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Design and development of the deep-rock in-situ condition-preserved coring calibration platform 被引量:1

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摘要 To systematically validate and calibrate the theory and technology of the deep in-situ conditionpreserved coring, the in-situ conditions at different depths should be simulated, and the full-size coring tests should be carried out in this simulated environment. Therefore, a deep-rock in-situ conditionpreserved coring calibration platform was designed and developed. The self-tightening sealing structure and the quick-disassembly structure were designed on the basis of an innovative segmented nonuniformdiameter structure, which was a breakthrough from the traditional high-pressure vessel frame and was verified by finite element simulation and actual testing under extreme working conditions, respectively.To simulate the actual deep in-situ environment with a temperature of 150℃ and pressure of 140 MPa for a large Φ450 mm×H1400 mm core, temperature and pressure control systems were designed by coupling, and a pre-embedded high-pressure-resistant temperature sensor was designed. Finally, highprecision assembly automation, complex movement coordination of the coring device with the platform,and rotary dynamic sealing were achieved by utilizing the combination of adaptive cabin body servo control and an adaptive mechanical structure in a limited space, laying a solid foundation for the calibration of in-situ condition-preserved coring.
出处 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第11期1377-1395,共19页 矿业科学技术学报(英文版)
基金 supported by National Natural Science Foundation of China(Nos.51827901 and 52225403) the Shenzhen National Science Fund for Distinguished Young Scholars(RCJC20210706091948015).
作者简介 Corresponding author:Zetian Zhang.E-mail address:zhangzetian@scu.edu.cn.
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