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首页> 外文期刊>Ground Water Monitoring & Remediation >Three-Dimensional Numerical Modeling of Steam Override Observed at a Full-Scale Remediation of an Unconfined Aquifer
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Three-Dimensional Numerical Modeling of Steam Override Observed at a Full-Scale Remediation of an Unconfined Aquifer

机译:在无限制含水层的全尺寸修复中观测到的蒸汽超驰的三维数值模拟

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摘要

Steam injected below the water table tends to move upward because of buoyancy. This limits the horizontal steam zone development, which determines the optimal spacing between injection wells. In this study, observations indicating steam override at a full-scale remediation of an unconfined aquifer are analyzed by numerical modeling using the code T2VOC. A simplified three-dimensional (3D) numerical model is set up, which qualitatively shows the same mechanisms as observed at the site. By means of the model, it is found that it will be possible to achieve a larger horizontal extent of the steam zone in a layered geology compared to the homogeneous case. In the homogeneous case, the steam injection rate increases dramatically when the injection pressure is increased, which is necessary to achieve a larger horizontal development. The development of the steam zone under unconfined conditions is found to be a complex function of the geologic layering, the water table at steady-state extraction, and the injection/extraction system. Because of this complexity, it will be difficult to predict steam behavior without site-specific 3D numerical modeling.
机译:由于浮力,注入到地下水位以下的蒸汽倾向于向上移动。这限制了水平蒸汽带的发展,而水平蒸汽带决定了注入井之间的最佳间距。在这项研究中,通过使用代码T2VOC进行数值模拟,分析了表明在无限制含水层的全面修复中超控蒸汽的观测结果。建立了简化的三维(3D)数值模型,定性显示了与现场观察到的相同的机理。通过该模型,发现与同质情况相比,在分层地质条件下可以实现更大的蒸汽带水平范围。在均匀情况下,当喷射压力增加时,蒸汽喷射速率会急剧增加,这对于实现更大的水平展开是必要的。在无限制条件下,蒸汽带的发展被发现是地质分层,稳态抽取水位和注入/抽取系统的复杂功能。由于这种复杂性,如果没有特定地点的3D数值模型,将很难预测蒸汽行为。

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