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The Effect of Tree Planting within Roadside Green Space on Dispersion of CO2 from Transportation

机译:路边绿地植树对交通运输中CO 2 扩散的影响

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Transportation has become one of the most significant contributors to CO2 in the world because of its fuel usage. Trees are planted on the roadside to reduce levels of CO2 in the air because trees have the ability to absorb CO2 to be used in the photosynthesis process. This ability will be maximized if the dispersion of CO2 is concentrated around the tree. However, there are some differing results from previous studies regarding this. Some research results have found trees can increase CO2 concentration and vice versa. Accordingly, this study aims to evaluate the effect of tree planting on the roadside in dispersing CO2 using a real 3D environment. The methods used in this research are CO2 emission analysis to obtain the amount of CO2. Then, Computational Fluid Dynamics (CFD) analysis is used to simulate the dispersion of CO2 in the study area both without trees and with trees. However, due to the mixing of air and CO2, this simulation uses a scalar mixing analysis. Some conditions are considered, such as the characteristics of buildings, the characteristics of trees, and environmental conditions. The result indicates that trees can decrease the velocity and increase the concentration of CO2 on the roadside but decrease CO2 concentration on the road. Tree planting can decrease the velocity by 4.3% in the value range 0.9-1 m/s. This condition increases CO2 concentration on the roadside. Trees can increase CO2 by 25% on the right of a roadside and increase CO2 concentration by 10% on the left side.
机译:由于其燃料消耗,运输已成为世界上最重要的CO2贡献者之一。因为树木具有吸收光合作用中所用的二氧化碳的能力,所以将树木种植在路边可以减少空气中的二氧化碳含量。如果CO2的分散集中在树的周围,则该功能将最大化。但是,与先前的研究相比,有一些不同的结果。一些研究结果发现树木可以增加CO2浓度,反之亦然。因此,本研究旨在评估使用真实的3D环境在路边植树对CO2扩散的影响。本研究中使用的方法是通过二氧化碳排放量分析来获得二氧化碳的量。然后,使用计算流体动力学(CFD)分析来模拟研究区域内无树木和有树木的情况下CO2的扩散。但是,由于空气和二氧化碳的混合,此模拟使用标量混合分析。考虑了一些条件,例如建筑物的特征,树木的特征和环境条件。结果表明,树木可以降低速度,增加路边的二氧化碳浓度,但降低道路上的二氧化碳浓度。在0.9-1 m / s的值范围内,植树可以使速度降低4.3%。这种情况会增加路边的二氧化碳浓度。树木在路边的右侧可使CO2浓度增加25%,在左侧的浓度可使CO2浓度增加10%。

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