Fingering Instabilities of Multi-Phase Multi-Component Flows in Porous Media
多孔介质中多相多组分流的指进不稳定性
基本信息
- 批准号:RGPIN-2014-04875
- 负责人:
- 金额:$ 1.82万
- 依托单位:
- 依托单位国家:加拿大
- 项目类别:Discovery Grants Program - Individual
- 财政年份:2018
- 资助国家:加拿大
- 起止时间:2018-01-01 至 2019-12-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
This research is concerned with the modelling of flows through porous media that involve many fluids that can be in liquid or gas form and that interact with the surrounding solid. Such flows can lead to the development of uneven fronts between the different fluids and result in the growth of complex finger-shaped structures referred to as fingering instabilities. These instabilities are relevant in a wide spectrum of applications that include enhanced and unconventional oil recovery, soil remediation and CO2 sequestration as they affect the flow volumetric sweep and the fluids' mixing efficiency. In particular the degree of success of many processes used for enhanced oil recovery as well as heavy oil recovery depends on the nature of contact between the resident oil and the fluids used to displace them. In terms of groundwater decontamination, many aquifers are endangered by a variety of pollutants such as hydrocarbons and wastewater from different sources. Typically these contaminants can develop fingering instabilities as they migrate through the water zone. Some of the remediation techniques of the polluted water table are based on hydraulic processes that involve pumping fluids into the table, chemical processes that use pollutants degradation through the injection of reactive fluids or thermal processes that use steam to vent volatile substances. All these decontamination processes can result in fingering instabilities. Finally, in the process of CO2 sequestration that is hoped to help mitigate climate changes, the differences in the viscosity and density of the carbon dioxide as it dissolves into the brine result in fingering instabilities that will ultimately affect the amount of CO2 that is stored in the deep underground. In all these applications, different fluids are present either in liquid or gas phase and as the flow develops, one can witness a variety of interactions between the fluids which consist of many components and the porous medium as well as between the different fluids through mass exchanges and phase changes. **Understanding the development of the fingering instabilities for such multi-phase, multi-component flows is crucial for determining the efficiency of processes such as the ones discussed earlier and to optimize them in order to achieve the best outcome. Such an understanding can be reached through a combination of laboratory and field experiments and numerical modelling via computer simulations. The latter approach that we propose to adopt in this study offers the advantage of examining a variety of flow conditions and scenarios that allow exploring situations that are sometimes difficult or too costly to test through experimental measurements. The objective of the proposed research is to develop software capable of analyzing such complex flows and that accounts for the many and intricate interactions between the fluids as they go through phase changes or interact with the solid matrix of the porous medium. Graduate students will be trained in the design and construction of such software which will involve many tasks that require expertise in a variety of disciplines that include engineering, physics, mathematics and computer programming. Furthermore, due to the inherent complexity of the analyzed flows, it is proposed to carry out the study in many stages of increasing complexity and sophistication. In particular, initial studies will involve either multi-component single-phase systems, multi-phase single-component systems or single-component flows that involve phase changes. Ultimately, the developed software should allow the modeling of flow displacements that involve an arbitrary number of components and phases with intricate interactions between the different liquid, gas and solid phases.
这项研究涉及多孔介质的流动建模,其中涉及许多液体或气体形式的流体,并与周围的固体相互作用。这种流动会导致不同流体之间形成不均匀的前沿,并导致复杂的指状结构(称为指状不稳定性)的生长。这些不稳定性与多种应用相关,包括提高和非常规石油采收率、土壤修复和二氧化碳封存,因为它们影响流量体积波及和流体的混合效率。特别是,用于提高石油采收率以及重油采收率的许多方法的成功程度取决于驻留油和用于驱替它们的流体之间的接触性质。在地下水净化方面,许多含水层受到碳氢化合物和不同来源废水等多种污染物的威胁。通常,这些污染物在迁移通过水区时会产生指进不稳定。一些污染地下水位的修复技术基于涉及将流体泵入地下水位的水力过程、通过注入反应性流体来降解污染物的化学过程或使用蒸汽排出挥发性物质的热过程。所有这些净化过程都会导致指法不稳定。最后,在希望有助于缓解气候变化的二氧化碳封存过程中,二氧化碳溶解到盐水中时的粘度和密度差异会导致指尖不稳定,最终影响储存在盐水中的二氧化碳量。地下深处。在所有这些应用中,不同的流体以液相或气相存在,并且随着流动的发展,人们可以看到由多种成分组成的流体与多孔介质之间以及不同流体之间通过质量交换发生的各种相互作用。和相变。 **了解这种多相、多组分流的指状不稳定性的发展对于确定过程(例如前面讨论的过程)的效率并优化它们以获得最佳结果至关重要。这种理解可以通过实验室和现场实验以及计算机模拟数值建模的结合来实现。我们建议在本研究中采用的后一种方法具有检查各种流动条件和场景的优点,可以探索有时很难或成本太高而无法通过实验测量进行测试的情况。拟议研究的目标是开发能够分析此类复杂流动的软件,并解释流体在经历相变或与多孔介质的固体基质相互作用时之间的许多复杂的相互作用。研究生将接受此类软件设计和构建的培训,其中涉及许多任务,需要具备工程、物理、数学和计算机编程等多种学科的专业知识。此外,由于所分析的流程固有的复杂性,建议分多个阶段进行研究,以增加复杂性和复杂性。特别是,初步研究将涉及多组分单相系统、多相单组分系统或涉及相变的单组分流。最终,开发的软件应该允许对涉及任意数量的组分和相以及不同液相、气相和固相之间复杂的相互作用的流动位移进行建模。
项目成果
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Azaiez, Jalel其他文献
Azaiez, Jalel的其他文献
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{{ truncateString('Azaiez, Jalel', 18)}}的其他基金
Modelling Transport Phenomena of Nanoparticles in Drug Delivery Therapy
药物输送治疗中纳米粒子的运输现象建模
- 批准号:
RGPIN-2020-04536 - 财政年份:2022
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Modelling Transport Phenomena of Nanoparticles in Drug Delivery Therapy
药物输送治疗中纳米粒子的运输现象建模
- 批准号:
RGPIN-2020-04536 - 财政年份:2022
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Modelling Transport Phenomena of Nanoparticles in Drug Delivery Therapy
药物输送治疗中纳米粒子的运输现象建模
- 批准号:
RGPIN-2020-04536 - 财政年份:2021
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Modelling Transport Phenomena of Nanoparticles in Drug Delivery Therapy
药物输送治疗中纳米粒子的运输现象建模
- 批准号:
RGPIN-2020-04536 - 财政年份:2021
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Modelling Transport Phenomena of Nanoparticles in Drug Delivery Therapy
药物输送治疗中纳米粒子的运输现象建模
- 批准号:
RGPIN-2020-04536 - 财政年份:2020
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Modelling Transport Phenomena of Nanoparticles in Drug Delivery Therapy
药物输送治疗中纳米粒子的运输现象建模
- 批准号:
RGPIN-2020-04536 - 财政年份:2020
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Fingering Instabilities of Multi-Phase Multi-Component Flows in Porous Media
多孔介质中多相多组分流的指进不稳定性
- 批准号:
RGPIN-2014-04875 - 财政年份:2017
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Fingering Instabilities of Multi-Phase Multi-Component Flows in Porous Media
多孔介质中多相多组分流的指进不稳定性
- 批准号:
RGPIN-2014-04875 - 财政年份:2017
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Fingering Instabilities of Multi-Phase Multi-Component Flows in Porous Media
多孔介质中多相多组分流的指进不稳定性
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RGPIN-2014-04875 - 财政年份:2016
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$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
Fingering Instabilities of Multi-Phase Multi-Component Flows in Porous Media
多孔介质中多相多组分流的指进不稳定性
- 批准号:
RGPIN-2014-04875 - 财政年份:2016
- 资助金额:
$ 1.82万 - 项目类别:
Discovery Grants Program - Individual
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