室内二维弥散试验拖尾现象研究
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TU441

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国家自然科学基金资助项目(51778210)


Study on the Trailing Phenomenon of Indoor Two-dimensional Dispersion Test
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    摘要:

    针对传统二维弥散试验理论模型解析解不能描述拖尾现象的问题,建立了指数衰减模型来模拟二维弥散试验中C-t曲线浓度下降段并描述拖尾现象,通过室内二维弥散试验来进行验证,发现模拟效果较好,通过改变水力梯度和浓度来研究指数衰减模型相关参数α、β的意义及变化规律,研究结果表明α为污染物浓度随时间变化的速率,β为投源孔初始浓度与测孔峰值浓度的比值。污染物浓度越大,α值越小,污染物衰减速度越慢,拖尾时间越长;水力梯度越大,α值越大,污染物衰减速度越快,拖尾时间越短,而β值与流速无关;距离投源孔越远,α值越小,污染物衰减速度越慢,拖尾时间越长,而β值越来越大,C-t曲线浓度峰值越来越小。

    Abstract:

    The analytical solution of the traditional two-dimensional dispersion test theoretical model cannot describe the tailing phenomenon. Therefore, this paper established an exponential decay model to simulate the C-t curve concentration drop in the two-dimensional dispersion test and verified it by the indoor two-dimensional dispersion test. It is found that the simulation effect is better. By changing the hydraulic gradient and concentration, the significance and change rules of the relevant parameters α, β of the exponential decay model are studied. The results show that α is the rate of change of pollutant concentration with time, and β is the ratio of the initial concentration of the source hole to the peak concentration of the measured hole. The greater the pollutant concentration, the smaller the α value, the slower the decay rate of pollutants, the longer the tail time; the greater the hydraulic gradient, the larger the α value, the faster the pollutant attenuation rate, and the shorter the tailing time, and the β value is independent of the flow rate; the farther away from the source hole, the smaller the α value, the pollutant attenuation, the slower the speed, the longer the tailing time, while the β value becomes larger and larger, and the peak concentration of the C-t curve becomes smaller and smaller.

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陈亮,张赏,余旺,顾家慧.室内二维弥散试验拖尾现象研究[J].河北工程大学自然版,2020,37(3):1-8

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  • 收稿日期:2020-07-03
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  • 在线发布日期: 2020-10-17
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