在增强地热系统中对CO2-H2O混合工作流体进行多物理合数值模拟
Yafei Xue1, Lijun Zhe2, Shuya Chen1
1PetroChina Shenzhen New Energy Research Institute, Shenzhen 518052, China.
ACS omega
|November 17, 2025
概括
本研究模拟了使用混合工作介质的增强地热系统 (EGS). 在地热碳项目中,优化注入温度和透性是有效储存二氧化碳和提取能源的关键.
科学领域:
- 地热能源工程 地热能源工程
- 碳封存技术的技术
- 数字模拟 数字模拟
背景情况:
- 增强地热系统 (EGS) 为可持续能源和碳储存提供了潜力.
- 包括CO2在内的混合工作介质正在探索,以提高EGS的性能.
- 精确的热水 (TH) 建模对于理解复杂的EGS过程至关重要.
研究的目的:
- 开发和验证混合工作介质-EGS.数值解决器.
- 调查运行参数对二氧化碳储存和能源提取的影响.
- 为优化地热碳利用项目的指导提供指导.
主要方法:
- 开发一个合的热水 (TH) 溶解器.
- 使用基准测试和分析解决方案验证解决方案.
- 对注入压力,温度和透性等关键参数的灵敏度分析.
主要成果:
- 增加水相摩尔分数会减少二氧化碳的储存,并影响系统的寿命/效率.
- 更高的注入压力可以提高二氧化碳的保留和功率,但会增加热量损失.
- 升高的注入温度和矩阵透性提高了生产率和恢复率.
- 控制断裂透性减弱可以延长系统的使用寿命.
结论:
- 数字模拟为优化碳捕获和利用的EGS性能提供了关键的见解.
- 参数调节,特别是注入温度和透性,对于最大限度地提高二氧化碳储存效率和能源输出至关重要.
- 该研究证实了水库裂变的扩大,并强调了管理裂变透性的重要性,以确保系统的长期可行性.
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