Jeevan Kafle, K. Adhikari, Eeshwar Prasad Poudel, Ramesh Raj Pant
{"title":"Mathematical Modeling of Pollutants Dispersion in the Atmosphere","authors":"Jeevan Kafle, K. Adhikari, Eeshwar Prasad Poudel, Ramesh Raj Pant","doi":"10.3126/jnms.v7i1.67487","DOIUrl":null,"url":null,"abstract":"Air pollution is one of the biggest problems in both developed and developing countries. Mathematical modeling is widely applied to assess how air pollutants impact on human and ecological health. In this paper, the fundamental behavior of the plumes along with stack height and the underlying assumptions of the Gaussian plume model were assessed. Additionally, the equation for advection and diffusion was also developed to analyze the pollutants concentration of brick kilns. Basically, the model considers the height, emission sources, eddy diffusivity, and wind profile as parameters by adopting the fundamental approaches of the model. Interestingly, the results revealed that when the stack height is reduced, pollutants are more prominent whereas when the stack height is increased, the pollutants are less prevalent along the x-axis. There is a close relationship between wind velocity and pollutants dispersion. The model illustrates that stronger winds tend to increase the dispersion of air pollutants; hence, areas with stronger winds typically have lower air pollution concentrations. The insights of this work will directly contribute to environmental sustainability by mitigating pollutants concentration, especially in the core urban areas. Additionally, the work is also applicable for the researcher and academia to select the optimal measurement techniques and ways forward for controlling the pollution level in the atmosphere.","PeriodicalId":401623,"journal":{"name":"Journal of Nepal Mathematical Society","volume":" 6","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-04","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Nepal Mathematical Society","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3126/jnms.v7i1.67487","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
Air pollution is one of the biggest problems in both developed and developing countries. Mathematical modeling is widely applied to assess how air pollutants impact on human and ecological health. In this paper, the fundamental behavior of the plumes along with stack height and the underlying assumptions of the Gaussian plume model were assessed. Additionally, the equation for advection and diffusion was also developed to analyze the pollutants concentration of brick kilns. Basically, the model considers the height, emission sources, eddy diffusivity, and wind profile as parameters by adopting the fundamental approaches of the model. Interestingly, the results revealed that when the stack height is reduced, pollutants are more prominent whereas when the stack height is increased, the pollutants are less prevalent along the x-axis. There is a close relationship between wind velocity and pollutants dispersion. The model illustrates that stronger winds tend to increase the dispersion of air pollutants; hence, areas with stronger winds typically have lower air pollution concentrations. The insights of this work will directly contribute to environmental sustainability by mitigating pollutants concentration, especially in the core urban areas. Additionally, the work is also applicable for the researcher and academia to select the optimal measurement techniques and ways forward for controlling the pollution level in the atmosphere.
空气污染是发达国家和发展中国家面临的最大问题之一。数学模型被广泛应用于评估空气污染物对人类和生态健康的影响。本文评估了烟羽的基本行为、烟囱高度和高斯烟羽模型的基本假设。此外,还建立了平流和扩散方程,以分析砖窑的污染物浓度。基本上,该模型采用模型的基本方法,将高度、排放源、涡流扩散率和风廓线作为参数。有趣的是,结果显示,当烟囱高度降低时,污染物更加突出,而当烟囱高度增加时,沿 x 轴的污染物则减少。风速与污染物扩散之间存在密切关系。该模型表明,风力越强,空气污染物的扩散量越大;因此,风力越强的地区空气污染浓度通常越低。这项工作的见解将通过降低污染物浓度,特别是城市核心区域的污染物浓度,直接促进环境的可持续发展。此外,这项工作也适用于研究人员和学术界选择最佳测量技术和控制大气污染水平的方法。