近5年部分学术论文
1.王东东,邵龙义,刘海燕,等.超厚煤层成因机制研究进展[J].煤炭学报,2016,41(6):1487-1497.【EI】
2.王东东,李增学,吕大炜,等.陆相断陷盆地煤与油页岩共生组合及其层序地层特征[J].地球科学,2016,41(3):508-523.【EI】
3.Lv Dawei *,Wang Dongdong *, Li Zengxue, et al. Depositional environment, sequence stratigraphy andsedimentary mineralization mechanism in the coal bed- and oil shale-bearing succession: A case from the Paleogene Huangxian Basin of China[J].Journal of Petroleum Science and Engineering, 2016, 148: 32-51.【SCI三区,高被引】
4.Wang Dongdong*, Shao Longyi*, Li Zhixue, et al. The Hydrocarbon Generation Characteristics, Reservoir Performance and Preservation Conditions of Continental Coal Measures Shale Gas[J].Journal of Petroleum Science and Engineering, 2016, 145: 609-628.【SCI三区】
5.Wang Dongdong, Yan Zhiming, Liu Haiyan*, et al. The net primary productivity of Mid-Jurassic peatland and its control factors: Evidenced by the Ordos Basin[J].International Journal of Mining Science and Technology, 2018, 28: 117-185【SCI四区】
6.Li Zengxue*, Wang Dongdong*, Lv Dawei, et al. The geologic settings of Chinese coal deposits[J].International Geology Review, 2018,60(5-6):548-578.【SCI三区,高被引】
7.李增学,宋广增,王东东*,等.琼东南盆地渐新统煤系(扇)辫状河三角洲特征[J].地球科学,2018,2018,43(10),3471-3484【EI】
8.Wang Dongdong,Li Zengxue, Liu Haiyan, et al., The Genetic Environmental Transformation Mechanism of Coal and Oil Shale Deposits in Eastern China’s Continental Fault Basins and the Developmental Characteristics of the Area’s Symbiotic Assemblages ——Take Huangxian basin as an example[J]. Petroleum Science, 2019.4, (16): 469–491【SCI二区】
9.Zhang Gongcheng,Wang Dongdong*, Zeng Qingbo, et al. Characteristics of coal- measure source rock and gas accumulation belts in marine-continental transitional facies fault basins: A case study of the Oligocene deposits in the Qiongdongnan Basin located in the northern region of the South China Sea[J].Energy Exploration & Exploitation. 2019, 37(6): 1752-1778【SCI四区】
10.Hou Yijun,Wang Dongdong*, Lv Dawei, et al. The Net Primary Productivity of Early Permian Peatland and Their Control Factors in North China[J].World Journal of Engineering, 2019, 16(5): 582–591.【ESCI】
11.Wang Shuai, Shao Longyi,Wang Dongdong, et al. Sequence stratigraphy and coal accumulation of Lower Cretaceous coal-bearing series in Erlian Basin, northeastern China[J]. AAPG Bulletin, 2019, 103(7): 1653-1690【SCI二区】
12.Wang Dongdong, Dong Guoqi, Zhang Gongcheng, et al. Coal seam development characteristics and distribution predictions in marginal sea basins: Oligocene Yacheng Formation coal measures, Qiongdongnan Basin, northern region of the South China Sea[J].Australian Journal of Earth Sciences, 2020, 67(3): 393–409【SCI四区】
13.Wang Dongdong, Mao Qiang, Dong Guoqi, et al. The Genetic Mechanism of Inertinite in the Middle Jurassic Inertinite-Rich Coal Seams of the Southern Ordos Basin.Journal of Geological Research, 2019, 1(3): 1-15【ESCI】
14.Wang Shuai, Shao Longyi,Wang Dongdong, et al. Controls on accumulation of anomalously thick coals: implications for sequence stratigraphic analysis[J]. Sedimentology, 2020, 67, 991–1013【SCI一区】
15.Liu Haiyan, Li Zengyao, Zhang Yushuai,Wang Dongdong*.The Weakening Laws of the Rock Mechanics of Marlite Bank Slopes under Water-Rock Interaction Conditions[J].CARBONATES AND EVAPORITES, 2020, 35:60【SCI四区】
16.Longyi Shao,Dongdong Wang, Yingjiao Li, et al. Analysis of coal accumulation pattern of the major coal-forming periods in China[J].Interantional Journal of Coal Science and Technology, 2020, https://doi.org/10.1007/ s40789-020-00341-0【EI】
17.Wang Dongdong ,Zhang Gongcheng*, Li Zengxue, et al.The Development Characteristics and Distribution Predictions of the Paleogene Coal-Measure Source Rock in the Qiongdongnan Basin Located in the Northern Region of the South China Sea[J].Acta Geologica Sinica, 2021, 95(1): 105–120【SCI三区】
18.Zhang Gongcheng,Wang Dongdong*, Lan Lei, et al. Geological characteristics of large and medium-sized gas fields in the south China sea[J].ACTA OCEANOLOGICA SINICA, 2021, Accepted【SCI二区】
19.Wang Dongdong, Yin Lusheng, et al.The Characteristics and Control Factors ofInertinite Abundance During China’s Coal-Forming Periods[J]. Journal of Palaeogeography, 2021,online,https:// doi.org/10.1186/ s42501-021-00090-4 【SCI二区】
近5年主要发明专利
1. 王东东,李增学,吕大炜,等.综合识别巨厚煤层内部沉积间断面的方法,2016,专利号:ZL201510563241.1
2. 李增学,王东东,吕大炜,等.一种深部煤系及薄煤层多级叠加测井识别方法,2016,专利号:ZL201510666941.3
3. 李增学,吕大炜,王东东,等.一种古地理恢复的优势相方法,2016,专利号:ZL201510761711.5
4. 王东东,刘海燕,吕大炜,等,综合识别与验证巨厚煤层内部古气候旋回的方法,2017,专利号:ZL201610319308.1
5. 李增学,张功成,王东东,等.确定控制陆源分散有机质分布三角洲体系外援坡度的方法,2019.6,专利号:ZL201810440166.3
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