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81.
棉秆粉碎收获机的设计 总被引:3,自引:0,他引:3
利用旋转甩刀的切割及冲击作用对棉秆进行粉碎,并利用甩刀高速旋转产生的惯性和气流对粉碎的棉秆进行抛送。在田间试验的基础上,通过理论探讨,对棉秆粉碎收获机的基本原理、主要部件及技术参数,尤其是甩刀转速进行分析、设计,设计了与中型拖拉机配套的棉秆粉碎收获机。 相似文献
82.
农用运输车行驶平顺性的模拟计算与分析 总被引:2,自引:0,他引:2
提出了四轮农用运输车的八自由度随机振动系统模型,对整车行驶平顺性进行了计算机模拟计算和分析计算结果得到了试验验证。 相似文献
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M. Dingkuhn B.B. Singh B. Clerget J. Chantereau B. Sultan 《Agricultural Water Management》2006,80(1-3):241-261
Asia's Green Revolution of the 1960s and 1970s has largely bypassed West Africa, and “modern” (high-yielding, input responsive) germplasm for staple crops has found comparatively little adoption, except for systems that are have good access to markets and sufficient water resources. It is unlikely, however, that breeding objectives conserving traditional crop characteristics as found in extensive systems would have been more successful. The authors identify systems caught in the agricultural transition from subsistence to intensified, market-oriented production as the most important target for crop improvement, and provide examples of new breeding objectives for cowpea, sorghum and upland rice. In each of these cases, breeders, with the help of physiologists, have developed innovative plant-type concepts that combine improved yield potential and input responsiveness with specific traditional crop characteristics that remain essential during the agricultural transition. In the case of cowpea, dual-purpose varieties were developed that produce a good grain yield due to an erect plant habit, then produce new leaves enabling a second harvest of green foliage. For upland rice systems that are limited by labour (mainly needed to control weeds that abound due to shortened fallow periods), a weed competitive plant type was developed from Oryza sativa × Oryza glaberrima crosses. Lastly, sorghum breeders who had previously deselected photoperiod sensitivity are now re-inserting sensitivity into plants having “modern” architecture, in order to allow for flexible sowing dates while maintaining an agro-ecologically optimal time of flowering near the end of the wet season. The ecophysiological basis of these plant types, their place in current and future cropping systems, as well as the problem of under-funding for their realisation, are discussed. 相似文献
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The root zone water quality model (RZWQM) was developed primarily for water quality research with a generic plant growth module primarily serving as a sink for plant nitrogen and water uptake. In this study, we coupled the CERES-Maize Version 3.5 crop growth model with RZWQM to provide RZWQM users with the option for selecting a more comprehensive plant growth model. In the hybrid model, RZWQM supplied CERES with daily soil water and nitrogen contents, soil temperature, and potential evapotranspiration, in addition to daily weather data. CERES-Maize supplied RZWQM with daily water and nitrogen uptake, and other plant growth variables (e.g., root distribution and leaf area index). The RZWQM-CERES hybrid model was evaluated with two well-documented experimental datasets distributed with DSSAT (Decision Support System for Agrotechnology Transfer) Version 3.5, which had various nitrogen and irrigation treatments. Simulation results were compared to the original DSSAT-CERES-Maize model. Both models used the same plant cultivar coefficients and the same soil parameters as distributed with DSSAT Version 3.5. The hybrid model provided similar maize prediction in terms of yield, biomass and leaf area index, as the DSSAT-CERES model when the same soil and crop parameters were used. No overall differences were found between the two models based on the paired t test, suggesting successful coupling of the two models. The hybrid model offers RZWQM users access to a rigorous new plant growth model and provides CERES-Maize users with a tool to address soil and water quality issues under different cropping systems. 相似文献
89.
农用柴油机排放控制技术的探讨 总被引:1,自引:0,他引:1
随着国内农用车的排放法规日趋严格,如何有效地控制农用柴油机的排放污染就成为一个摆在人们面前的很现实的问题。本文从三个方面探讨了农用柴油机排放的具体控制措施,并指出了今后控制技术发展努力的方向。 相似文献
90.
由于不合理的种植手段,造成了蔬菜的硝酸盐污染,影响蔬菜的品质,威胁人类的身体健康和生命安全。通过重视施用有机肥、合理施用氮肥、注意施肥时期和施肥种类、在不同季节使用正确栽培设施、使用硝化抑制剂(氮肥增效剂)等技术手段,可以明显减少硝酸盐在蔬菜中的残留,对发展绿色无公害蔬菜生产和提高人民生活水平有着十分重要的意义。 相似文献