻节水的个体影响。文献充分记载了移栽日期,品种和灌溉时间表对产量,节水和水生产率的影响。但是,关于它们的综合作用知之甚少。为了研究这一点,使用了现场实验和建模方法。在卢迪亚纳的旁遮普农业大学农场进行了为期2年(2006年和2007年)的田间试验,研究对象是在高温条件下开发的深冲壤质壤土典型的Ustipsamment土壤。处理方法包括三个移植日期(5月25日,6月10日和6月25日),两个品种(PR 118自交系和RH 257杂交种)和两个灌溉计划(排水2天,土壤吸水量为16kPa)。使用的模型是CropSyst,该模型已经通过两个独立的实验针对稻米的生长(周期性生物量和LAI)和土壤水分进行了校准。将田间研究的主要结果和进行的模拟研究与任何人进行比较,对移栽日期,品种和灌溉进行综合管理,持续增产(6.3-7.5thap#)并节省了水稻中的大量水。例如,采用两种管理干预措施,即将移栽日期转移到较低的蒸发需求(从5月5日到6月25日),同时增加短时杂交品种(从移栽到收获的90天),总的实际节水量(节水量) )的蒸散量(ET)减少了140mm,几乎是单个蒸腾量的两倍,即移栽66mm或种植短时杂交品种71mm。移栽日期的改变通过减少土壤水分的蒸发成分而节省了水,而短期品种通过减少水分平衡的蒸发和蒸腾成分而得以节水。与2天排水相比,在15-20cm土深处基于16kPa的土壤吸水来管理灌溉水量表并没有真正节省水(节水),但是却导致了明显的节水(节水)。与2天排水相比,6月25日移栽水稻的实际作物水分生产率(可销售产量/ ET)比5月25日高出17%,短期品种比长期水稻高23%,灌溉处理16kPa土壤吸水2%。表观作物水生产率(可销售的产量/灌溉水)的相应值分别为16%,20%和50%。两年的汇总实验数据表明,在15-20cm的土壤深度下,基于16kPa的吸水量管理灌溉计划,虽然可以节省700mm的灌溉水,但相关的产量却减少了277kghap#。

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