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    • 3. 发明申请
    • PALEONEIGHBORHOOD HYDROCARBON SPATIAL SYSTEM
    • PALEONEIGHBORHOOD油气空间系统
    • US20120023118A1
    • 2012-01-26
    • US13123952
    • 2009-12-23
    • Berengere Savary-SismondiniPierre Le GuernErik MonsenHallgrim LudvigsenTrond BenumKnut S. BogeLars Sonneland
    • Berengere Savary-SismondiniPierre Le GuernErik MonsenHallgrim LudvigsenTrond BenumKnut S. BogeLars Sonneland
    • G06F17/30
    • G01V9/00G01V99/005
    • A paleogeographic search system is provided for locating geoscience data relevant to a geographic search aperture. The paleogeographic search system comprises a geodatabase, an interface, a paleogeographic reconstruction engine, and a host processor. The paleogeographic engine is configured to transform the geographic search aperture according to tectonic plate movements to a transformed search aperture that the geographic search aperture occupied in a geological age of interest. The host processor is configured to apply a paleoaugmented geographic search aperture to a geodatabase for additional oil exploration data relevant to the geographic search aperture today. The paleoaugmented geographic search aperture is defined by augmenting the transformed search aperture to include relevant proximal locations for the selected geological age of interest to create an augmented transformed search area; and transforming the augmented transformed search aperture, according to tectonic plate movements, to the paleoaugmented geographic search aperture in present day world geography.
    • 提供古地理搜索系统用于定位与地理搜索孔径相关的地球科学数据。 古地理学搜索系统包括地理数据库,界面,古地理重建引擎和主机处理器。 古地理引擎被配置为根据构造板移动将地理搜索孔径转换成在感兴趣的地质年龄中占据的地理搜索孔径的变换搜索孔径。 主机处理器被配置为将古建筑地理搜索孔径应用于地理数据库,用于与当今的地理搜索孔口相关的附加石油勘探数据。 通过增加变换的搜索孔径以包括所选择的所选地质年龄的相关近端位置来创建增强的变换搜索区域来定义古建筑地理搜索孔径; 并根据构造板块运动将增强的变换搜索孔径转换为当今世界地理学中古老的地理搜索孔径。
    • 4. 发明授权
    • Paleoneighborhood hydrocarbon spatial system
    • Paleoneighborhood碳氢化合物空间系统
    • US08229950B2
    • 2012-07-24
    • US13123952
    • 2009-12-23
    • Berengere Savary-SismondiniPierre Le GuernErik MonsenHallgrim LudvigsenTrond BenumKnut S. BogeLars Sonneland
    • Berengere Savary-SismondiniPierre Le GuernErik MonsenHallgrim LudvigsenTrond BenumKnut S. BogeLars Sonneland
    • G06F17/30G01V7/00G01V1/40
    • G01V9/00G01V99/005
    • A paleogeographic search system is provided for locating geoscience data relevant to a geographic search aperture. The paleogeographic search system comprises a geodatabase, an interface, a paleogeographic reconstruction engine, and a host processor. The paleogeographic engine is configured to transform the geographic search aperture according to tectonic plate movements to a transformed search aperture that the geographic search aperture occupied in a geological age of interest. The host processor is configured to apply a paleoaugmented geographic search aperture to a geodatabase for additional oil exploration data relevant to the geographic search aperture today. The paleoaugmented geographic search aperture is defined by augmenting the transformed search aperture to include relevant proximal locations for the selected geological age of interest to create an augmented transformed search area; and transforming the augmented transformed search aperture, according to tectonic plate movements, to the paleoaugmented geographic search aperture in present day world geography.
    • 提供古地理搜索系统用于定位与地理搜索孔径相关的地球科学数据。 古地理学搜索系统包括地理数据库,界面,古地理重建引擎和主机处理器。 古地理引擎被配置为根据构造板移动将地理搜索孔径转换成在感兴趣的地质年龄中占据的地理搜索孔径的变换搜索孔径。 主机处理器被配置为将古建筑地理搜索孔径应用于地理数据库,用于与当今的地理搜索孔口相关的附加石油勘探数据。 通过增加变换的搜索孔径以包括所选择的所选地质年龄的相关近端位置来创建增强的变换搜索区域来定义古建筑地理搜索孔径; 并根据构造板块运动将增强的变换搜索孔径转换为当今世界地理学中古老的地理搜索孔径。
    • 7. 发明申请
    • PROCESSING OF STRATIGRAPHIC DATA
    • 地层数据处理
    • US20080140319A1
    • 2008-06-12
    • US11950870
    • 2007-12-05
    • Erik MonsenHilde Grude BorgosTorbjorn Eikli SmorgravLars Sonneland
    • Erik MonsenHilde Grude BorgosTorbjorn Eikli SmorgravLars Sonneland
    • G01V1/30G06F19/00
    • G01V11/00
    • A method of processing stratigraphic data comprising a plurality of stratigraphic features, such as horizon surfaces, within a geological volume is provided. The method includes the steps of: extending a plurality of spaced sampling traces through the volume to traverse the stratigraphic features; and assigning the stratigraphic features respective relative geological ages. On each sampling trace, the relative geological age of each stratigraphic feature traversed by the sampling trace in the direction from geologically younger to geologically older stratigraphic features is increased in relation to the relative geological age of its preceding stratigraphic feature, under the condition that each stratigraphic feature takes the same relative geological age across all the sampling traces by which it is traversed.
    • 提供了一种在地质体积内处理包括多个地层特征(例如水平面)的地层数据的方法。 该方法包括以下步骤:将多个间隔开的采样迹线延伸穿过该体积以横穿地层特征; 并分配地层特征各自的相对地质年龄。 在每个取样轨迹上,采样轨迹沿地质年龄和地质年龄较大的地层特征方向所遍历的每个地层特征的相对地质年龄相对于其先前地层特征的相对地质年龄而增加,条件是每个地层 特征在穿过所有取样轨迹上具有相同的相对地质年龄。
    • 8. 发明授权
    • Processing of stratigraphic data
    • 地层数据处理
    • US08219322B2
    • 2012-07-10
    • US11950870
    • 2007-12-05
    • Erik MonsenHilde Grude BorgosTorbjorn Eikli SmorgravLars Sonneland
    • Erik MonsenHilde Grude BorgosTorbjorn Eikli SmorgravLars Sonneland
    • G01V1/00G01R13/02
    • G01V11/00
    • A method of processing stratigraphic data comprising a plurality of stratigraphic features, such as horizon surfaces, within a geological volume is provided. The method includes the steps of: extending a plurality of spaced sampling traces through the volume to traverse the stratigraphic features; and assigning the stratigraphic features respective relative geological ages. On each sampling trace, the relative geological age of each stratigraphic feature traversed by the sampling trace in the direction from geologically younger to geologically older stratigraphic features is increased in relation to the relative geological age of its preceding stratigraphic feature, under the condition that each stratigraphic feature takes the same relative geological age across all the sampling traces by which it is traversed.
    • 提供了一种在地质体积内处理包括多个地层特征(例如水平面)的地层数据的方法。 该方法包括以下步骤:将多个间隔开的采样迹线延伸穿过该体积以横穿地层特征; 并分配地层特征各自的相对地质年龄。 在每个取样轨迹上,采样轨迹沿地质年龄和地质年龄较大的地层特征方向所遍历的每个地层特征的相对地质年龄相对于其先前地层特征的相对地质年龄而增加,条件是每个地层 特征在穿过所有取样轨迹上具有相同的相对地质年龄。