首页> 外文期刊>Atmospheric environment >A pesticide emission model (PEM) Part Ⅰ: model development
【24h】

A pesticide emission model (PEM) Part Ⅰ: model development

机译:农药排放模型(PEM)第一部分:模型开发

获取原文
获取原文并翻译 | 示例
           

摘要

The application of pesticides to cultivated soil and crops is a major source of pesticides that are found in the atmosphere and which are transported and deposited to land and water surfaces over distances that range from local to global scales. In this first part of a two-part paper, a pesticide emission model (PEM) is proposed for estimating the exchange with the atmosphere of pesticides applied to soils and crops. The basis of PEM is a one-dimensional numerical solution of the dynamic equations describing the advection and diffusion of heat, moisture and pesticide within the soil column and exchange with the atmosphere through heat transfer, evapotranspiration and volatilization. The soil model is coupled with an atmospheric surface layer and a simple canopy model that includes: the interception of sprayed pesticide by the crop foliage; the partitioning of pesticide within a wet or dry canopy; and, the volatilization of pesticide to the atmosphere or the wash-off to the soil by precipitation. The finite-element technique used for solving the model equations is mass conservative and multi-year periods of simulation are possible while maintaining a proper mass balance of pesticide in the soil. The model is solved using 1200 s time-steps and 49 variably spaced levels in the soil to a depth of 2 m, with the highest vertical resolution (0.002 m spacing) near the soil surface. Similarity theory is used to parameterize the fluxes of heat, moisture and pesticide through the atmospheric surface layer with hourly meteorology being provided by either climate station observations or a meteorological model. In the second part to this paper, the results of an evaluation of PEM are reported.
机译:在耕作的土壤和农作物上使用农药是在大气中发现的农药的主要来源,这些农药在从地方到全球范围的距离内被运输和沉积到土地和水面。在一个由两部分组成的论文的第一部分中,提出了一种农药排放模型(PEM),用于估算施用到土壤和农作物上的农药与大气的交换。 PEM的基础是动力学方程的一维数值解,描述了土壤中热量,水分和农药的对流和扩散,以及通过热传递,蒸散和挥发与大气交换。土壤模型与大气表层和简单的冠层模型相结合,包括:作物叶片对喷洒的农药的拦截;在湿的或干的雨棚内分配农药;农药挥发到大气中或通过沉淀冲刷到土壤中。用于求解模型方程式的有限元技术是质量保守的,并且可能在多年的模拟期间保持土壤中农药的适当质量平衡。该模型使用1200 s的时间步长和49个可变间距的土壤中的深度2 m求解,在土壤表面附近具有最高的垂直分辨率(0.002 m间距)。相似性理论用于对通过大气表层的热量,水分和农药的通量进行参数化,其中每小时的气象由气候站观测或气象模型提供。在本文的第二部分中,报告了PEM的评估结果。

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