首页|期刊导航|海洋地质与第四纪地质|俾斯麦海盆构造应力场特征及其动力学机制

俾斯麦海盆构造应力场特征及其动力学机制OA

The tectonic stress field and geodynamic mechanisms in the Bismarck Basin

中文摘要英文摘要

俯冲带动力学是板块构造学与地球动力学领域的重要研究方向.俾斯麦海盆位于西南太平洋板块汇聚带,北接卡罗琳板块,西邻欧亚构造域,南靠澳大利亚板块,东接翁通爪哇海台,是全球构造活动最强烈的区域之一.本研究基于震源机制解,厘定俾斯麦海盆区域应力场空间分布,并结合多源 GPS 数据定量分析块体运动模式,系统揭示该区应力场特征与动力学机制.研究结果表明,新几内亚岛与新不列颠海沟附近震源机制解主要为逆断型,以印度-澳大利亚板块沿新不列颠海沟NE 方向俯冲为主导,T 轴走向沿 NW-SE,P 轴沿 NE-SW 向,使南俾斯麦海盆表现出强烈的顺时针旋转运动特征.西美拉尼西亚海沟附近震源机制解同样主要为逆断型,发育 SW 倾向逆冲断层,西南侧地区 T 轴近 NW-SE 向展布,P 轴呈 NE-SW 向展布,对于海沟东南侧区域,T 轴近 E-W 向展布,太平洋板块已逐渐与北俾斯麦海盆于西美拉尼西亚海沟处嵌合.南、北俾斯麦海盆分界带则在太平洋与印度-澳大利亚板块斜向汇聚背景下,整体呈现出走滑型的震源机制解,形成左旋走滑断裂系统,其剪切变形特征与区域 NE-SW 向主压应力场高度耦合.

The study of subduction zone dynamics is important in plate tectonics and geodynamics.The Bismarck Sea,located in the southwestern Pacific plate convergence zone,is bordered by the Caroline Plate to the north,the Eurasian tectonic domain to the west,the Australian Plate to the south,and the Ontong Java Plateau to the east,making it one of the most tectonically active regions in the world.We investigated the spatial distribution of the regional stress field in the Bismarck Sea based on focal mechanism solutions and quantitatively analyzed the block motion patterns using multi-source GPS data,revealing systematically the stress field characteristics and dynamic mechanisms of the area.Results show that the focal mechanism solutions near New Guinea Island and the New Britain Trench are predominantly of reverse faulting type,dominated by the northeastward subduction of the Indo-Australian Plate along the New Britain Trench.The T-axis strikes in the NW-SE direction,while the P-axis extends in the NE-SW direction,resulting in a strong clockwise rotation of the South Bismarck Ocean Basin.The focal mechanism solutions near the West Melanesian Trench are also mainly in reverse faulting type,with the development of SW-dipping thrust faults.In the southwestern region adjacent to the trench,the T-axis exhibits a nearly NW-SE distribution,and the P-axis shows a NE-SW orientation.For the southeastern area of the trench,the T-axis is approximately E-W trending,indicating that the Pacific Plate has gradually become imbricated with the North Bismarck Ocean Basin at the West Melanesian Trench.The boundary zone between the Southern and Northern Bismarck Basins,under the background of oblique convergence between the Pacific and Indo-Australian plates,generally exhibits strike-slip focal mechanism solutions,forming a left-lateral strike-slip fault system.Its shear deformation characteristics are highly coupled with the regional NE-SW trending principal compressive stress field.

唐毓丰;宫伟;李成浩;张昕怡;邢军辉

中国海洋大学海洋地球科学学院,海底科学与探测技术教育部重点实验室,青岛 266100中国海洋大学海洋地球科学学院,海底科学与探测技术教育部重点实验室,青岛 266100||青岛海洋科技中心海洋矿产资源评价与探测技术功能实验室,青岛 266237中国海洋大学海洋地球科学学院,海底科学与探测技术教育部重点实验室,青岛 266100中国海洋大学海洋地球科学学院,海底科学与探测技术教育部重点实验室,青岛 266100中国海洋大学海洋地球科学学院,海底科学与探测技术教育部重点实验室,青岛 266100||青岛海洋科技中心海洋矿产资源评价与探测技术功能实验室,青岛 266237

海洋科学

震源机制构造应力场动力机制俾斯麦海盆

focal mechanismstectonic stress fieldgeodynamicsBismarck Basin

《海洋地质与第四纪地质》 2026 (4)

99-110,12

崂山实验室自立科技创新项目"翁通爪哇洋底高原建造的动力过程及其台-洋体系的 ENSO 响应"(LSKJ202501100)国家自然科学基金重大研究计划重点支持项目"基于流体地球物理表征的新几内亚-所罗门弧俯冲起始动力学机制"(91858215),"翁通爪哇海台俯冲在新几内亚-所罗门弧体系中所罗门海盆的构造记录"(41906048)

10.16562/j.cnki.0256-1492.2025070201

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