[1]
|
石广仁 (2009) 盆地模拟技术30年回顾与展望. 石油工业计算机应用, 1, 3-6.
|
[2]
|
米石云 (2009) 盆地模拟技术研究现状及发展方向. 中国石油勘探, 2, 55-65.
|
[3]
|
苑坤, 陈彬滔, 于兴河等 (2010) 盆地模拟技术与BasinMod软件应用. 沉积与特提斯地质, 2, 55-60.
|
[4]
|
张庆春, 石广仁, 田在艺等 (2001) 盆地模拟技术的发展现状与未来展望. 石油实验地质, 3, 312-317.
|
[5]
|
石广仁, 李阿梅, 张庆春等 (1997) 盆地模拟技术新进展(一, 国内外发展状况. 石油勘探与开发, 3, 38-40.
|
[6]
|
罗霞, 闫昭岷, 王楠等 (2004) 应用PetroMod软件研究车西地区含油气系统. 油气地质与采收率, 2, 34-36.
|
[7]
|
陶宗普, 陈春强, 徐中祥等 (2005) 层序地层格架中含油气系统及其分类探讨——以查干凹陷下白垩统K_1b-K_1s含油气系统为例. 石油天然气学报, Z4, 552-555.
|
[8]
|
汪泽成, 赵文智, 张水昌等 (2007) 成藏三要素的耦合对高效气藏形成的控制作用——以四川盆地川东北飞仙关组鲕滩气藏为例. 科学通报, A01, 156-166.
|
[9]
|
吴景富, 何大伟, 张云飞等 (1999) 含油气盆地成藏动力学系统模拟评价方法. 中国海上油气, 4, 240-247.
|
[10]
|
Mancini, E.A., Li, P., Goddard, D.A., et al. (2008) Mesozoic (Upper Jurassic-Lower Cretaceous) deep gas reservoir play, cen- tral and eastern Gulf coastal plain. AAPG Bulletin, 92, 283-308.
|
[11]
|
刘景东, 蒋有录, 高平等 (2010) 东濮凹陷濮卫地区地层压力演化及其与油气运聚的关系. 中国石油大学学报(自然科学版), 5, 25-37.
|
[12]
|
张厚福, 徐兆辉, 王露等 (2010) 油气藏研究的发展趋势预测. 石油学报, 1, 165-172.
|
[13]
|
朱建军 ()2007 TSM一维盆地模拟系统集成研发. 硕士论文, 苏州大学, 苏州.
|
[14]
|
徐晨光 (2001) 烃源岩油气藏评价模拟系统设计与软件初步. 硕士论文, 西北大学, 西安.
|
[15]
|
Sani, A. and Bachir, M. (2006) 中国南海珠江口盆地白云凹陷番禺低凸起热史模拟及油气运移分析. 硕士论文, 中国地质大学, 武汉.
|
[16]
|
王斌, 赵永强, 罗宇等 (2010) 塔里木盆地草湖凹陷热演化与生烃史——基于IES软件盆地模拟技术. 石油实验地质, 6, 605-609.
|
[17]
|
郭小文 (2010) 含油气盆地生烃增压演化研究——以东营凹陷和白云凹陷为例. 硕士论文, 中国地质大学, 武汉.
|
[18]
|
马良 (2009) 南堡凹陷油气运聚动力学模拟及有利勘探目标预测. 硕士论文, 中国地质大学, 武汉.
|
[19]
|
Ondrak, R., Gaedicke, C.,Horsfield, B., et al. (2009) Combining 2D-basin and structural modelling to constrain heat transport along the Muroto Transect, Nankai Trough, Japan. Marine and Petroleum Geology, 26, 580-589.
|
[20]
|
Resak, M., Glasmacher, U.A., Narkiewiczc, M., et al. (2010) Re- print of: Maturity modelling integrated with apatite fission-track dating: Implications for the thermal history of the Mid-Polish Trough (Poland). Marine and Petroleum Geology, 12, 724-731.
|
[21]
|
Kuhn, P.P., Echtler, H., Littke, R., et al. (2009) Thermal basin modelling of the Arauco forearc basin, south central Chile— Heat flow and active margin tectonics. Tectonophysics, 26, 111- 128.
|
[22]
|
Belaid, A., Krooss, B.M., Littke, R., et al. (2009) Thermal his- tory and source rock characterization of a Paleozoic section in the Awbari Trough, Murzuq Basin, SW Libya. Marine and Pe- troleum Geology, 6, 612-632.
|
[23]
|
Arouri, K.R., Van Laer, P.J., Prudden, M.H., et al. (2010) Con- trols on hydrocarbon properties in a Paleozoic pe-troleum system in Saudi Arabia: Exploration and development implications. AAPG Bulletin, 94, 163-188.
|
[24]
|
Higley, D.K., Lewan, M.D., Roberts, L.N.R., et al. (2009) Tim- ing and petroleum sources for the Lower Cretaceous Mannville Group oil sands of northern Alberta based on 4-D modeling. AAPG Bulletin, 93, 203-230.
|
[25]
|
徐旭辉, 江兴歌, 朱建辉等 (2006) TSM盆地模拟. 第二届中国石油地质年会——中国油气勘探潜力及可持续发展论文集,中国会议, 521-531.
|
[26]
|
马新海, 张革 (2008) 塔里木盆地孔雀河地区单井盆地模拟分析. 内蒙古石油化工, 10, 38-341.
|
[27]
|
方国庆 (1991) 盆地模拟——盆地研究中的热门课题. 天然气地球科学, 1, 30-33.
|
[28]
|
方石, 孙求实, 谢荣祥等 (2012) 平衡剖面技术原理及其研究进展. 科学导报, 8, 73-79.
|
[29]
|
彭雪花, 张群燕, 陈伟等 (2008) 盆地模拟软件Basin2的使用. 西部探矿工程, 12, 121-123.
|
[30]
|
崔护社, 王明君, 王其允等 (1996) 超级盆地模拟系统—— PROBASES. 中国海上油气(地质), 5, 304-310.
|
[31]
|
石广仁, 李惠芬, 王素明等 (1989) 一维盆地模拟系统BASl. 石油勘探与开发, 6, 1-10.
|
[32]
|
曹烈, 王信, 黎青等 (2012) 川中资阳地区须家河组含油气系统及勘探前景分析. 天然气勘探与开发, 4, 1-5.
|
[33]
|
Allwardt, J.R., Eric Michael, G., Shearer, C.R., et al. (2009) 2D modeling of overpressure in a salt withdrawal basin, Gulf of Mexico, USA. Marine and Petroleum Geology, 26, 464-473.
|
[34]
|
Kroeger, K.F., Ondrak, R., di Primio, R., et al. (2008) A three-dimensional insight into the Mackenzie Basin (Canada), implications for the thermal history and hydrocarbon generation potential of Tertiary deltaic sequences. AAPG Bulletin, 92, 225- 247.
|
[35]
|
Petersen, H.I., Mathiesen, A., Fyhn, M.B.W., et al. (2011) Mod- eling of petroleumgeneration in the Vietnamese part of the Ma- lay Basin using measured kinetics. AAPG Bulletin, 95, 509-536.
|
[36]
|
Arostegui, J., Sangu Esa, F.J., Nieto, F., et al. (2006) Thermal models and clay diagenesis in the Tertiary-Cretaceous sediments of the Alava block (Basque-Cantabrian basin, Spain). Clay Min- erals, 41, 791-809.
|
[37]
|
Kinley, T.J., Cook, L.W., Breyer, J.A., et al. (2008) Hydrocarbon potential of the Barnett Shale (Mississippian), Delaware Basin, west Texas and southeastern New Mexico. AAPG Bulletin, 92, 967-991.
|
[38]
|
Kroeger, K.F., di Primio, R. and Horsfield, B. (2009) Hydrocar- bon flow modeling in complex structures (Mackenzie Basin, Canada). AAPG Bulletin, 93, 1209-1234.
|
[39]
|
Brincat, M., Gartrell, A., Lisk, M., et al. (2006) An integrated evaluation of hydrocarbon charge and retention at the Griffin, Chinook, and Scindian oil and gas fields, Barrow Subbasin, North West Shelf, Australia. AAPG Bulletin, 90, 1359-1380.
|
[40]
|
Hu, L.G., Fuhrmann, A., Poelchau, H.S., et al. (2005) Numerical simulation of petroleum generation and migration in the Qing- shui sag, western depression of the Liaohe basin, northeast China. AAPG Bulletin, 89, 1629-1649.
|
[41]
|
Manna, U., Knies, J., Chand, S., et al. (2009) Evaluation and modelling of Tertiary source rocks in the central Arctic Ocean. Marine and Petroleum Geology, 26, 1624-1639.
|
[42]
|
Amir, L., Martinez, L., Disnar, J.-R., et al. (2008) Implications of spatial and temporal evolutions of thermal parameters in basin modeling. Marine and Petroleum Geology, 25, 759-766.
|