Prommer H, Barry D A, Davis G B
Faculty of Civil Engineering and Geosciences, Department of Water Management, Delft University of Technology, Delft, The Netherlands.
J Contam Hydrol. 2002 Nov;59(1-2):113-31. doi: 10.1016/s0169-7722(02)00078-5.
Numerical experiments of non-reactive and reactive transport were carried out to quantify the influence of a seasonally varying, transient flow field on transport and natural attenuation at a hydrocarbon-contaminated field site. Different numerical schemes for solving advective transport were compared to assess their capability to model low transversal dispersivities in transient flow fields. For the field site, it is shown that vertical plume spreading is largely inhibited, particularly if sorption is taken into account. For the reactive simulations, a biodegradation reaction module for the geochemical transport model PHT3D was developed. Results of the reactive transport simulations show that under the site-specific conditions the temporal variations in groundwater flow do, to a modest extent, affect average biodegradation rates and average total (dissolved) contaminant mass in the aquifer. The model simulations demonstrate that the seasonal variability in groundwater flow only results in significantly enhanced biodegradation rates when a differential sorption of electron donor (toluene) and electron acceptor (sulfate) is assumed.
开展了非反应性和反应性输运的数值实验,以量化季节性变化的瞬态流场对某烃类污染场地的输运和自然衰减的影响。比较了求解平流输运的不同数值格式,以评估它们在瞬态流场中模拟低横向弥散率的能力。对于该场地,结果表明垂直羽流扩展在很大程度上受到抑制,尤其是考虑吸附作用时。对于反应性模拟,开发了用于地球化学输运模型PHT3D的生物降解反应模块。反应性输运模拟结果表明,在特定场地条件下,地下水流的时间变化在一定程度上会影响含水层中的平均生物降解速率和平均总(溶解)污染物质量。模型模拟表明,只有在假定电子供体(甲苯)和电子受体(硫酸盐)存在差异吸附的情况下,地下水流的季节性变化才会导致生物降解速率显著提高。