WATER REGIME AND EFFICIENCY OF GROWING SUNFLOWER HYBRIDS DEPENDING ON THE ELEMENTS OF DRIP IRRIGATION TECHNOLOGY

V. V. Kaliley, A. Shatkovskyi
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Abstract

The article presents the results of experimental research on the influence of micro-irrigation system designs on the water regime, productivity, and efficiency of sunflower cultivation. Based on this, the main economic parameters of agrotechnologies of sunflower cultivation were calculated. Short-term field research was carried out in the period 2020-2022 on the lands of the Brylivske experimental field of the Institute of Water Problems and Reclamation of the National Academy of Agrarian Sciences (Kherson Region, Dry Steppe subzone). Analytical and statistical methods were used to process experimental data. The scheme of field experiments provided different options for laying irrigation pipelines of micro-irrigation systems (in the horizontal and vertical planes) and the implementation of a pulsed water supply mode (standard). The control was the variant without irrigation. According to the results of experimental studies, it was proved that the method of laying irrigation pipelines of micro-irrigation systems significantly affects the parameters of the formation of the soil water regime and the yield of sunflower hybrids in the conditions of the Dry Steppe. It has been established that the introduction of subsurface drip irrigation is more appropriate than the cultivation of sunflower hybrids, which is explained by the drought resistance of this crop. When growing sunflowers, the variant with the subsurface laying of drip irrigation pipelines provided almost identical yield parameters at lower plant water consumption coefficients. The minimum water consumption coefficient (1077,8 m3/t) was obtained by implementing the pulse water supply mode. The highest economic parameters of agricultural technology for growing sunflower hybrids were obtained with the subsurface drip irrigation: conditionally net profit (17,11-18,17 thousand UAH/ha), lower cost (11,03-10,90 thousand UAH/ton), and also a higher level of production profitability (31,10-32,62%) (laying irrigation pipelines every 1,0 m, regardless of the sunflower hybrid). Due to the higher grain yield and specific savings of irrigation water in the pulse mode of water supply, the highest economic parameters were achieved: gross income amounted to 80,51 thousand UAH/ha, conditionally net profit – 21,24 thousand UAH/ha, cost of 1 ton of grain - UAH 10,6 thousand and the level of profitability of production – 35,8%.
滴灌技术要素对向日葵杂交作物水分状况和效率的影响
本文介绍了微灌系统设计对向日葵栽培水分状况、生产力和效率影响的试验研究结果。在此基础上,计算了向日葵栽培农业技术的主要经济参数。短期实地研究于2020-2022年期间在国家农业科学院水问题与开垦研究所布里夫斯克实验田的土地上进行(克尔森地区,干草原分区)。采用分析和统计方法对实验数据进行处理。田间试验方案为微灌系统(水平和垂直平面)灌溉管道的铺设和脉冲供水模式(标准)的实施提供了不同的选择。对照为不灌水的变种。试验研究结果表明,在干草原条件下,微灌系统灌水管道的铺设方式对土壤水分状况的形成参数和向日葵杂交种的产量有显著影响。研究表明,采用地下滴灌比种植向日葵杂交种更为适宜,这可以从向日葵的抗旱性来解释。在种植向日葵时,在较低的植株耗水系数下,地下铺设滴灌管道的品种提供了几乎相同的产量参数。采用脉冲供水方式,可获得最小耗水系数(1077.8 m3/t)。地下滴灌种植向日葵杂交种的农业技术经济参数最高:有条件的净利润(17,11-18,17 000 UAH/ha),较低的成本(11,03-10,9万UAH/t),较高的生产盈利水平(31,10-32,62%)(每1000 m铺设灌溉管道,无论向日葵杂交种)。由于脉冲供水方式的粮食产量较高,灌溉用水的具体节约,达到了最高的经济参数:毛收入达到805.1万乌瓦/公顷,有条件的净利润为22.1万乌瓦/公顷,一吨粮食的成本为100.6万乌瓦/公顷,生产利润率为35.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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