![]() ![]() The results show that (1) when using double-line construction, the maximum surface settlement under different soil conditions is located 11–15 m from the centerline of the soil above the pipeline, the minimum settlement location is inside the isolation pile, and with the increase in jacking distance, the settlement at the same section of the surface will gradually decrease and finally produce a small uplift. ![]() Finally, the best soil conditions applicable to single-chamber double-line large diameter pipe jacking construction were obtained through comparative analysis. The control variable method was used in the analysis of the surface soil deformation law to analyze the effect of different soil parameters and pipe jacking depths on surface soil deformation. The results of the two methods were compared with the construction monitoring results, and it was found that the finite element simulation results were closer to the actual results. Meanwhile, by modeling in ABAQUS, the jacking process of a single-chamber double-line large diameter pipeline under different soil conditions was simulated, and the ground deformation data under the different simulated working conditions were obtained. In this paper, the soil settlement under different jacking depths was calculated by using the modified Peck’s formula. ![]() ![]() This article is based on the relocation project of the 330 kV overhead line in Xi’an, China. ![]()
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