期刊文献+

面源污染输移过程高性能数值模拟方法 被引量:4

HIGH PERFORMANCE NUMERICAL SIMULATION METHOD FOR NON-POINT SOURCE POLLUTION TRANSFER PROCESS
原文传递
导出
摘要 高效高精度模拟面源污染输移过程,掌握面源污染的输移规律,是研究面源污染最直接有效的途径之一,也是管理和控制面源污染的有效手段。基于此,提出了一种全面耦合二维水文水动力及污染物输移过程的数值模型,采用二阶Godunov格式的有限体积法进行求解,利用GPU加速技术提高计算效率。结果表明:在理想条件下,数值解与解析解间的平均相对误差为2.5%。对不同面积和精度的城市地表面源污染和农业面源污染输移过程的模拟结果显示,二者的输移规律符合实际的物理过程,模拟总时长为7200 s,城市地表面源污染模拟结果只需186 s;农业面源污染模拟结果只需1169 s,计算效率有显著提升。综上所述,GAST模型对不同下垫面面源污染可实现高精度模拟,且模拟效率有显著提升,为今后面源污染的治理和防控提供参考。 Efficient and high-precision simulation of the process of non-point source pollution and mastering the law of non-point source pollution is one of the most direct and effective ways to study non-point source pollution,and also an effective way to manage and control non-point source pollution.Based on this,this paper proposed a numerical model that fully coupled two-dimensional hydro-hydrodynamic and pollutant transport processes.It used the second-order Godunov format finite volume method to solve the problem,and used GPU acceleration technology to improve computing efficiency.The results showed that,under ideal conditions,the average relative error between the numerical and analytical solutions was 2.5%.The transport processes of urban surface source pollution and agricultural non-point source pollution with different areas and accuracy were simulated,and the results showed that the transport laws of the two were consistent with the actual physical process.The total simulation time was 7200 s.The simulation of urban surface source pollution took only 186 s;the simulation of agricultural non-point source pollution took 1169 s,and the calculation efficiency was significantly improved.In summary,the GAST model could not only achieve high-precision simulation of different underlying surface source pollution simulations,but also significantly improve the simulation efficiency,and provide basic support for future non-point source pollution control and prevention.
作者 郭敏鹏 侯精明 付德宇 康永德 石宝山 李昌镐 GUO Min-peng;HOU Jing-ming;FU De-yu;KANG Yong-de;SHI Bao-shan;LI Chang-hao(State Key Laboratory of Eco-hydraulics in Northwest Arid Region of China,Xi’an University of Technology,Xi’an 710048,China;Beijing Capital Co.,Ltd,Beijing 100028,China)
出处 《环境工程》 CAS CSCD 北大核心 2020年第8期160-166,173,共8页 Environmental Engineering
基金 国家十三五重大研发专项(2016YFC0402704) 国家自然科学基金(51609199) 陕西省水利科技项目(2017SLKJ-14) 固原海绵城市建设示范区海绵效果数值模拟(104-441218018)。
关键词 面源污染 GPU加速 高效高精度 non-point source pollution GPU acceleration high efficiency and precision
  • 相关文献

参考文献20

二级参考文献316

共引文献450

同被引文献69

引证文献4

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部