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物探与化探  2021, Vol. 45 Issue (6): 1617-1624    DOI: 10.11720/wtyht.2021.1303
  《重、磁方法理论及应用研究》专栏 本期目录 | 过刊浏览 | 高级检索 |
唐昭陵韦贵妃墓综合地球物理探测研究
史朝洋1(), 高维强1, 张利明1, 张林1, 冯旭亮2, 何滔3, 郑有伟3
1.陕西省矿产地质调查中心,陕西 西安 710068
2.西安石油大学 地球科学与工程学院,陕西 西安 710065
3.内蒙古科技大学 矿业与煤炭学院,内蒙古 包头 014010
Integrated geophysical exploration of the Wei concubine in the Tang-dynasty Zhao Mausoleum
SHI Zhao-Yang1(), GAO Wei-Qiang1, ZHANG Li-Ming1, ZHANG Lin1, FENG Xu-Liang2, HE Tao3, ZHENG You-Wei3
1. Shaanxi Mineral Geology Survey Center, Xi’an 710068,China
2. School of Earth Sciences and Engineering, Xi’an Shiyou University, Xi’an 710065, China
3. School of Mining and Coal, Inner Mongolia University of Science and Technology,Baotou 014010,China
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摘要 

韦贵妃墓是唐昭陵众多陪葬墓中距离主陵最近、形制级别最高的陪葬墓,也是唯一一座已经发掘清理的唐代“因山为陵”的墓葬,是研究昭陵形制的直接资料。本次在韦贵妃墓开展无人机激光雷达测绘、地面高精度重磁测量、高密度电法测量、地质雷达探测和土壤氡气测量等工作,旨在验证方法有效性,总结技术要点,为昭陵地宫探测积累技术资料和经验。韦贵妃墓对原始地层的扰动和破坏,形成了明显的物性差异和特殊工程地质结构;本次利用地面高精度重磁测量结合土壤测氡,较为有效地圈定了地下墓室平面位置,高密度电法准确圈定了韦贵妃墓地下空间位置,探地雷达清晰地探测到了韦贵妃墓的精细结构,分辨率达到亚米级,这些成果为下一步地球物理探测昭陵地宫提供了依据。

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史朝洋
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何滔
郑有伟
关键词 唐昭陵因山为陵综合地球物理探测地质调查工程    
Abstract

Tomb of Wei Concubine is the nearest to Zhao mausoleum and the highest level in all the Tomb in Zhao Mausoleum,as also, it is the only construction tomb in Mountain of the Tang Dynasty that has been compouded,so,it is improtant to research and protect Tang-dynasty mausoleum.We survey the tomb of the Wei concubine with uav lidar survey, ground high-precision gravity and magnetic survey, high-density electrical survey, GPR and soil radon gas survey for evaluating the results. Ground high precision gravity and magnetic survey combined with soil radon measurement can effectively delineate the plane position of underground place. The high density electric method accurately delineates the space position under ground. The GPR has clearly detected the fine structure of the tomb with a resolution of up to sub-meter level, These resoults provide valuable information for exploration of Zhao Mausoleum’s underground palace in the future.

Key wordsthe Tang-dynasty Zhao Mausoleum    construction the Mausoleum in Mountain    integrated geophysical prospecting technique    geological survey engineering
收稿日期: 2021-02-09      修回日期: 2021-05-19      出版日期: 2021-12-20
ZTFLH:  P631  
基金资助:陕西省公益性地质调查项目“唐昭陵地下遗址精细探测与虚拟景观再现示范工程”(201920)
作者简介: 史朝洋(1983-),男,主要从事区域地球物理调查与电磁法深部探测工作。Email: 569364196@qq.com
引用本文:   
史朝洋, 高维强, 张利明, 张林, 冯旭亮, 何滔, 郑有伟. 唐昭陵韦贵妃墓综合地球物理探测研究[J]. 物探与化探, 2021, 45(6): 1617-1624.
SHI Zhao-Yang, GAO Wei-Qiang, ZHANG Li-Ming, ZHANG Lin, FENG Xu-Liang, HE Tao, ZHENG You-Wei. Integrated geophysical exploration of the Wei concubine in the Tang-dynasty Zhao Mausoleum. Geophysical and Geochemical Exploration, 2021, 45(6): 1617-1624.
链接本文:  
https://www.wutanyuhuatan.com/CN/10.11720/wtyht.2021.1303      或      https://www.wutanyuhuatan.com/CN/Y2021/V45/I6/1617
Fig.1  唐昭陵主陵遗址分布
Fig.2  韦贵妃墓形制与结构
Fig.3  综合地球物理勘探工作布置
Fig.4  重磁实测异常曲线
Fig.5  重磁异常推断解释
Fig.6  ZP10土壤氡浓度曲线
Fig.7  ZP20土壤氡浓度曲线
Fig.8  GMD10电阻率反演断面解释推断
Fig.9  ZP10剖面地质雷达解释推断
Fig.10  ZP10剖面地质雷达瞬时振幅解释推断
[1] 陕西省考古研究院, 昭陵博物馆. 唐昭陵韦贵妃墓发掘报告[M]. 北京: 科学出版社, 2017.
[1] Shaanxi Institute of Archaeology, Zhaoling Museum. Tomb of the Wei Concubine in the Tang-danasty Zhao mausoleum compound [M]. Beijing: Science Press, 2017.
[2] 沈睿文. 唐帝陵的布局:空间与秩序[M]. 北京: 北京大学出版社, 2009.
[2] Shen R W. The arrangement of Tang Mausoleum: Space and order [M]. Beijing: Peking University Press, 2009.
[3] 杨洪冰, 贾嫚. 唐墓壁画中的文化意蕴——以唐韦贵妃墓啸伎图为中心[J]. 南京艺术学院学报:美术与设计, 2017, 2:58-63.
[3] Yang H B, Jia M. The cultural implication in the fresco of Tang mausoleum — the center is the drama of Tomb of the Wei Concubine in the Tang-danasty[J]. Journal of Nanjing University of the Arts:Fine Arts and Design, 2017, 2:58-63.
[4] 张胜业, 潘玉玲. 应用地球物理学原理[M]. 武汉: 中国地质大学出版社, 2004.
[4] Zhang S Y, Pan Y L. The principles of apply geophysics [M]. Wuhan: China University of Geosciences Press, 2004.
[5] 蒋宏耀, 张立敏. 考古地球物理学[M]. 北京: 科学出版社, 2000.
[5] Jiang H Y, Zhang L M. Archaeological geophysics [M]. Beijing: Science Press, 2000.
[6] 张寅生. 物探在考古勘探中的应用初探[J]. 物探与化探, 1990, 14(6):444-451.
[6] Zhang Y S. A preliminary study on the application of geophysical exploration in archaeology[J]. Geophysical and Geochemical Exploration, 1990, 14(6):444-451.
[7] 钟世航. 地球物理技术在我国考古和文物保护工作中的应用[J]. 地球物理学进展, 2004, 34(5):635-643.
[7] Zhong S H. Application of geophysical technology in Archaeological and cultural Relic protection in China[J]. Progress in Geophysics, 2004, 34(5):635-643.
[8] 高立兵, 王斌, 夏明军. GPR技术在考古勘探中的应用[J]. 地球物理学进展, 2000, 15(1):61-69.
[8] Gao L B, Wang B, Xia M J. Application of GPR technology in archaeological exploration[J]. Progress in Geophysics, 2000, 15(1):61-69.
[9] 彭格林, 杨宇仁, 余仁富, 等. 物化探方法对古墓完整性的研究[J]. 物探与化探, 2000, 24(3):233-239.
[9] Peng G L, Yang Y R, Yu R F, et al. The study of the integrity of ancient tombs by geophysical and geochemical exploration[J]. Geophysical and Geochemical Exploration, 2000, 24(3):233-239.
[10] 刘士毅, 袁炳强, 吕国印, 等. 综合地球物理方法在探测秦始皇帝陵中的应用[J]. 工程地球物理学报, 2004, 1(3):213-219.
[10] Liu S Y, Yuan B Q, Lyu G Y, et al. Research on the Integrity of ancient tombs by geophysical and geochemical exploration application of integrated geophysical methods in the exploration of emperor Qin Shi Huang’s mausoleum[J]. Journal of Engineering Geophysics, 2004, 1(3):213-219.
[11] 袁炳强, 杨明生, 刘士毅, 等. 高精度重力测量秦始皇帝陵地宫[J]. 地球科学:中国地质大学学报, 2005, 30(4):498-502.
[11] Yuan B Q, Yang M S, Liu S Y, et al. High precision gravity measurement of the underground palace of emperor Qin Shihuang’s mausoleum[J]. The Geoscience:Journal of China University of Geosciences, 2005, 30(4):498-502.
[12] 周小虎, 谭克龙, 万余庆, 等. 现代遥感技术在秦始皇陵考古研究中的应用[J]. 现代地质, 2007, 21(1):157-162.
[12] Zhou X H, Tan K L, Wan Y Q, et al. Application of remote sensing technology in archaeological research of Qin Shihuang’s mausoleum[J]. Modern Geology, 2007, 21(1):157-162.
[13] 孙萍萍, 余常华, 田中英, 等. 关中盆地城市群地下文物遗迹精准探测——以茂陵为例[J]. 西北地质, 2019, 52(2):72-82.
[13] Sun P P, Yu C H, Tian Z Y, et al. Accurate detection of underground cultural and historic in Guanzhong basin:Example from the Maoling mausoleum[J]. Northwestern Geology, 2019, 52(2):72-82.
[14] 沈鸿雁, 袁炳强, 肖钟祥, 等. 晋阳古城遗址考古地球物理特征[J]. 地球物理学进展, 2008, 23(4):1291-1298.
[14] Shen H Y, Yuan B Q, Xiao Z X, et al. The geophysical characteristics of Jinyang ancient city with the archaeology works[J]. Progress in Geophysics, 2008, 23(4):1291-1298.
[15] 董浩斌, 王传雷. 高密度电法的发展与应用[J]. 地学前沿, 2003, 10(1):171-176.
[15] Dong H B, Wang C L. Development and application of high density electrical method[J]. Geoscience Frontier, 2003, 10(1):171-176.
[16] 苏勇军, 王绪本, 罗建群. 高密度电阻率法在三星堆壕沟考古勘探中应用研究[J]. 地球物理学进展, 2007, 22(1):268-272.
[16] Su Y J, Wang X B, Luo J Q. The archaeological application of high density resistivity method to ditch exploration on Sanxingdui Site[J]. Progress in Geophysics, 2007, 22(1):268-272.
[17] 王亮, 王绪本, 李正文. 探地雷达在金沙遗址考古探测中的应用研究[J]. 物探与化探, 2008, 32(4):401-403.
[17] Wang L, Wang X B, Li Z W. Application of ground penetrating radar to archeaological exploration in Jinsha ruins site[J]. Geophysical and Geochemical Exploration, 2008, 32(4):401-403.
[18] 许新钢, 李党民, 周杰. 地质雷达中干扰波的识别及处理对策[J]. 工程地球物理学报, 2006, 3(2):114-118.
[18] Xu X G, Li D M, Zhou J. Identifying Interferential wave in GPR and its countermeasures[J]. Chinese Journal of Engineering Geophysics, 2006, 3(2):114-118.
[19] 邵永新, 任峰. 沧东断裂天津段的土壤氡探测[J]. 华北地震科学, 2019(1):34-38.
[19] Shao Y X, Ren F. Soil radon detection in Tianjin Cangdong fault[J]. North China Seismic Science, 2019(1):34-38.
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