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Agent-based modelling of interactions between air pollutants and greenery using a case study of Yerevan, Armenia

机译:基于代理的空气污染物与绿色植物之间相互作用的建模,以亚美尼亚埃里温为例

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摘要

Urban greenery such as trees can effectively reduce air pollution in a natural and eco-friendly way. However, how to spatially locate and arrange greenery in an optimal way remains as a challenging task. We developed an agent-based model of air pollution dynamics to support the optimal allocation and configuration of tree clusters in a city. The Pareto optimal solutions for greenery in the city were computed using the suggested heuristic optimisation algorithm, considering the complex absorptive-diffusive interactions between agent-trees (tree clusters) and air pollutants produced by agent-enterprises (factories) and agent-vehicles (car clusters) located in the city. We applied and tested the model with empirical data in Yerevan, Armenia, and successfully found the optimal strategy under the budget constraint: planting various types of trees around kindergartens and emission sources.
机译:诸如树木之类的城市绿化可以以自然和环保的方式有效减少空气污染。然而,如何以最佳方式在空间上定位和布置绿化仍然是一项艰巨的任务。我们开发了一种基于代理的空气污染动态模型,以支持城市中树丛的最佳分配和配置。考虑到代理商树(树丛)与代理商企业(工厂)和代理商车辆(汽车)产生的空气污染物之间复杂的吸收-扩散相互作用,使用建议的启发式优化算法计算了城市的帕累托最优解。集群)位于城市中。我们在亚美尼亚埃里温(Yerevan)运用经验数据应用并测试了该模型,并成功地在预算约束下找到了最佳策略:在幼儿园和排放源周围种植各种类型的树木。

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