Journal of Jilin University(Earth Science Edition) ›› 2018, Vol. 48 ›› Issue (4): 1154-1164.doi: 10.13278/j.cnki.jjuese.20170046
Previous Articles Next Articles
Fang Jing1, Wang Fu2, Fang Yuting3, Pan Long1, Li Yang1, Hu Ke4, Qi Wuyun5, Wang Zhongliang6
CLC Number:
| [1] 王福,李建芬,陈永胜,等. QX01孔记录的渤海湾西岸沿海低地MIS3晚期以来的河道充填与环境演化[J]. 地学前缘,2016,23(4):301-309. Wang Fu, Li Jianfen, Chen Yongsheng, et al. Paleo-Environment Change and River Channel Infilling Since MIS3 Recorded by Drilling Core QX01 Taken from the Coastal Lowland of Bohai Bay[J]. Earth Science Frontiers,2016,23(4):301-309. [2] 陈永胜,王宏,裴艳东,等. 渤海湾西岸晚第四纪海相地层划分及地质意义[J]. 吉林大学学报(地球科学版),2012,42(2):747-759. Chen Yongsheng, Wang Hong, Pei Yandong, et al. Division and Its Geological Significannce of the Late Quaternary Marine Sedimentary Beds in the West Coast of Bohai Bay, China[J]. Journal of Jilin University (Earth Science Edition),2012,42(2):747-759. [3] 陈永胜,李建芬,王福,等. 渤海湾西岸现代岸线钻孔记录的全新世沉积环境与相对海面变化[J].吉林大学学报(地球科学版),2016,46(2):499-517. Chen Yongsheng, Li Jianfen, Wang Fu, et al. Records of Holocene Sedimentation Environment and Relative Sea Level by the Boreholes Collected Along the Present Shoreline of the West Coast of Bohai Bay, China[J]. Journal of Jilin University (Earth Science Edition), 2016,46(2):499-517. [4] 方晶,杨永强,商志文,等. 硅藻Auliscus caelatus对渤海湾西北岸大吴庄埋藏牡蛎礁形成环境的复原[J].吉林大学学报(地球科学版),2012,42(增刊2):343-351. Fang Jing, Yang Yongqiang, Shang Zhiwen, et al. Reconstruction of the Environment by Auliscus caelatus in Dawuzhuang Buried Oyster Reef on Northwest Coast of Bohai Bay[J]. Journal of Jilin University (Earth Science Edition),2012,42(Sup.2):343-351. [5] 方晶,王宏,王福,等. 渤海湾西北岸埋藏牡蛎礁礁顶上下沉积物中硅藻对"礁泥转换"古沉积环境的重建[J].沉积学报,2012,30(5):879-890. Fang Jing, Wang Hong, Wang Fu, et al. Diatom Analysis in the Top and Bottom Muddy Sediments of Buried Oyster Reef for the Reef-Mud Conversion Palaeoenvironmental Reconstruction, Northwest Bohai Bay[J]. Acta Sedimentologica Sinica,2012,30(5):879-890. [6] 佐藤万寿美,横山卓雄. 黏土混濁水の電気伝導度による古環境の推定~関西国際空港ボーリング·コアの場合[J].地质学杂志,1992,98(9):825-839. Sato M, Yokoyama T. Analysis of Paleo-Environment Based on Electric Conductivity of the STICS-Water:On Two Drilled Cores at Osaka Bay, Japan[J]. The Geological Society of Japan, 1992,98(9):825-839. [7] 内園立男,森勇一. 濃尾平野南部ボ-リングコアの粘土混浊水の電気伝導度およびpH測定に基づく堆積環境の推定[J]. 第四纪研究,2004,43(5):375-382. Uchizono T, Mori Y. Sedimentary Environmental Analysis Based on Electric Conductivity and pH of Stirred Clayer Drilling Cores into Water Recovered from the Southern Part of Nobi Plain Central Japan[J]. The Quaternary Research, 2004,43(5):375-382. [8] 白神宏.FeS2含有量からみた広島平野沖積層の堆積構造[J]. 地理学评论,1985,58(10):631-644. Shirakami H. the Structure of Alluvial Formations Deduced from FeS2 Contents of Cored Sediments Taken from Hiroshima Plain[J]. The Association of Japanese Geographers,1985,58(10):631-644. [9] 方晶,李应硕,介冬梅,等. 黏土混浊水导电率在海陆变迁研究上的应用:以下辽河平原为例[J]. 第四纪研究,2006,26(3):493-494. Fang Jing, Li Yingshuo, Jie Dongmei, et al. Application of Clayey Water Electric Conductivity Recovered from the Sea-Land Changes:A Case Study in Xialiao River plain[J]. Quaternary Sciences, 2006,26(3):493-494. [10] 方晶,武亚芳,李瑞武,等.辽宁沿海早、中期全新世海进中的一次海退事件[J]. 地学前缘,2009,16(2):376-403. Fang Jing, Wu Yafang, Li Ruiwu, et al. Discussion on Marine Regression Event during the Early-Middle Holocene in the Liaoning Coast[J]. Earth Science Frontiers, 2009,16(2):376-403. [11] 方晶,范昌福,王海峰,等.黏土混浊水EC对牡蛎礁水平夹层成因的解释:以渤海湾西北岸大吴庄牡蛎礁为例[J].第四纪研究,2011,31(4):746-748. Fang Jing, Fan Changfu, Wang Haifeng, et al. Application of Clayey Water Electric Conductivity Recovered from Origins of Horizontal Interlayers in the Buried Oyster Reef:A Case Study of the Dawuzhuang Oyster Reef in the Northwest of Bohai Bay[J].Quaternary Sciences, 2011,31(4):746-748. [12] 横山卓雄. 电气传导度测定法[M]//日本第四纪学会.第四纪试料分析法:2.东京:东京大学出版会,1993:109-118. Yokoyama T. Mensuration of Electric Conductivity[M]//Japan Association for Quaternary Researched. A Handbook of Quaternary Research:2. Tokyo:University of Tokyo Press,1993:109-118. [13] Berner R A.Sedimentary Pyrite Formation[J]. Amer Jour Sci,1970,268:1-23. [14] 中井信之,太田友子,藤沢寛,等.堆積物コアの炭素同位体比,C/N比およびFeS2含有量からみた名古屋港周辺の古気候,古海水準変動[J].第四纪研究,1982,21(3):169-177. Nakai N, Ohta T, Fujisawa H, et al. Paleoclimatic and Sea-Level Changes Deduced from Organic Carbon Isotope Ratios,C/N Ratios and Pyrite Contents of Cored Sediments from Nagoya Harbor, Japan[J]. The Quaternary Research,1982,21(3):169-177. [15] 李世瑜.古代渤海湾西部海岸遗迹及地下文物的初步调查研究[J]. 考古,1962,11(12):652-657. Li Shiyu. Preliminary Study on Relics of Coast and Culture in the West Coast of Bohai Bay[J]. Acta Archaeology Sinica, 1962,11(12):652-657. [16] 赵希涛,张景文,焦文强,等. 渤海湾西岸的贝壳堤[J]. 科学通报,1980,25(6):279-281. Zhao Xitao, Zhang Jingwen, Jiao Wenqiang, et al. Chenier Ridge on the West Coast of Bohai Sea[J]. Chinese Science Bulletin, 1980, 25(6):279-281. [17] 苏盛伟. 渤海湾西岸全新世贝壳堤古环境重建[D].长春:吉林大学,2012:1-79. Su Shengwei. Palaeoenvironmental Reconstruction of the Holocene Cheniers in West Coast of Bohai Bay[D].Changchun:Jilin University, 2012:1-79. [18] Reimer P J, Bard E, Bayliss A,et al. IntCal13 and MARINE13 Radiocarbon Age Calibration Curves 0-50000 Years cal. B. P.[J]. Radiocarbon,2013,55(4):1869-1887. [19] Stuiver M, Braziunas T. Modelling Atmospheric 14C Influences and 14C Ages of Marine Samples to 10000 BC[J]. Radiocarbon,1993,35:137-189. [20] Kellogg W W, Cadle R D, Allen E R, el al. The Sulfur Cycle[J]. Science,1972,175:587-596. [21] Goldman C R, Horne A J.Limnology[M]. New York:Mc Graw-Hill,1983:464. [22] 方晶,杨永强,马宏伟,等. 辽东半岛大孤山古溺谷平原沉积环境的复原:基于岩心黏土混浊水电导率和pH值以及硅藻组合[J]. 海洋学报,2012,34(6):133-141. Fang Jing, Yang Yongqiang, Ma Hongwei, et al. Edimentary Environmental Analysis Based on Electric Conductivity and pH of Stirred Clayed Drilling Cores in Water and Diatom Recovered from the of Old Drowned Valley Plain in the Dagu Mountain, Liaodong Peninsula in China[J]. Acta Oceanologica Sinica,2012,34(6):133-141. |
| [1] | Wang Changdong, Dong Xiaoyu, Hao Xiaofei, Jiang Shan, Yu Bing, Zhou Jian, Wang Tianqi. The Geochemical Characteristics and Geological Significance of the Rhyolite Porphyry in Shanghuofang Area of Guangxing-Zhirui Basin [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(3): 835-851. |
| [2] | Zhao Tianshuo, Song Chao, Liu Cai, Xu Yuxin. Physics-Informed Neural Network Tomography (PINNtomo):Factorization Methods for the Eikonal Equation in Seismic Traveltime Inversion [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(2): 694-702. |
| [3] | Wang Hongyan, Zhou Jianbo, Xin Zhonghua, Li Gongyu, Chen Zhuo, Sun Ningchen. Tectonic Affinity and Geodynamic Setting of the Zhangguangcai Terrane [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(1): 118-130. |
| [4] | Han Jie, Zhou Jianbo, Jiang He. The Terminal Suture Zone of the Paleo-Asian Ocean: Composite and Tectonic Implications of the Sonlonker-Tuquan Ophiolite Belt [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(1): 89-100. |
| [5] | Sun Luhua, Liang Chenyue, Zheng Changqing, Song Zhiwei, Zhou Jianbo. Identification of Late Mesozoic Deformation Events and Tectonic Significance in Yiwulüshan Area, Western Liaoning [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(1): 173-198. |
| [6] | Xin Zhonghua, Zhou Jianbo, Li Gongyu, Chen Zhuo, Wang Hongyan, Sun Ningchen. Lithospheric Structure of the Jilin-Heilongjiang High-Pressure Belt: Integrated Constraints from Magnetotelluric and Deep Seismic Reflection Data [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(1): 199-208. |
| [7] | Tan Xiaomiao, Zhou Jianbo, Rao Ying, Wang Haiyan, Hou Hesheng, Li Mingrui, Gao Rui. Lithospheric Structures Beneath the Solonker Suture in South-Central Segment of Central Asian Orogenic Belt: Constraints on the Evolution of the Paleo-Asian Ocean [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(1): 209-218. |
| [8] | Mao Zixiong, Hou Hesheng, Zhou Jianbo, Fu Wei. Near-Surface Velocity Structure of the Jiamusi Block-Nadanhada Terrane [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(1): 219-228. |
| [9] | He Jinxin, Zhang Hanya, Zhou Junhong, Yang Yongbin, Li Yu. Analyzing Spatial and Temporal Features of Martian Recurring Slope Lineae Based on Knowledge Graph [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(1): 252-265. |
| [10] | Liu Rong, He Tianxin, Zhang Haoran, Liu Qianghao, Zhang Yiming. Hydrothermal Activity in Typical Chinese Hydrocarbon Basins and Its Impact on Sedimentary Environments [J]. Journal of Jilin University(Earth Science Edition), 2025, 55(6): 1785-1805. |
| [11] | Ren Yunsheng, Xu Wentan, Li Jingmou, Sun Zhenjun, Liu Gan. Multi-Period Magmatic Age and Process of Huangyangshan A-Type Granitic Complex in East Junggar of Xinjiang Province: Evidence from SIMS Zircon U-Pb Dating [J]. Journal of Jilin University(Earth Science Edition), 2025, 55(6): 1867-1884. |
| [12] | Qian Ye, Wu Che, Luo Changhai, Sun Jinlei, Li Hua. Research Progress on the Occurrence State and Enrichment Characteristics of Dispersed Elements in Lead-Zinc Deposits [J]. Journal of Jilin University(Earth Science Edition), 2025, 55(6): 1851-1866. |
| [13] | Wang Boxin, Wang Tianlüe, Wang Qing, Chen Huie. A Review of Research Progress on Shear Behaviour of Frozen Soil-Structure Interfaces [J]. Journal of Jilin University(Earth Science Edition), 2025, 55(6): 1923-1944. |
| [14] | Han Fuxing, Liu Shuiyuan, Gao Zhenghui, Han Jiangtao, Zhang Tao, Shang Hao. A Transient Interference Suppression for Microtremor HVSR Data Based on Machine Learning [J]. Journal of Jilin University(Earth Science Edition), 2025, 55(6): 2153-2163. |
| [15] | Wang Ruijian, Sui Yangyi. A Fractional-Order Magnetic Gradient Measurement Based on Spherical Harmonic Expansion [J]. Journal of Jilin University(Earth Science Edition), 2025, 55(6): 2073-2087. |
|