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Basic Features of the Crustal Structure in the Lower Yangtze and Its Neighboring Area in the Chinese Mainland: Review of Deep Seismic Sounding Research 被引量:3
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作者 Bai Zhiming Wu Qingju +1 位作者 Xu Tao Wang Xiao 《Earthquake Research in China》 CSCD 2016年第3期298-315,共18页
The Deep Seismic Sounding( DSS) projects carried out from the 1970 s in the lower Yangtze region and its neighboring area were reviewed in this paper,then the basic wave group features of those wide angle reflection /... The Deep Seismic Sounding( DSS) projects carried out from the 1970 s in the lower Yangtze region and its neighboring area were reviewed in this paper,then the basic wave group features of those wide angle reflection / refraction record sections,and of the crustal structure are summarized. It shows that there were in total five clear wave groups on the record sections,which include the first arrival Pg,the reflection P1 from the bottom interface of the upper crust,the reflection P3 from the bottom interface of the middle crust,the strong reflection Pm from the Moho boundary,and the refraction Pn from uppermost mantle. In general,these phases are easily consistently traced and compared,despite some first arrivals being delayed or arriving earlier than normal due to the shallow sedimentary cover or bedrocks. In particular,in the Dabie Mountain region the seismic events of a few gathered shots always have weak reflection energy,are twisted,or exhibit disorganized waveforms, which could be attributed to the disruption variations of reflection depth,the broken Moho,and the discontinuity of the reflection boundary within crust. The regional crustal structures are composed of the upper,middle and lower crust,of which the middle and lower layers can be divided into two weak reflection ones. The crustal thickness of the North China and Yangtze platform are 30km- 36 km,and the Moho exhibits a flat geometry despite some local uplifts. The average pressure velocity in lower crust beneath this two tectonic area is 6. 7 ± 0. 3km / s. Nevertheless,beneath the Dabieshan area the crustal thickness is 32km- 41 km,the Moho bends down sharply andtakes an abrupt 4km- 7km dislocation in the vertical direction. The average pressure velocity in the lower crust beneath the Dabieshan area is 6. 8 ± 0. 2km / s. 展开更多
关键词 deep seismic sounding projects Wave group feature Crustal structure feature Anhui Province and its neighboring area
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Phase unwrapping based on deep learning in light field fringe projection 3D measurement
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作者 ZHU Xinjun ZHAO Haichuan +3 位作者 YUAN Mengkai ZHANG Zhizhi WANG Hongyi SONG Limei 《Optoelectronics Letters》 EI 2023年第9期556-562,共7页
Phase unwrapping is one of the key roles in fringe projection three-dimensional(3D)measurement technology.We propose a new method to achieve phase unwrapping in camera array light filed fringe projection 3D measuremen... Phase unwrapping is one of the key roles in fringe projection three-dimensional(3D)measurement technology.We propose a new method to achieve phase unwrapping in camera array light filed fringe projection 3D measurement based on deep learning.A multi-stream convolutional neural network(CNN)is proposed to learn the mapping relationship between camera array light filed wrapped phases and fringe orders of the expected central view,and is used to predict the fringe order to achieve the phase unwrapping.Experiments are performed on the light field fringe projection data generated by the simulated camera array fringe projection measurement system in Blender and by the experimental 3×3 camera array light field fringe projection system.The performance of the proposed network with light field wrapped phases using multiple directions as network input data is studied,and the advantages of phase unwrapping based on deep learning in light filed fringe projection are demonstrated. 展开更多
关键词 Phase unwrapping based on deep learning in light field fringe projection 3D measurement
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Advances in TK1 ultra-deep drilling technology 被引量:1
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作者 Qinghua WANG Zhixiong XU +1 位作者 Haijun YANG Chunsheng WANG 《Frontiers of Engineering Management》 CSCD 2024年第4期772-776,共5页
1 Project overview The TK110,000-meter Deep-earth Scientific Exploration Project represents a significant milestone in the pursuit of exploring the Earth’s deep layers.This crucial initiative aims at overcoming techn... 1 Project overview The TK110,000-meter Deep-earth Scientific Exploration Project represents a significant milestone in the pursuit of exploring the Earth’s deep layers.This crucial initiative aims at overcoming technological challenges and achieving a high level of self-reliance and advancement in deepearth science and technology.This project exemplifies the implementation of national strategies to enhance core functions and capabilities.The TK1 well is China’s first 10,000-meter scientific exploration well located in the hinterland of the Taklamakan Desert in Xinjiang. 展开更多
关键词 PETROCHINA Tarim Basin 10 000-meter deep earth project TK1 well
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Baise Mining Group's Annual 1-million-ton Deep Aluminum Processing Project Commenced
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《China Nonferrous Metals Monthly》 2018年第2期5-6,共2页
The Baise Municipal Government held a commencement ceremony for Baise Mining Group’s1-million-ton deep aluminum processing project('Project')at its base in the Poverty Alleviation Industrial Park in Pingguo C... The Baise Municipal Government held a commencement ceremony for Baise Mining Group’s1-million-ton deep aluminum processing project('Project')at its base in the Poverty Alleviation Industrial Park in Pingguo County.It’s learnt that the Project includes an annual450,000-ton medium and thick plates and plate belts for transportation project,an annual 160。 展开更多
关键词 Project Baise Mining Group’s Annual 1-million-ton deep Aluminum Processing Project Commenced
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