CENOZOIC EVOLUTION OF THE SAVU BASIN, INDONESIA - FORE-ARC BASIN RESPONSE TO ARC-CONTINENT COLLISION

被引:20
|
作者
VANDERWERFF, W
机构
[1] Netherlands Institute for Sea Research, 1790 AB Den Burg, Texel
关键词
SAVU BASIN; INDONESIA; FORE-ARC BASIN; ARC-CONTINENT COLLISION;
D O I
10.1016/0264-8172(95)98378-I
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
A seismo-stratigraphic analysis of the Savu Basin relates the evolution of a complexly evolved forearc basin to the late Miocene-Recent collision with Australia, initial early Miocene subsidence of the outer forearc basin and the subsequent development of a middle-late Miocene volcanic 'proto' are, located in the south of the basin, both resulted from the late Oligocene-early Miocene eastward propagation of the Java/Timor Trench. Block-faulting of the relatively thick continental forearc basement probably determined the rather irregular and scattered pattern of middle-late Miocene volcanic centres. Just north of the accretionary prism, the forearc basement is flexed down and reshaped into a trenchward dipping backstop that facilitates backthrusting of the accretionary prism. The southern forearc basement probably acted as a barrier against compression. The thickness of this continental basement is suggested to be a critical factor in the response of the forearc to continent collision. Owing to its strength, the Savu Basin did not react to collision by the development of northward verging 'inter-arc' thrusts. In contrast, it responded to the underthrusting of continental crust by reactivation of the basement ridges. This resulted in the differentiation of the forearc basin into a presently extinct and uplifted Miocene South Savu Basin and a Pliocene-Recent active North Savu Basin. The simultaneous late Miocene-Recent uplift of large segments of the outer forearc and subsidence of the North Savu Basin is interpreted to result from tectonic underplating of continental material and uplift caused by the buoyancy of the subducted continental crust. The relatively recent decoupling of this crust from the oceanic slab, and the subsequent isostatic rebound, may superimpose the initial effects of post-collision extension on are-continent collision.
引用
收藏
页码:247 / 262
页数:16
相关论文
共 50 条
  • [31] Long-term fore-arc basin evolution in response to changing subduction styles in southern Alaska
    Finzel, Emily S.
    Enkelmann, Eva
    Falkowski, Sarah
    Hedeen, Tyler
    TECTONICS, 2016, 35 (07) : 1735 - 1759
  • [32] SEISMIC REFRACTION STUDIES OF THE SUNDA TRENCH AND FORE-ARC BASIN
    KIECKHEFER, RM
    SHOR, GG
    CURRAY, JR
    SUGIARTA, W
    HEHUWAT, F
    JOURNAL OF GEOPHYSICAL RESEARCH, 1980, 85 (NB2): : 863 - 889
  • [33] TERTIARY TECTONICS AND SEDIMENTATION IN THE SALIN (FORE-ARC) BASIN, MYANMAR
    TREVENA, AS
    VARGA, RJ
    COLLINS, ID
    NU, U
    AAPG BULLETIN-AMERICAN ASSOCIATION OF PETROLEUM GEOLOGISTS, 1991, 75 (03): : 683 - 683
  • [34] SEISMIC STRATIGRAPHIC FRAMEWORK OF THE FORE-ARC BASIN, WEST SUMATRA
    BEAUDRY, D
    MOORE, GF
    GEOPHYSICS, 1981, 46 (04) : 422 - 422
  • [35] OBLIQUE SUBDUCTION AND COLLISION - FORE-ARC TECTONICS OF THE KURIL ARC
    KIMURA, G
    GEOLOGY, 1986, 14 (05) : 404 - 407
  • [36] Arc-continent collision in the Southern Urals
    Brown, D.
    Spadea, P.
    Puchkov, V.
    Alvarez-Marron, J.
    Herrington, R.
    Willner, A. P.
    Hetzel, R.
    Gorozhanina, Y.
    Juhlin, C.
    EARTH-SCIENCE REVIEWS, 2006, 79 (3-4) : 261 - 287
  • [37] PETROFACIES AND PETROLOGIC EVOLUTION OF LATE CRETACEOUS FORE-ARC BASIN, NORTHERN AND CENTRAL CALIFORNIA
    INGERSOLL, RV
    JOURNAL OF GEOLOGY, 1978, 86 (03): : 335 - 352
  • [38] Processes of arc-continent collision - Preface
    Brown, D
    Spadea, P
    Anma, R
    TECTONOPHYSICS, 2000, 325 (1-2) : VII - VIII
  • [39] POSTCOLLISION EXTENSION IN ARC-CONTINENT COLLISION ZONES, EASTERN INDONESIA - COMMENT
    HARRIS, RA
    WU, S
    GEOLOGY, 1992, 20 (01) : 92 - 93