塔里木盆地塔北隆起发育两组呈小角度相交(40°)的透入性X型走滑断裂,分别沿着NNE走向和NNW延伸.在对塔北哈拉哈塘地区三维地震资料解释的基础上,对走滑断层的几何展布特征以及断层的剖面变形特征进行研究;同时重点解析了RP6断裂和HA13断裂,分析比较NNW向与NNE向断层的变形及发育特征差异;结合盆地重磁资料以及周缘造山带的活动特征,对塔北隆起小角度的X型走滑断层的发育机制以及演化进行了分析.研究表明,塔北隆起走滑断层在垂向上具有明显的分层变形特征,分为三个构造层:震旦系-中寒武统下构造层(TH3界面以下)、上寒武统-中奥陶统中构造层(TH3-TO3 t界面)和上奥陶统-石炭系上构造层(TO3 t-TP界面).断层在下构造层和中构造层中整体处于压扭环境,多发育正花状构造;上构造层中断层主要发育负花状构造或正断层,整体处于张扭环境.两组断裂比较,NNW向断裂活动性强,在各构造层中均有显著的断裂特征发育,垂向连通性强,发育先存基底断裂,而NE向断层主要发育在中构造层,在下构造层和上构造层中断层发育不明显.活动性分析表明,断层的形成与演化具有多期性,走滑断层的形成经历了三期主要活动:中寒武世末、中晚奥陶世和志留纪-石炭纪.塔北隆起X型走滑断裂的形成受到了NNW向基底断裂和薄弱带的控制,NNW向先存基底断裂带或薄弱带优先发育走滑断裂,基底断裂与主挤压应力方向的夹角小于45°-Φ/2,NNE断层的发育受NNW向先存断裂限制,最终形成小角度相交的X型断裂.
柯坪褶皱冲断带位于塔里木盆地西北缘,勘探程度低,地表、地下构造变形复杂,构造模型存在多解性.本文通过对最新地震资料的解释,结合地质露头和钻井资料,建立起该地区新的构造模型.柯坪褶皱冲断带构造变形具有东西分段、南北分带的特征.东西向具有“跷跷板式”的沉积特征.中部皮羌段中寒武统盐层厚度大,主要发育盐下冲断构造和盐上反向滑脱构造;东、西两段主要发育基底卷入构造.石炭纪柯坪褶皱冲断带存在一期古隆起构造.晚石炭世一早二叠世沉积的康克林组具有填平补齐的特征.皮羌段发育两期断裂.早期为海西期断裂,晚期为喜山期断裂.石炭纪古隆起受控于早期断裂.喜山期形成的盐上滑脱构造对下伏潜在的古油藏具有封闭和保存作用.
In order to research the tectonic compressional deformation and its main controlling factors of salt structures in Kelasu structural belt of Kuqa depression,the paper simulates the salt tectonic deformation process of the 3 major seismic sections of Awat,Dabei and Keshen segments by using discrete element numerical simulation method.The simulation results show that the salt bed exhibits plastic deformation under the compressional setting and has relatively strong fluidity.Post-salt,salt and pre-salt beds show some structural characteristics of overall compression and layered deformation.A series of NS trending thrust structures are developed in pre-salt beds,and fault propagating folds and detached deformation structures are developed in post-salt beds.Pre-existing fractures mainly control pre-salt tectonic deformation and stress propagation range,pre-existing salt diapirs mainly influence the tectonic uplifting range of post-salt beds;salt rock distribution and palaeohigh of basement mainly impact the tectonic deformation of post-salt beds.The study results reveal the dynamic evolution process of salt structures in Kelasu structural belt,which will benefit to improve the understandings on salt tectonic deformation mechanism and its evolution process.