...
首页> 外文期刊>Agricultural Systems >Monitoring forage production for farmers' decision making.
【24h】

Monitoring forage production for farmers' decision making.

机译:监测草料生产,以供农民决策。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Objective management of grazing livestock production systems needs monitoring of forage production at the managerial unit level. Our objectives were to develop a system that routinely estimates forage above-ground net primary production (ANPP) at the spatial and temporal resolution required by farmers in the Pampas of Argentina, and to facilitate adoption of the system by end users as a managerial support tool. Our approach was based on the radiation use efficiency (RUE) logic, which proposes that ANPP is determined by the amount of photosynthetically active radiation absorbed by the canopy (APAR), and the efficiency with which that energy is transformed in above-ground dry matter (radiation use efficiency, RUE). APAR is the product of incoming photosynthetically active radiation (PAR) and the fraction absorbed by the canopy (fPAR). We estimated fPAR as a non-linear function of MODIS normalized difference vegetation index (NDVI). RUE was empirically estimated for the two principal forage resources of the region, yielding the following relations: ANPP=0.6 x APAR+12, (R2=0.86; p<0.001; n=18) for the upland sown pastures, and ANPP=0.27 x APAR+26, (R2=0.74; p<0.001; n=18) for the lowland naturalized pastures, with ANPP in g/m2/60 days and APAR in MJ/m2/60 days. The models were able to predict independent ANPP values with acceptable accuracy. Computational procedures were automated and run in a Relational Data Base Manager System that stored and managed all the information. The system is currently monitoring 212 794 ha in 83 farms and provides monthly ANPP values for the previous month and a history of the last 6 years. The data so generated show ANPP differences between the two major forage resources, considerable variability of a given month's ANPP among years and paddocks, and contrasting among-farm differences in the efficiency of conversion of ANPP and forage supplements into beef production. The system was well accepted by end users who utilize it mainly for making near real time decisions according to last month ANPP, and explaining results of previous production cycles by incorporating ANPP as an explicative variable. However, there were differences among farmers in the degree of utilization, apparently related to the advisor's attitude toward this new technology. Our results indicate that (1) forage production of large extensions can be monthly monitored at the paddock level by a small laboratory with capabilities in geographic information systems, and (2) advisors and farmers apply this information to their managerial decisions..
机译:放牧牲畜生产系统的客观管理需要在管理部门一级监测草料生产。我们的目标是开发一个系统,该系统以阿根廷潘帕斯州农民所需的时空分辨率例行估算地面上的净初级生产(ANPP),并促进最终用户将该系统用作管理支持工具。我们的方法基于辐射利用效率(RUE)逻辑,该逻辑提出ANPP由树冠(APAR)吸收的光合有效辐射量以及能量在地上干物质中转化的效率决定(辐射使用效率,RUE)。 APAR是入射的光合有效辐射(PAR)与树冠吸收的分数(fPAR)的乘积。我们将fPAR估计为MODIS归一化植被指数(NDVI)的非线性函数。对该地区的两种主要牧草资源进行了RUE的经验估算,得出以下关系:旱地牧场的ANPP = 0.6 x APAR + 12,(R2 = 0.86; p <0.001; n = 18),ANPP = 0.27对于低地天然牧场,x APAR + 26,(R2 = 0.74; p <0.001; n = 18),其中ANPP单位为g / m2 / 60天,APAR单位为MJ / m2 / 60天。这些模型能够以可接受的精度预测独立的ANPP值。计算过程是自动化的,并在关系数据库管理器系统中运行,该系统存储和管理所有信息。该系统当前正在监视83个农场的212794公顷,并提供前一个月的每月ANPP值以及最近6年的历史。这样产生的数据显示出两种主要饲草资源之间的ANPP差异,给定月份的ANPP在年份和牧场之间的显着差异,以及农场之间在ANPP和饲草补品转化为牛肉生产效率方面的差异。该系统受到最终用户的广泛认可,最终用户利用该系统主要根据上个月的ANPP做出近乎实时的决策,并通过将ANPP作为显性变量并解释了先前生产周期的结果。但是,农民之间在利用程度方面存在差异,这显然与顾问对这项新技术的态度有关。我们的结果表明,(1)具有地理信息系统功能的小型实验室可以在围场一级每月监视大型扩展的草料生产;(2)顾问和农民将这些信息应用于他们的管理决策。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号