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DOI10.1029/2021WR030990
An adaptive hybrid vertical equilibrium/full dimensional model for compositional multiphase flow
Beatrix Becker; Bo Guo; Ivan Buntic; Bernd Flemisch; Rainer Helmig
2022-01-05
发表期刊Water Resources Research
出版年2022
英文摘要

Efficient compositional models are required to simulate underground gas storage in porous formations where, e.g., gas quality (such as purity) and loss of gas due to dissolution is of interest. We first extend the concept of vertical equilibrium (VE) to compositional flow, and derive a compositional VE model by vertical integration. Second, we present a hybrid model that couples the efficient compositional VE model to a compositional full dimensional model. Subdomains where the compositional VE model is valid are identified during simulation based on a VE criterion which compares the vertical profiles of relative permeability at equilibrium to the ones simulated by the full dimensional model. We demonstrate the applicability of the hybrid model by simulating hydrogen storage in a radially-symmetric, heterogeneous porous aquifer. The hybrid model shows excellent adaptivity over space and time for different permeability values in the heterogeneous region, and compares well to the full dimensional model while being computationally efficient, resulting in a runtime of roughly one third of the full dimensional model. Based on the results, we assume that for larger simulation scales the efficiency of this new model will increase even more.

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条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/345185
专题资源环境科学
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Beatrix Becker,Bo Guo,Ivan Buntic,et al. An adaptive hybrid vertical equilibrium/full dimensional model for compositional multiphase flow[J]. Water Resources Research,2022.
APA Beatrix Becker,Bo Guo,Ivan Buntic,Bernd Flemisch,&Rainer Helmig.(2022).An adaptive hybrid vertical equilibrium/full dimensional model for compositional multiphase flow.Water Resources Research.
MLA Beatrix Becker,et al."An adaptive hybrid vertical equilibrium/full dimensional model for compositional multiphase flow".Water Resources Research (2022).
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