Structural characterization of the Phitsanulok basin, onshore Thailand, and regional tectonic implications

Marine and Petroleum Geology - Tập 130 - Trang 105110 - 2021
Phinphorn Amonpantang1,2, Jonny Wu1
1University of Houston, Earth and Atmospheric Sciences Department, Science & Research Building 1, 3507 Cullen Blvd, Rm. 312, Houston, TX, 77204-5007, USA
2PTT Exploration and Production Public Company Limited, 555/1 Energy Complex Building A, 6th Floor & 19th - 36th Floor, Vibhavadi-Rangsit Road, Chatuchak, Chatuchak, Bangkok, 10900, Thailand

Tài liệu tham khảo

Bahae, 2017, 80 Bal, 1992, The tertiary Phitsanulok lacustrine basin, Thailand, 258 Brooks, 1986 Charusiri, 2002, Geotectonic evolution of Thailand: a new synthesis, Journal of Geology Society Thailand, 1, 1 Dew, 2018, Probing into Thailand's basement: new insights from U–Pb geochronology, Sr, Sm–Nd, Pb and Lu–Hf isotopic systems from granitoids, Lithos, 320–321, 332, 10.1016/j.lithos.2018.09.019 Flint, 1988, Aspects of reservoir geology and production behavior of Sirikit oil field, Thailand: an integrated study using well and 3-D seismic data, AAPG (Am. Assoc. Pet. Geol.) Bull., 72, 1254 Knox, 1983, An introduction to the geology of the Phitsanulok Basin, 1 McClay, 1987, Geometries of extensional fault systems developed in model experiments, Geology, 15, 341, 10.1130/0091-7613(1987)15<341:GOEFSD>2.0.CO;2 Milsom, 2011, Regional geophysics, 493 Morley, 2011, Structural geology of Thailand during the Cenozoic Modern tectonic setting of Thailand, 273 Morley, 2007, Fault superimposition and linkage resulting from stress changes during rifting: examples from 3D seismic data, Phitsanulok Basin, Thailand, J. Struct. Geol., 29, 646, 10.1016/j.jsg.2006.11.005 Morley, 2004, Activation of rift oblique and rift parallel pre-existing fabrics during extension and their effect on deformation style: examples from the rifts of Thailand, J. Struct. Geol., 26, 1803, 10.1016/j.jsg.2004.02.014 Morley, 2001, Late Oligocene–Recent stress evolution in rift basins of northern and central Thailand: implications for escape tectonics, Tectonophysics, 334, 115, 10.1016/S0040-1951(00)00300-0 Morley, 2009, Geometry and evolution of low‐angle normal faults (LANF) within a Cenozoic high‐angle rift system, Thailand: implications for sedimentology and the mechanisms of LANF development, Tectonics, 28, 10.1029/2007TC002202 Morley, 2015, Five anomalous structural aspects of rift basins in Thailand and their impact on petroleum systems, Industrial Structural Geology: Principles, Techniques and Integration, 421, 143 Morley, 2017, The impact of multiple extension events, stress rotation and inherited fabrics on normal fault geometries and evolution in the Cenozoic rift basins of Thailand, Geological Society, London, Special Publications, 439, 413, 10.1144/SP439.3 Morley, 2011, Tertiary stratigraphy, 223 Pailoplee, 2014, Earthquake catalogue of the Thailand meteorological department—a commentary, Journal of Earthquake and Tsunami, 8, 147100, 10.1142/S1793431114710018 Polachan, 1991, Development of cenozoic basins in Thailand, Mar. Petrol. Geol., 8, 84, 10.1016/0264-8172(91)90047-5 Pubellier, 2014, The basins of Sundaland (SE Asia): evolution and boundary conditions, Mar. Petrol. Geol., 58, 555, 10.1016/j.marpetgeo.2013.11.019 Serle, 2011, Tectonic and thermal evolution of Thailand in the regional context of SE Asia, 539 Simons, 2007, A decade of GPS in Southeast Asia: resolving Sundaland motion and boundaries, J. Geophys. Res.: Solid Earth, 112 Tingay, 2010, Present-day stress orientation in Thailand's basins, J. Struct. Geol., 32, 235, 10.1016/j.jsg.2009.11.008