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对燃煤发电厂在不同热工况下两种不同污染物扩散情况的评估。

The assessment of two different pollutants dispersion from a coal-fired power plant for various thermal regimes.

作者信息

Issakhov Alibek, Mashenkova Albina

机构信息

al-Farabi Kazakh National University, Almaty, Republic of Kazakhstan.

Kazakh British Technical University, Almaty, Republic of Kazakhstan.

出版信息

J Environ Health Sci Eng. 2021 May 3;19(1):959-983. doi: 10.1007/s40201-021-00662-5. eCollection 2021 Jun.

Abstract

In this study, numerical simulations of the movement and emissions dispersion of two pollutants (sulfur dioxide(SO) and carbon dioxide(CO)) into the atmospheric boundary layer were considered under natural atmospheric conditions. To test the numerical algorithm and to select the optimal turbulent model, the test problem was solved numerically. The obtained computational data were compared with measurement data and values from the computation of other authors and the SST k-omega model illustrated the closest values to the data from the experiment, this is achieved by modifying the boundary condition for turbulent kinetic energy. The tested computational algorithm was used to characterize the emissions process of two pollutants from two chimneys of the Ekibastuz SDPP and the distribution of CO and SO in the air flow field in natural air condition. For this task, four various velocity variations were considered, as well as several various thermal variations (temperature inversion, constant temperature and decreasing temperature by the height). From the obtained computational results, it should be noticed that different environmental temperature conditions extremely impact the distribution of pollutants CO and SO in the atmospheric surface layer, so at constant temperature conditions, the species for all velocity variations have nearly identical species profile.

摘要

在本研究中,考虑了在自然大气条件下两种污染物(二氧化硫(SO)和二氧化碳(CO))向大气边界层的运动和排放扩散的数值模拟。为了测试数值算法并选择最佳湍流模型,对测试问题进行了数值求解。将获得的计算数据与测量数据以及其他作者的计算值进行比较,SST k-ω模型显示出与实验数据最接近的值,这是通过修改湍动能的边界条件实现的。所测试的计算算法用于表征埃基巴斯图兹SDPP两座烟囱中两种污染物的排放过程以及自然空气条件下气流场中CO和SO的分布。对于此任务,考虑了四种不同的速度变化以及几种不同的热变化(温度逆温、恒温以及随高度降低的温度)。从获得的计算结果可以看出,不同的环境温度条件对大气表层中污染物CO和SO的分布有极大影响,因此在恒温条件下,所有速度变化的物种具有几乎相同的物种分布。

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