Marine sediment geochemistry research team
施小斌 学科组
——综合地球物理探测与岩石圈热演化学科组
 Location: Home > 发表成果
发表成果

2023:

陈顺, 杨小秋*, 何昌荣, 徐子英, 林為人, 姚文明, 施小斌, 许鹤华, 孙珍. 南海神狐峡谷群海底沉积物摩擦特性. 地球物理学报, doi:10.6038/cjg2022Q0522. (待刊)

Li H., Liao J., Shen Y., Qing J., Wu Y., Zhao Z., Shi X.. Rifting/spreading propagation interacts with preexisting transform faults: 3D geodynamic modeling. Frontiers in Earth Science, 2023, 10, id. 1054747, 10.3389/feart.2022.1054747.

郭兴伟, 孙旭东, 杨小秋, 庞玉茂, 张训华. 南黄海中部隆起CSDP-2井的大地热流: CSDP-2井热流测量结果. 地球物理学报, 2023, 66(1): 332–343.

2022:

张慧慧,许鹤华*,姚永坚,等. 南海西南次海盆扩张期热液循环与洋壳增生的数值模拟. 地质学报, 2022, 96: 2927–2941.

Shi Xiaobin, Kohn Barry, Yu Chuanhai, et al., Thermo-tectonic history of coastal NW South China Sea: a low-temperature thermochronology study. Tectonophysics, 2022, 833, 229344.

Yu Chuanhai, Xu Min, Kirby Jon, Shi Xiaobin, et al., Spatial variations of the effective elastic thickness and internal load fraction in the Cascadia subduction zone. Geophysical Journal International, 2022, 229: 487–504.

2021:

邵佳,许鹤华*,谌永强,施小斌,王晓芳. 上地幔含水量对海底扩张过程中洋壳厚度的影响:数值模拟. 地球科学, 2021, 46(3): 826–839.

Sheng Chong,Jiao Jiujimmy,Xu Hehua*,et al., Influence of land reclamation on fresh groundwater lenses in oceanic islands: laboratory and numerical validation. Water Resources Research, 2021, 57(10): doi.org/10.1029/2021WR030238

杨小秋*, 曾信, 石红才, 于传海, 施小斌, 郭兴伟, 王迎春, 任自强, 邵佳, 许鹤华, 卫小冬, 陈顺,赵鹏等. 海底热流长期观测系统研制进展. 地球物理学报, 2021, doi:10.6038/cjg2022P0190.

Wang Zhi, Wang Jian, and Yang Xiaoqiu. The Role of Fluids in the 2008 Ms8.0 Wenchuan Earthquake, China, Journal of Geophysical Research: Solid Earth, 2021, 126(2), e2020JB019959, doi:10.1029/2020JB019959.

任自强,施小斌,王晓芳,等. 南海南沙海槽深部热状态及其构造意义.热带海洋学报,2021, 40(4):98–109.

任自强,施小斌*,杨小秋,等. 南海礼乐盆地礁体水热循环及其对地温场的影响. 地球物理学报,2021, 64(2): 612–627.

2020:

Sheng C., Han D., Xu H.*, Li F., Zhang Y., Shen Y., Evaluating the dynamic mechanisms and formation process of freshwater lenses on reclaimed atoll islands in the South China Sea. Journal of Hydrology, 2020, 584:124641.

杨小秋*, 林為人, 葉恩肇, 许鹤华, 徐子英. 断裂带同震温度负异常机制分析. 地球物理学报, 2020, 63(4): 1422–1430.

施小斌,王丽芳, 任自强,等. 南海礼乐盆地构造热演化特征及其影响因素. 地球物理学报,2020,63(7): 2682–2696.

裴健翔,施小斌*, 王丽芳,等. 南海南部礼乐盆地构造沉降特征及其构造意义.海洋地质与第四纪地质,2020, 40(4): 17–29.

王丽芳, 施小斌*, 任自强,等. 南海南部礼乐盆地礁体发育区的构造热演化特征.地球物理学报,2020,63(8):3050–3062.

刘奎,李宗星,施小斌,等. 柴达木盆地东部晚海西-印支期剥蚀量与隆升历史——多种古温标与沉积学证据的制约. 地球物理学报, 2020, 63(4):1403–1421.

谌永强,施小斌*,廖杰,等. 地幔热导率的选取对动力学数值模拟的影响—以岩石圈张裂过程为例. 地球物理学报,2020, 63(5):1998–2012.

2019:

陈梅,张莉,施小斌,等. 西沙海槽盆地新生代沉积环境演化, 海洋地质与第四纪地质, 2019,39(1):1–10.

陈梅,施小斌*,任自强等. 南海西北部沉积盆地晚新生代沉降、沉积特征:对深部异常过程的响应. 地球物理学报,2019,62(2):587–603.

2018:

Yang Xiaoqiu *, Shi Xiaobin, Zhao Junfeng, Yu Chuanhai, Gao Hongfang, Chen Aihua, Lu Yuanzheng, Cen Xianrong, Lin Weiren, Zeng Xin, Xu Hehua, Ren Ziqiang, Zhou Shengqi, Xu Ziying, Sun Jinlong, Kamiya Nana, Lin Jian. Bottom water temperature measurements in the South China Sea, eastern Indian Ocean and western Pacific Ocean. Journal of Tropical Oceanography, 2018, 37(5): 86-97.

张文涛,许鹤华*,杨小秋. IODP349航次地热调查数据分析. 海洋地质与第四纪地质, 2018,38(2):156–164.

2017:

Yang Xiaoqiu*, Lin Weiren, Tadai Osamu, Zeng Xin, Yeh En-Chao, Yu Chuanhai, Li Haibing, Wang Huan. Experimental and numerical investigation on temperature response to stress changes of rocks. Journal of Geophysical Research: Solid Earth, 2017, 122, DOI: 10.1002/2016JB013645.

Yang Xiaoqiu *, Lin Weiren, Thermistor, in Encyclopedia of Engineering Geology, edited by P. T. Bobrowsky and B. Marker, pp. 1-2, Springer International Publishing, Cham, 2017, doi:10.1007/978-3-319-12127-7_282-1.

Shi Xiaobin, Kirby Jon, Yu Chuanhai, et al., Spatial variations in the effective elastic thickness of the lithosphere in Southeast Asia, Gondwana Research, 2017,42:49–62. 

施小斌,于传海,陈梅,等. 南海北部陆缘热流变化特征及其影响因素分析. 地学前缘,2017,24(3):56–64.

Shi Xiaobin, Jiang Haiyan, Yang Jun, et al., Models of the rapid post-rift subsidence in the eastern Qiongdongnan Basin, South China Sea: Implications for the development of the deep thermal anomaly. Basin Research, 2017,29(3):340–362.   

陈梅,施小斌,刘凯,等.南海北缘珠三坳陷新生代构造沉降特征.海洋地质与第四纪地质, 2017,37(6):34-43.

Yu, C., Shi, X., Yang, X., Zhao, J, Chen, M., Tang, Q.. Deep thermal structure of Southeast Asia constrained by S-velocity data. Marine Geophysical Research, 2017, 38: 341–355. 

于传海,赵俊峰,施小斌*,任自强, 杨小秋,陈梅.南海重力异常的沉积层密度改正及其对区域构造特征分析的意义. 地球物理学报, 2017, 60(8):3151–3166.

何丽娟,许鹤华,刘琼颖. 前陆盆地构造-热演化:以龙门山前陆盆地为例,地学前缘, 2017,24(3): 127–136. 

刘绍文, 杨小秋, 邱楠生, 杨树春, 李旭东. 沉积盆地盐构造热效应及其油气地质意义. 科学通报, 2017, 62: 1631–1644.

王晓芳,许鹤华,赵俊峰,等.下地壳流对南海北缘白云凹陷地壳伸展变形的影响.海洋地质与第四纪地质,2017,37(6):76-83.

2016:

徐子英, 杨小秋*, 施小斌, 曾信, 赵俊峰, 于传海. 探针偏角对海底热流测量结果的影响. 热带海洋学报, 2016, 35 (4): 95–101.

曾信, 杨小秋*, 杨军, 于传海, 施小斌, 丘学林. 海底热流长期观测系统中低功耗测温单元的设计与实现. 海洋技术学报, 2016, 35 (2): 1–8.

Shi Hongcai, Shi Xiaobin*, Glasmacher, U.A., et al., The evolution of eastern Sichuan basin, Yangtze block since Cretaceous: Constraints from low temperature thermochronology. Journal of Asian Earth Sciences, 2016, 116, 208–221.

施小斌. 海底热流探针. 走进海洋,王东晓(主编),2016, 湖北科学技术出版社,武汉:98–104.

2015:

张振波,赵俊峰,付永涛,等.GT-1M 海洋重力仪与 KSS31M 海洋重力仪的对比.海洋科学,2015,39(5):85–91.

施小斌,杨小秋,石红才,郭兴伟等. 第四章 中国海域大地热流. 地热学及其应用,汪集暘等著,2015,科学出版社,北京:123-159. 

施小斌, 王振峰, 蒋海燕,等. 张裂型盆地地热参数的垂向变化与琼东南盆地热流分布特征分析.地球物理学报,2015, 58(3):939–952.

杨军,施小斌,王振峰,等. 琼东南盆地张裂期沉降亏损与裂后期快速沉降成因分析. 海洋地质与第四纪地质, 2015, 35(1): 81-90.

2014:

Li Chun-Feng, Xu Xing, Lin Jian, Sun Zhen, Zhu Jian, Yao Yongjian, Zhao Xixi, Liu Qingsong, Kulhanek DK., Wang Jian, Song Taoran, Zhao Junfeng, et al. Ages and magnetic structures of the South China Sea constrained by deep tow magnetic surveys and IODP Expedition 349. Geochemistry, Geophysics, Geosystems, 2014(15): 4958–4983.

Wang Zhenfeng, Shi Xiaobin*, Yang Jun, et al., Analyses on the tectonic thermal evolution and influence factors in the deep-water Qiongdongnan Basin. Acta Oceanologica Sinica, 2014, 33(12): 107–117. 

Jiang, Z.Q., Wang, Q., Wyman, D.A., Li, Z.X., Yang, J.H., Shi, X.B., Ma, L., Tang, G.J., Gou, G.N., Jia, X.H., et al. Transition from oceanic to continental lithosphere subduction in southern Tibet: Evidence from the Late Cretaceous–Early Oligocene (~91–30 Ma) intrusive rocks in the Chanang–Zedong area, southern Gangdese. Lithos, 2014, 213–231.

吴保珍,施小斌,杨小秋,等.南海北部白云凹陷及其邻区的岩石圈强度分析,热带海洋学报,2014,33(1):62-68.

石红才,施小斌*. 中-上扬子白垩纪以来的剥蚀过程及构造意义-低温年代学数据约束. 地球物理学报,2014,57(8):2609–2619.

2013:

Liu Tangwei, Xu Hehua*, Qiu Xuelin, Zhang Wen, Shi Xiaobin. A Hybrid Laplace Transform Mixed Multiscale Finite-Element Method for Flow in Porous Media. Joural of Information and Computational Science, 2013, 10(15): 4773–4781.

Liu Tangwei, Xu Hehua*, Qiu Xuelin and Shi Xiaobin. Multiscale Parameter Identification  Method for Three Dimension Steady Heat Transfer Model of Composite Materials. Advanced Materials Research, 2013: 706–708.

秦洋阳, 杨小秋*, 吴保珍, 孙兆华, 施小斌. 海底热流探测中的高分辨率测量技术.中国科学 技术科学, 2013, 43(7): 816821.

高昕宇,赵太平,施小斌,等.大别山北麓早白垩世商城和达权店岩体的地球化学特征与成因.地球化学,2013,42(4):307-339.

石红才,施小斌,杨小秋,等.江南隆起带幕府山岩体新生代冷却剥蚀过程的低温年代学证据.地球物理学报,2013,56(6):1945-1956.

施小斌,石红才,杨小秋,等,江汉盆地当阳向斜区主要不整合面剥蚀厚度的中低温热年代学约束. 地质学报,2013,87(8):1076–1088.

2012:

李亚敏,施小斌,徐辉龙,等.琼东南盆地构造沉降的时空分布及裂后期异常沉降机制.吉林大学学报(地球科学版), 2012, 42(1): 42–57.

徐行,李亚敏,罗贤虎,施小斌,杨小秋. 南海北部陆坡水合物勘探区典型站位不同类型热流对比.地球物理学报,2012,55(3):998-1006.

蒋海燕, 施小斌,杨小秋,等. 基于 BP 神经网络的测井资料预测岩石热导率. 测井技术,2012, 36(3): 304307.

杨小秋,施小斌,许鹤华, 等. 台湾海峡及其邻区现今构造应力场数值模拟,地球物理学报, 2012,55(7): 23072318.

2011:

Shi X., Kohn B., Spencer S., et al., Cenozoic denudation of southern Hainan Island, South China Sea: constraints from low temperature thermochronology. Tectonophysics, 2011, 504:100115.

He LiJuan, Xu HeHua, Wang JiYang. Thermal evolution and dynamic mechanism of the Sichuan Basin during the Early Permian-Middle Triassic, Science China Earth Sciences, 2011, 54(12).19481954.

李亚敏,施小斌,徐辉龙,等. 琼东南盆地古近纪基底断裂的活动特征分析. 热带海洋学报,2011, 30(6): 7483.

许鹤华*,马辉,宋海斌, 等.南海东部海盆扩张过程的数值模拟.地球物理学报, 2011, 54(12) 30703078.

马辉, 许鹤华*, 施小斌, 陈爱华, 刘唐伟. 南沙海槽前陆盆地热流变结构. 地球科学-中国地质大学学报, 2011, 36 (05): 939948.

石红才,施小斌,杨小秋,蒋海燕,龙幼康. 鄂西渝东方斗山-石柱褶皱带中新生代隆升剥蚀过程及构造意义. 地球物理学进展, 2011, 26(6):19932002.

 

2010:

Li Chunfeng, Shi Xiaobin, Zhou Zuyi, et al., Depths to the magnetic layer bottom in the South China Sea area and their tectonic implications. Geophysical Journal International, 2010, DOI: 10.1111/j.1365-246X.2010.04702.x.

Tan Xiaodong, Gilder Stuart, Kodama Kenneth P., Jiang Wan, Han Yulin, Zhang Hui, Xu Hehua, Zhou Di. New paleomagnetic results from the Lhasa block: Revised estimation of latitudinal shortening across Tibet and implications for dating the India-Asia collision, Earth and Planetary Science Letters, 2010, 293(3-4):396–404.

赵俊峰,施小斌,丘学林,等.南海东北部居里面特征及其石油地质意义.热带海洋学报,2010,29(1): 126131.

李亚敏,罗贤虎,徐行,杨小秋,施小斌. 南海北部陆缘深水区的海底原位热流测量. 地球物理学报,2010, 53(9): 21612170.

2009:

杨小秋,施小斌,许鹤华,等. 双探针型海底热流计的结构优化.地球物理学报,2009,52(5):12801288.

赵俊峰.南海北部海盆三分量磁测结果分析.热带海洋学报,2009,28(4):5458.

杨小秋,施小斌,许鹤华,等. 双探针型海底热流计数据解算模型选取. 热带海洋学报,2009,28(4):2834.

2008:

罗贤虎,徐行,施小斌,陈宗恒. 室内海底沉积物热导率测量的原理与方法——以TK04热导率测量系统为例 . 海洋技术,2008, 27(2):88-91.

Shi X., Xu H., Qiu X., et al., Numerical modeling on the relationship between thermal uplift event and following rapid subsidence: Discussions on the evolution of the Tainan Basin. Tectonics, 2008, 27,TC6003, doi:10.1029/2007TC002163.

赵俊峰,张毅祥.南海东北部磁静区深部构造及成因模式.上海地质,2008(3):4-7.

施小斌,等.热流分布特征与岩石圈热结构.中国边缘海形成演化与资源效应,李家彪(主编),2008,海洋出版社,北京:52-68.

2007:

郭兴伟,施小斌,丘学林,等.渤海湾盆地新生代沉积沉降特征及其动力学机制探讨.大地构造与成矿学,2007,31(3):273-280.

Xu Hehua.*, Xing Huilin, Wyborn D., Mora Peter R., Analytical and numerical investigation of thermo-fluid flow of fracture dominated geothermal reservoir. In: Shi,Y., van Albada, G.D., Dongarra, J., Sloot, P.M.A. (Eds.), Lecture Note in Computer Science 4489. Springer, Heidelberg, Germany, pp. 1156-1163.

郭兴伟,施小斌,丘学林,等.渤海湾盆地济阳坳陥新生代裂后不整合及其后的加速沉降事件. 地球物理学报,2007,50(2),455-456.

2006:

郭兴伟,施小斌,丘学林,等. 渤海湾盆地济阳坳陷新生代构造沉降特征. 石油大学学报(自然科学版),2006,30(3):6-11.

施小斌,丘学林,刘海龄, 等. 滇西临沧花岗岩基冷却的热年代学分析.岩石学报,2006, 22(2):465-479.

施小斌,丘学林,刘海龄,等. 滇西临沧花岗岩基新生代冷却的裂变径迹证据.地球物理学报,2006,49(1):135-142.

徐行, 施小斌,罗贤虎,等. 南海西沙海槽地区的海底热流测量. 海洋地质与第四纪地质,2006, 26(4):51-57.

徐行,施小斌,罗贤虎,等. 南海北部海底地热测量的数据处理方法. 现代地质,2006,20(3):457-464.

刘绍文,施小斌,王良书,等.南海成因机制及北部岩石圈热-流变结构研究进展.海洋地质与第四纪地质,2006,26(4):117-124.

何家雄,夏斌,施小斌,等.世界深水油气勘探进展与南海深水油气勘探前景.天然气地球科学,2006,17(6):747-752.

2005:

付永涛,范守志,施小斌.关于岩石圈有效弹性厚度的地质理解. 地质科学,2005,40(4):585-593.

王淑红,宋海斌,颜文,施小斌,等. 南海南部天然气水合物稳定带厚度及资源量计算.天然气工业,2005, 25(8): 24-27.

王国力,蔡立国,汪集阳,施小斌.楚雄盆地构造一热演化与古地温场研究.石油实验地质,2005,27(1):28-38.

Shi X, Burov E,Leroy S,et al., Intrusion and its implication for subsidence: a case from the Baiyun Sag, on the Northern Margin of the South China Sea. Tectonophysics, 2005,407(1-2):117-134.

2003:

Shi X, Qiu X., Xia, K., et al., Characteristics of the surface heat flow in the South China Sea. Journal of Asian Earth Sciences, 2003, 22(3): 265-277.

Zhou Di, Yu Hoshing, Xu Hehua, Shi Xiaobin, Chou Yingwei. Modeling of thermo-rheological structure of lithosphere under the foreland basin and mountain belt of Taiwan. Tectonophysics, 2003, 374(3–4): 115-134.

丘学林,施小斌,阎贫,吴世敏,周蒂,夏戡原.南海北部地壳结构的深地震探测和研究进展.自然科学进展,2003,13(3):231-236.

2002以前部分论文:

Shi X, Zhou D, Qiu X, Zhang Y., Thermal and Rheological Structures of the Xisha Trough, South China Sea. Tectonophysics, 2002, 351(4): 285-300

Zhou Yong, Zhou P., Wu Shimin, Shi Xiaobin, et al., Magnetic fabric study across the Ailao Shan-Red River shear zone. Tectonophysics, 2002, 346:137-150.

Qiu X., Ye S., Wu S., Shi X., et al., Crustal structural across the Xisha Trough, northwestern South China Sea. Tectonophysics, 2001, 341: 179-193.

刘海龄,张伯友,施小斌边缘海形成演化模式研究概述海洋通报,2001,20(3):82-87.

施小斌,周蒂,张毅祥. 南海北部陆缘岩石圈的热流变结构. 科学通报,2000, 45(15): 1160 -1165.

施小斌, 汪集暘,罗晓容,等,古温标重建沉积盆地热史水平探讨. 地球物理学报,2000,43(3): 386-392.

李成,王良书,郭随平,施小斌. 塔里木盆地热演化. 石油学报,2000,21(3):13-17.

施小斌,周蒂,陈汉宗等. "实验3”号船南沙群岛海域岩石拖网实践. 南海研究与开发,1999,2:60-65.

施小斌,王良书,郭随平,王捷,周光甲.磷灰石裂变径迹数据的热史反演及其局限性.地质科学,1998,33(2):187-194.

王良书,熊振,郭随平,施小斌,等.利用地球物理测井资料计算油气盆地沉积岩原地热导率.石油地球物理勘探,1999,34(5):526-531.

熊振,王良书,李成,施小斌,等.胜利油气区东营凹陷现今地温场研究. 高校地质学报,1999,5(3):312-321.

熊振,王良书,李成,施小斌,等. 东营凹陷现代热流场特征及地热异常成因. 石油勘探与开发,1999,26(4): 38-41.

郭随平,施小斌,王良书,等.胜利油区东营凹陷热史分析—磷灰石裂变径迹证据.石油与天然气地质,1996,17(1):32-36.

郭随平,王良书,施央申,沈修志,施小斌,熊振.应用磷灰石裂变径迹研究沉积盆地的热史. 南京大学学报(自然科学版),1995,31(3):469-475.

 

 

发明专利软件著作权

A、岩石热-力学响应类:

(1) 杨小秋、许鹤华、夏林琪、张志刚、陈顺、邵佳、赵鹏、刘璐。深海快速加卸载装置及其方法,发明专利,专利号:ZL 2021 1 0500950.0,授权公告日期:2022-10-14

(2) 杨小秋、Weiren Lin、Osamu Tadai、曾信等。一种岩石绝热应力变化的温度响应系数测试系统,发明专利号:ZL 2016 1 0089849.X,授权日期:2017-06-23

(3) 杨小秋、Weiren Lin、Osamu Tadai等。高压条件下岩石热物性测试方法与系统,发明专利号:ZL 2016 1 0130643.7,授权日期:2017-10-27

(4) 杨小秋、Weiren Lin、曾信、施小斌等。一种岩层应力变化温度响应监测装置,发明专利号:ZL 2016 1 0089521.8,授权日期:2018-06-22

(5) 杨小秋等。深海高压条件下岩石热物性测试方法与系统,发明专利号:ZL 2016 1 0130630.X,授权日期:2017-08-22

(6) Xiaoqiu Yang, Weiren Lin, Xin Zeng, Xiaobin Shi, Chuanhai Yu, Ziying Xu. Device for monitoring temperature response to stress change in strata, USA Patent: US 10,114,147 B2, Issued Date: 2018-10-30

(7) Xiaoqiu Yang, Weiren Lin, Osamu Tadai, Xin Zeng, Xiaobin Shi, Ziying Xu. System for determining the adiabatic stress derivative of temperature for rock, USA Patent: US 10,215,723 B2, Issued Date: 2019-02-26

(8) 楊 小秋, 林 為人, 多田井 修等. 高圧条件下の岩石熱物性測定システム及び方法. Japan Patent: JP 6473524 B2, Issued Date: 2019-02-01

(9) Xiaoqiu Yang, Weiren Lin, Osamu Tadai, Xin Zeng, Xiaobin Shi, Ziying Xu. System and method for determining the adiabatic stress derivative of the temperature for rocks under water, USA Patent: US 10,324,227 B2, Issued Date: 2019-06-18

(10) Xiaoqiu Yang, Weiren Lin, Xiaobin Shi, Hehua Xu, Ziying Xu. System and method for determining the thermal properties of rocks under deep sea, USA Patent: US 10,345,253 B2, Issued Date: 2019-07-09

(11) 杨小秋等。水下岩石绝热应力变化的温度响应系数测试方法与系统,发明专利号:ZL 2016 1 0130626.3,授权日期:2017-05-17

(12) 杨小秋, 岩石应力变化温度响应正演软件RockPT-V1.0, 2017SR247887, 原始取得, 全部权利, 2017.4.10 (软件著作权)

 

B、海底热流探测技术类:

(1) 杨小秋、施小斌、孙兆华、许鹤华、曾信。一种海底原位热导率的解算方法,发明专利,专利号:ZL 2015 1 0145122.4,授权公告日期:2016-01-13

(2) 杨小秋、孙兆华、曾信、施小斌、曹文熙。一种自浮式海底热流长期观测基站,发明专利,专利号:ZL 2015 1 0009982.5,授权公告日期:2015-11-04

(3) 杨小秋、孙兆华、曾信、施小斌等。一种单浮球海底热流长期观测系统,发明专利,专利号:ZL 2016 1 0280426.6,授权公告日期:2017-03-29

(4) 杨小秋、孙兆华、施小斌。一种可与海底热流测量单元实现数据通信的设备及通信方法,发明专利,专利号:ZL 2015 1 0402349.2,授权公告日期:2018-02-06

(5) Xiaoqiu Yang, Xin Zeng, Xiaobin Shi, et al. Long-term seafloor heat flow monitoring probe based on underwater robot platform, Canadian Patent: CA 02,946,611, Issued Date: 2018-07-31

(6) Xiaoqiu Yang, Zhaohua Sun, Xin Zeng, Xiaobin Shi. Pop-up Long-term Monitoring Base Station for Seafloor Heat Flow, USA Patent: US 10,145,982 B2, Issued Date: 2018-12-04

(7) Xiaoqiu Yang, Xin Zeng, Zhaohua Sun, Xiaobin Shi. Device capable of realizing data communication with seafloor heat flow measurement unit, and communication method, New Zealand Patent: 728521, Issued Date: 2019-03-22

(8) Xiaoqiu Yang, Xiaobin Shi, Zhaohua Sun, Hehua Xu, Xin Zeng. Verfahren und dessen Vorrichtung zur In-situ-Messung der Wärmeleitfähigkeit von Meeresbodensedimenten (A method and its device for in-situ measurement of thermal conductivity of seafloor sediments), German Patent: DE 11 2015 002 036 B4, Issued Date: 2019-06-27

(9) 杨小秋、任自强、孙杰、颜文、施小斌、许鹤华. 适用于岛礁和山区的便携式钻孔测温系统,发明专利,专利申请号:CN 202011475403.3,申请日期:2020-12-14

(10) 杨小秋, 海底地温梯度解算软件SeaGG-V1.0, 2017SR035735, 原始取得, 全部权利, 2016.09.10 (软件著作权)

(11) 许鹤华; 杨小秋; 黄龙飞, 海底热流长期观测数据集成和成图软件SHFDV-V1.0,2017SR617960, 原始取得, 全部权利, 2017.08.10 (软件著作权)

(12) 许鹤华,沉积回剥计算软件(SSBCP V1.0),登记号2012SR032201

(13) 施小斌; 杨小秋; 蒋海燕, 海底热流原位处理系统SeaHF-V1.0, 2010SR050294,原始取得, 全部权利, 2009.10.01 (软件著作权)

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