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Functional efficiency assessment of the water curtain system in an underground water-sealed oil storage cavern based on time-series monitoring data

机译:基于时序监测数据的地下水密封储油洞穴水幕系统的功能效率评价

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摘要

This research has analysed the entire construction data monitored from the largest constructed underground water-sealed oil storage cavern in China using time series analyses (auto-correlation and cross-correlation models) to access the functional efficiency of its water curtain system. For large-scale projects, data monitoring is the best method to assess the variation rules of the project. Specifically, a dataset of hydrologic time series were collected first, including the water supply of the water curtain system, the water inflow of the caverns, and the underground water level in different monitoring boreholes. The methods of auto-correlation and cross-correlation were then adapted to process the above three datasets to evaluate the functional efficiency of the water curtain system. It was concluded that setting the water curtain system in a traditional manner in an area with heavy rainfall leads to low-functional efficiency. Finally, the water-sealed efficiency and the optimised setting of a water curtain system were discussed. The results of the study provide new insights into the function of the water curtain system, and could constitute the basis for the optimisation of the water curtain system in an area with heavy rainfall.
机译:本研究分析了使用时间序列分析(自动相关性和互相关模型)在中国的最大建筑地下水封油箱洞穴监测的整个施工数据,以获得其水幕系统的功能效率。对于大型项目,数据监控是评估项目变化规则的最佳方法。具体地,首先收集水文时间序列的数据集,包括水幕系统的供水,洞穴的水流,以及不同监测钻孔的地下水位。然后,自动相关性和互相关方法适于处理上述三个数据集以评估水幕系统的功能效率。得出结论,以传统的方式在大雨的区域中以传统方式设定水幕系统导致低功能效率。最后,讨论了水密封效率和水幕系统的优化设置。该研究的结果为水幕系统的功能提供了新的见解,并且可以构成具有大雨的区域中的水幕系统优化的基础。

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