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首页> 外文期刊>Agricultural Sciences >Optimization of Conventional Combine Harvester to Reduce Combine Losses for Basmati Rice (&i&Oryza Sativa&/i&)
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Optimization of Conventional Combine Harvester to Reduce Combine Losses for Basmati Rice (&i&Oryza Sativa&/i&)

机译:常规组合收割机的优化以减少Basmati Rice的结合损失(& i& oryza sativa& / i&)

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A study was conducted at PAU Regional Research Station, Gurdaspur (Punjab) to investigate the design and operational parameters of threshing mechanism of conventional combine harvester for basmati crop. This study was aimed to investigate the suitable changes required in the self-propelled conventional combine harvester for harvesting the basmati crop with minimum grain losses. Field evaluation of experiment was carried out to assess the influence of independent design variable i.e. , arrangement of spikes (AS) and independent operational parameters such as concave clearance (CC) and cylinder speed (CS). The study was aimed to enumerate various combining losses viz ., extent of visible and invisible grain damage and threshing efficiency at different AS, CC and CS levels. The first year data recorded during 2017 were processed for the optimization during 2018. The results of the present study revealed that during 2017, maximum visible and invisible losses was 5.49% ± 0.33% and 28.07% ± 3.21%, respectively whereas after modification, these losses remained only 4.00% ± 0.80% and 24.07% ± 2.86%, respectively. The threshing efficiency remained above 99.31% ± 0.47%, for both years. Thus, optimization of combine harvester was able to save the visible grain damage by 60% to 83% and invisible grain damage by 6% to 16%, respectively during 2018 than the year 2017.
机译:在PAU地区研究站,Gurdaspur(Punjab)进行了一项研究,以研究常规联合收割机的脱粒机制的设计和操作参数。本研究旨在调查自推进常规联合收割机中所需的合适变化,用于利用最小粒度损失收获Basmati作物。进行实验的现场评估,以评估独立设计变量的影响,钉子(AS)和独立操作参数,如凹形间隙(CC)和汽缸速度(CS)。该研究旨在枚举各种组合的损失viz。,可见和无形晶粒损伤的程度和脱粒效率,不同,cc和cs水平。 2017年期间记录的第一年数据于2018年进行了优化。本研究结果显示,2017年,最大可见和无形损失分别为5.49%±0.33%和28.07%±3.21%,而修改后,这些损失分别仅为4.00%±0.80%和24.07%±2.86%。脱粒效率均高于99.31%±0.47%,两年。因此,组合收割机的优化能够在2018年的2018年比2017年分别将可见的晶粒损伤挽救60%至83%,不可见的晶粒损伤6%至16%。

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