农业系统工程

  • 网络agricultural system engineering
农业系统工程农业系统工程
  1. 农业系统工程在蒙阴县开发建设中的应用

    Application of agricultural system engineering in a developing construction of Mengyin County in Shandong Province

  2. 应用农业系统工程理论和曲线拟合方法建立数学模型,讨论种植业发展的制约因素,寻求旱地种植业的稳定、持续发展的途径,为有关部门提供策划、决策的参考依据。

    Mathematics models concerning the limiting factors were set up by agricultural system engineering theory and fitting of curve method , which explore possible approaches for a stable and sustainable development of dry land cropping , and provide references for decision-making organizations .

  3. 农业系统工程的学科特性初探

    A preliminary study of the characteristics of agricultural systems engineering

  4. 该投影寻踪模型在农业系统工程预测及评价中具有较强适用性。

    IGA-PP has better applicability for forecasting and evaluating agricultural engineering system .

  5. 最短路问题在农业系统工程中的应用

    Applications of Shortest Path Problem in Agricultural Systems Engineering

  6. 抓好节水农业系统工程促进农业可持续发展

    Seizing the systematic engineering of water saving agriculture promoting continued development of the agriculture

  7. 关于应用农业系统工程指导县级规划问题

    Concerning the design of the county programme with the application of agricultural systematic engineering

  8. 农业系统工程科研学术的发展

    The Developed Ten Years of Research and Application on Agricultural Systems Approach in P.R.C

  9. 运用农业系统工程原理,采用二次回归正交旋转组合设计进行田间试验。

    The field experiments were carried out by using the principle of agricultural systems engineering and the modular design between quadratic regression and positive rotation .

  10. 最后提出了加强以农田基本建设为重点的农业系统工程建设,不断提高土地生产力,促进农业生产持续稳步发展的建议。

    Finally , they suggested to strengthen the construction of agro-system engineering with priority gives to the basic farmland construction and continue to improve land productivity so as to promote the sustained and stable development of agricultural production .

  11. 通过召开第一届农业系统工程国际会议和国内学术会议,促进了国内外同仁的技术交流和合作,有力地推动了中国农业系统工程的发展。

    Meanwhile , By means of national and international conferences of learning exchange in PRC , China 's scholars cooperation and exchange with other countries ' scholars was promoted and to advance development of Agricultural Systems Approach in China .

  12. 南方有很丰富的饲草资源和良好的社会经济条件,在此基础上利用现代高科技知识,建立草地农业系统工程,发展南方精准养殖业,提高资源的利用率和生产效益。

    Based on the rich forage grass resources and good social and economic conditions in the south , using modern high-techniques , grassland agricultural systems engineering can be established , accurate breeding be developed , utilization ratio of resources and productivity be raised .

  13. 根据农业系统工程原理,采用D饱和最优回归设计方法,研究了长江下游沿江地区多熟制后季稻塑盘旱育抛秧栽培种植方式的生产潜力和技术优化问题,建立了产量函数数学模型。

    According to the principle of agricultural systemic engineering , the production potential and technical renew for late season rice growth through the tossing along low Yangtze River region were studied with the method of regress and mathematic model of rice yield was set up .

  14. 应用农业系统工程理论解决农业机械配备中提出的数学模型问题,是建立农、林、牧、副、渔、农机大农业数学模型的一个重要组成部分。

    It is an important part of macro & Agric , mathematical models about agriculture , forestry , stock raising , sideline , fishery , and farm machines for making mathematical model for the deployment of farm machines on the basis of Agricultural System Engineering Theory .

  15. 论多维人工生态农业经济系统工程的效益

    On the comprehensive benefit of multiform man-made ecology agriculture system project

  16. 基于3S技术的农业系统信息化管理工程

    The information management engineering of agricultural system based on " 3S " technologies

  17. 本文在阐述3S技术特征的基础上,提出了基于3S技术的吉林省农业系统信息化管理工程的基本框架,并对其关键技术,应用前景等问题进行了一般性讨论。

    On the basis of commenting on " 3S " technique , this paper develops a basic frame for agricultural system administration by information , and discusses its key techniques and applications in general .

  18. 本文论述了3S技术及其特点,提出了基于3S技术的农业系统信息化管理工程的概念模型和基本框架,以及建立农业系统信息化管理工程的若干关键技术问题。

    In this paper , the " 3S " technologies and their characteristics are described . The conception model and the base frame of the information management engineering of agricultural system based on " 3S " technologies , and some key technological problems to set up the engineering are pointed .

  19. 吉林省农业系统信息化管理工程初步研究

    A Preliminary Study on Agricultural System Administration by Information in Jilin Province

  20. 果树栽培区农业地质背景系统工程作用。

    The effect of AGBS engineering in cultivation areas of fruit trees .

  21. 节水农业与农业系统工程

    Water Saving Agriculture and Agricultural System Engineering

  22. 农业专家系统应用示范工程综合评价指标体系研究

    Comprehensive appraisement index system research for application demonstration project of agricultural expert systems

  23. 中国干旱半干旱区农业生态地质环境系统工程研究

    The study of systematic engineering on agricultural eco-geological environment in arid and semiarid area in China

  24. 农业是一个系统工程,和基本国情、国际环境、国家战略、自然环境、科技水平等其它因素都息息相关。

    Agriculture is system engineering , related to the basic situation , the international environment , national strategy , the natural environment , the level of technology and the other factors .

  25. 关于农业信息科学形成的讨论论农业信息系统工程的建设

    Discussion on the Agricultural Information Science & On Construction of Agricultural Information System Engineering Again

  26. 这一政策体系包括提高农业综合生产能力的投入政策、支持农业生态系统工程持续性建设的经济政策、提高农业生态经济效益的技术政策和保持农业生态平衡的环境政策。

    The policy system includes input policy to increase agricultural comprehensive porduction capability , economic policy to support agricultural ecological project construction , technical policy to enhance agricultural eco-economic efficiency and environmental policy to maintain agricultural ecological equilibrium .

  27. 它是高效利用农业资源、减少环境污染和软保持农业可持续发展的系统工程。

    Itis the efficient use of agricultural resources , reduce environmental pollution and softto maintain the sustainable development of agriculture systems engineering .

  28. 农业工程化:主要包括土地利用工程、农业能源工程、农业系统工程、农业人体工程、农业生物工程、农业机械工程,以至农业环境治理工程,海洋养殖工程等学科。

    Development of agricultural engineering . This comprises of engineer-ing pertaining to the following areas , land utilization , agricultural energy , agricultural systems , protection of human health , agricultural biology , agricultural mechanization , management of agricultural environment , and marine breeding etc.

  29. 文章探讨了发展山区农业经济的问题,如何利用自然资源,利用现代科学技术建设生态农业系统工程,发展农业生产、振兴山区经济。

    Developing agro-economy problems in mountains , such as how to utilize natural resources and modern scientific techniques , were discussed as to structure eec-agricultural systematic projects , to develop agricultural production and to strength mountains ' economy .

  30. 利用系统工程学的原理,从农业生态地质环境容量的角度出发,对该区的农业生态地质环境的演化过程和演化模式进行了研究,进而提出了农业生态地质环境系统工程研究模式。

    Using the theory of systematic engineering , we study the evolutional process and model of agricultural eco-geological environment from the point of agricultural and social capacity . Further more , we propose the systematic engineering model of agricultural eco-geological environment .