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首页> 外文期刊>Current Journal of Applied Science and Technology >Development of Solar Powered Micro-irrigation Applicator for Dryland Agriculture
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Development of Solar Powered Micro-irrigation Applicator for Dryland Agriculture

机译:旱地农业太阳能微灌涂装器的开发

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In India, 58% of net sown area is under dryland agriculture, where rain is the only source of irrigation water.? Sowing is usually done in dryland whenever the ground is wet due to rainfall. But, if there is no rainfall within 30-40 days after sowing, the crop will be under severe dry spell condition and many a times the crop fails due to which the farmer incurs heavy losses. To solve this problem, a solar operated micro-irrigation applicator was developed and tested at Chaudhary Charan Singh Haryana Agricultural University (CCSHAU), Hisar, Haryana, India. The machine consists of body structure with inbuilt 500 litres capacity water storage tank, solar panels, battery, solar charger, mono-block pump set with DC motor, transportation wheel and? drip irrigation system.? Water has to be taken from the pond where rain water has been stored during rainy season.?? The machine works on solar power and can be installed anywhere in remote area.? In the last week of January, 2019, at CCSHAU, Hisar, the average solar insolation was 948 W/m~(2) and the average voltage developed by the solar panels was 12.86 V.? The average discharge rate of dripper and sprinkler were 79.9 and 640.2 ml/minute, respectively. The performance of the machine was evaluated in bottle gourd and it was found to be satisfactory to save the crop under dry spell conditions.
机译:在印度,58%的净播种区是旱地农业,下雨是灌溉水的唯一来源。播种通常在Dryland中完成,只要在降雨导致地面湿润时就完成了。但是,如果播种后30-40天内没有降雨,那么作物将在严重的干法术条件下,并且由于农民遭受重大损失,因此作物失败了很多。为了解决这个问题,在Chaudhary Charan Singh Huryana农业大学(CCShau),哈里亚纳,印度的Chaudhary Charan Singh哈里巴纳州农业大学(CCShau)开发和测试了太阳能微灌涂抹器。机器由带内置500升电容蓄水罐,太阳能电池板,电池,太阳能充电器,单块泵组与直流电机,运输轮和何处的机身结构组成。滴灌系统。只需从雨季储存雨水的池塘中取出水。??该机器在太阳能下工作,可以安装在远程区域的任何地方。在2019年1月的最后一周,在CCSHAU,Hisar,平均太阳能呈现为948 W / m〜(2),太阳能电池板开发的平均电压为12.86V。滴管和喷洒器的平均排放率分别为79.9和640.2毫升/分钟。在瓶葫芦中评价机器的性能,发现在干法术条件下拯救作物是令人满意的。

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