地质通报
地質通報
지질통보
GEOLOGICAL BULLETIN OF CHINA
2009年
12期
1779-1785
,共7页
王永%王军%肖序常%迟振卿%王彦斌
王永%王軍%肖序常%遲振卿%王彥斌
왕영%왕군%초서상%지진경%왕언빈
西昆仑%河流阶地%年代%新构造%第四纪
西昆崙%河流階地%年代%新構造%第四紀
서곤륜%하류계지%년대%신구조%제사기
western Kunlun%river terrace%dating%neotectonic%Quaternary
西昆仑山前河流普遍发育6级阶地,利用光释光(OSL)与热释光(TL)方法对采自西昆仑山前几条主要河流的低阶地堆积物样品进行年代测定.研究结果显示,主要河流低阶地的形成具有同时性,构造活动是河流阶地形成的主要控制因素.河流阶地的年龄测定结果表明,西昆仑山前河流阶地最早形成于约1.2Ma,T4、T3、T2阶地分别形成于约39ka、18ka和5ka.多级阶地的形成反映了河流自早更新世中期开始下切于活动抬升的西昆仑山.河流阶地的发育及区域对比揭示了西昆仑第四纪晚期以来的隆升过程,区域构造活动明显地影响河流的形态与行为.河流阶地的分布、地貌特征及区域对比表明,河流阶地的形成与演化受新构造活动、山脉隆升、气候变化等多种因素的影响.
西昆崙山前河流普遍髮育6級階地,利用光釋光(OSL)與熱釋光(TL)方法對採自西昆崙山前幾條主要河流的低階地堆積物樣品進行年代測定.研究結果顯示,主要河流低階地的形成具有同時性,構造活動是河流階地形成的主要控製因素.河流階地的年齡測定結果錶明,西昆崙山前河流階地最早形成于約1.2Ma,T4、T3、T2階地分彆形成于約39ka、18ka和5ka.多級階地的形成反映瞭河流自早更新世中期開始下切于活動抬升的西昆崙山.河流階地的髮育及區域對比揭示瞭西昆崙第四紀晚期以來的隆升過程,區域構造活動明顯地影響河流的形態與行為.河流階地的分佈、地貌特徵及區域對比錶明,河流階地的形成與縯化受新構造活動、山脈隆升、氣候變化等多種因素的影響.
서곤륜산전하류보편발육6급계지,이용광석광(OSL)여열석광(TL)방법대채자서곤륜산전궤조주요하류적저계지퇴적물양품진행년대측정.연구결과현시,주요하류저계지적형성구유동시성,구조활동시하류계지형성적주요공제인소.하류계지적년령측정결과표명,서곤륜산전하류계지최조형성우약1.2Ma,T4、T3、T2계지분별형성우약39ka、18ka화5ka.다급계지적형성반영료하류자조경신세중기개시하절우활동태승적서곤륜산.하류계지적발육급구역대비게시료서곤륜제사기만기이래적륭승과정,구역구조활동명현지영향하류적형태여행위.하류계지적분포、지모특정급구역대비표명,하류계지적형성여연화수신구조활동、산맥륭승、기후변화등다충인소적영향.
There are six levels of alluvial terraces in the piedmont area of western Kunlun. Dating tests are carried out by optical stimulated luminescence (OSL) and thermoluminescence (TL) method on lower terraces accumulates of several major rivers. It shows that the formation of these terraces happened in the same period, and the tectonic activity is the major controlling factor of the terraces. The age dating of river terraces shows that the river terraces formed at least at about 1.2Ma on the western Kunlun piedmont. The T4, T3 and T2 terraces formed at about 39ka, 18ka and 5ka, respectively. River incision into the actively uplift of the western Kunlun Mountains during the middle Early-Pleistocene time is reflected in the formation of numerous levels of river terraces. The development of river terraces and the regional geological correlation demonstrate that the uplift process of western Kunlun since Late Quaternary. Regional tectonic activity can significantly control river patterns and behavior. According to the distribution, geomorphic characteristics and correlation of river terraces, the formation and evolution of river terraces are controlled by the multiple effects of neotec-tonic, uplift and climate change.