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151.
通过对开发区农田生态系统的综合论证,提出研究目标、技术决策和规划原则,采用水利、农业相结合的节水技术体系,运用汇水、输水、调水、配水相结合的方式,联合调用地表、地下水资源,提高水的利用率,为中低产贫水区大面积推广综合节水灌溉提供可行的技术模式。 相似文献
152.
为解决随着大、中型联合作业机具和跨区作业的发展.农村中占机具总量大部分的小型机具出现闲置.造成了农机资源的浪费问题,提出了4条提高利用率的途径和农机主管部门应做好的5项工作。 相似文献
153.
SUN Yuan-hong WANG Ji-gang 《农机具之友》2007,(7)
近年来,沛县在农业综合开发中,坚持以改善农业生产基本条件为重点,以示范区项目建设为突破,以农业产业化开发为主线,以农业增效、农民增收为目标,着力培育优势主导产业、开发特色高效农业,大大提高了农业综合开发社会经济效益。 相似文献
154.
针对离心泵节能问题,从设计、制造、配套等技术角度进行了阐述分析,提出可通过CAD/CFD技术的应用、传统设计方法的提高和改进、CAM技术在泵制造过程中的应用、提高铸造技术水平、调节转速以及提高离心泵选型的设计水平等措施来实现高效节能的目标。并通过分析目前存在的制约节能工作开展的问题,提出改进离心泵节能工作的实施办法。 相似文献
155.
随着城市经济的发展,农业、工业、生活和生态环境用水之间竞争加剧,运用市场机制和经济手段来合理分配水资源是目前国际社会所采取的战略举措。基于不同产业的用水效率和效益的差异分析,说明在产业间开展水权交易可优化水资源配置。现以工业化程度最高的上海为例,对上海的用水结构与产业结构进行对比分析,揭示水权交易的内在去驱动力,并提出了推动水权交易实践的政策建议。 相似文献
156.
Effect of timing of first and last irrigation on the yield and water use efficiency in cotton 总被引:1,自引:0,他引:1
With increasing concern about declining water resources, there is increasing thrust in improving water management in farming systems to improve water use efficiency. The present investigation was undertaken to determine the optimum timing for the first and last irrigation of cotton on the basis of meteorological approach for scheduling irrigations. The experiment was conducted in a split plot design with three timings of first irrigation as main-plots and three timing of last irrigation as sub-plots. Delay of first irrigation from 28 days after sowing (DAS) to 42 DAS, irrespective of last irrigation, resulted in an increase of 8, 14 and 17% in seed cotton yield during first, second and third year, respectively. The corresponding increases due to delay in the last irrigation from 130 to 170 DAS were 14, 32 and 8%, respectively. On the basis of 3 years average, application of first and last irrigation at optimum time (after 42 and 170 days after sowing) resulted in an increase of 36% in seed cotton yield without involving any additional cost. Water expense efficiency (WEE) increased by 54%. 相似文献
157.
Irrigation and food security in the 21st century 总被引:1,自引:0,他引:1
Global food projections indicate that food prices in the next threedecades will likely be stable or decline, but progress inreducing malnutrition in developing countries will be slow. Smallshortfalls in crop productivity growth would lead to rising foodprices and worsening malnutrition. Increased food production fromirrigation is essential, and will require expansion of irrigatedarea and water supplies, and improved efficiency of use of existingwater supplies. Neither of these growth factors will prove easy, andboth will require complex institutional and policy reforms. Failureto meet food production needs through efficient expansion andintensification of irrigated agriculture would increase pressure onland resources and hasten the process of environmental degradation.Irrigation and water development strategies have been hampered bya lack of understanding of the links between water scarcity, foodproduction, food security, and environmental sustainability.Research to improve this understanding would have high payoffs. 相似文献
158.
由排灌机械行业的现状 ,结合江苏理工大学流体机械工程技术中心 15年来举办培训班的实践 ,提出了培养一大批掌握现代科学技术的工程技术人员和高素质员工是促进排灌事业发展最直接、最有效的措施 ,而制定和完善岗位培训制度是这一措施规范化、制度化、科学化的保证。文章阐述了岗位培训的概念 ,对建立岗位培训制度的原则、框架和体系作了探讨。 相似文献
159.
160.
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