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Geomechanical investigation of roof failure of China's first gas storage salt cavern

机译:中国第一天然气储盐洞屋顶衰竭的地质力学调查

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JK-A cavern is the first operating cavern of Jintan underground gas storage, which is also the first operating salt cavern gas storage in China. In 2015, the sonar survey carried out under working conditions indicated that a massive roof collapse of the JK-A cavern had taken place. To prevent similar accidents from happening again, finding the causes and the collapse time of JK-A cavern would be valuable. By using the target salt formation information, rock properties, and monitored gas pressure, a 3D geomechanical model of JK-A cavern has been built. The responses of the rock mass around JK-A cavern under leaching, sealing tests, debrining, and gas injection/delivery have been investigated. A safety evaluation system consisting of cavern volume shrinkage, dilatancy safety factor, displacement, vertical stress, and equivalent strain is proposed to find the likely collapse time and the reason for the JK-A cavern roof collapse. Results show that there are two main causes for the cavern roof failure. (1) A large-span flat roof, detrimental for bearing loads. Once local damage takes place, massive collapse may be triggered by the self-weight of the loosened rock. (2) The decrease speed of the internal gas pressure is too fast. The loads applied to the cavern roof cannot be transferred in a timely fashion, which causes a stress concentration zone to form, and local damage develops. The roof collapse of JK-A cavern took place 1.3?years after its gas injection/delivery started. Numerical analysis results show that dilatancy safety factor and vertical stress have high accuracy and sensitivity in the prediction of the cavern roof collapse. There is a high potential for a roof collapse of JK-A cavern to happen again. We propose that the gas pressure and pressure decrease rate are to be controlled strictly in the later operating period to prevent any collapses in the future.
机译:JK-A Cavern是金塔地下储气存储的第一个运行洞穴,这也是中国第一个经营盐洞穴储存。 2015年,在工作条件下进行的声纳调查表明,JK-A洞穴的巨大屋顶坍塌发生。为了防止类似事故再次发生,发现JK-A洞穴的原因和崩溃时间将是有价值的。通过使用目标盐形成信息,岩石性能和监测的气体压力,建立了JK-A洞穴的3D地质力学模型。已经研究了JK-A洞穴周围的岩体的响应,在浸出,密封试验,脱落和气体注射/递送下进行了研究。提出了一种由洞穴体积收缩,膨胀安全系数,位移,垂直应力和等同应变组成的安全评估系统,以找到可能的崩溃时间和JK-A洞穴屋顶坍塌的原因。结果表明,洞穴屋顶故障有两种主要原因。 (1)大跨度平顶屋顶,对轴承负荷有害。一旦发生局部损害,可能会被松开岩石的自重触发大规模的崩溃。 (2)内部气体压力的降低速度太快。施加到洞穴屋顶的载荷不能及时地转移,这导致应力集中区形成,并且局部损害发展。 JK-A洞穴的屋顶崩溃了1.3?煤气注射/交付开始后几年。数值分析结果表明,膨胀安全系数和垂直应力在洞穴屋顶塌陷的预测中具有高精度和敏感性。 JK-A Cavern的屋顶坍塌有很大的潜力再次发生。我们建议在后期运行期间严格控制气体压力和压力降低率,以防止将来任何折叠。

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