平江浅埋地下储气实验库力学响应数值分析
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TK02;TM619

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国家自然科学基金(51778070);中国电建集团科技计划(GW-KJ-2012-26-02)


Numerical analysis of mechanical response of Pingjiang shallow underground pilot cavern for compressed air storage
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    摘要:

    根据压气储能电站地下储气库内压缩空气压力和温度的变化特点,采用热-力耦合理论研究了平江浅埋地下储气实验库充放气循环作用下实验库各结构层的温度、应力和变形的空间分布和变化过程,探讨了密封层材料特性对实验库受力特性的影响。结果表明:压缩空气与密封层之间的热交换作用将引起密封层和混凝土内衬温度产生较大变化,而围岩温度变化相对较小;充放气过程中,实验库各结构层应力和位移呈现显著性的周期性变化;密封层材料性能差异对密封层、混凝土衬砌和围岩的受力特性有显著影响,推荐平江浅埋地下储气实验库密封层材料采用玻璃钢。

    Abstract:

    According to the variation features of the compressed air pressure and temperature in the underground cavern of a compressed air energy storage plants, pilot cavern located in Pingjiang was investigated to explore the spatial distribution and variation process of temperature, stress and deformation in each structural component during charging and discharging process using thermo-mechanical coupling theory. The influence of the sealing material performance on the mechanical response of the underground cavern was also discussed. The results show that the temperature field in the sealing layer and concrete inner liner varies significantly due to the heat exchange between the compressed air and the cavern wall during charging and discharging process, while the temperature field in the surrounding rock changes slightly. The stress and displacement of the structural layers fluctuate significantly during charging and discharging process. The difference of the sealing material performance can significantly influence the mechanical response of sealing layer, concrete inner layer and surrounding rock. Fiber reinforced plastics was suggested to be the sealing material for Pingjiang shallow pilot cavern.

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蒋中明,黄毓成,刘澜婷,等.平江浅埋地下储气实验库力学响应数值分析[J].水利水电科技进展,2019,39(6):37-43.(JIANG Zhongming, HUANG Yucheng, LIU Lanting, et al. Numerical analysis of mechanical response of Pingjiang shallow underground pilot cavern for compressed air storage[J]. Advances in Science and Technology of Water Resources,2019,39(6):37-43.(in Chinese))

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  • 在线发布日期: 2019-12-24
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