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    • 5. 发明申请
    • METHOD AND APPARATUS FOR ELECTRICAL BUS CENTERING
    • 电气总线中心的方法和装置
    • WO2010138234A1
    • 2010-12-02
    • PCT/US2010/028473
    • 2010-03-24
    • GENERAL ELECTRIC COMPANYKARIPIDES, David, DimitriZHOU, RuiRADUN, Arthur, VorwerkHUANG, Hao
    • KARIPIDES, David, DimitriZHOU, RuiRADUN, Arthur, VorwerkHUANG, Hao
    • H02M7/487H02M1/00
    • H02M7/487H02M1/00
    • A bus centering device for use in an aircraft electrical power distribution system that includes a positive bus rail, a negative bus rail, and a ground is described. The device includes a central node, a first and second switching component configured to couple the central node to the positive rail and the negative rail for a first and second predetermined duty cycle, respectively. The device includes an inductive component coupled between the central node and ground, and is configured to maintain a voltage at the central node substantially equal to ground, wherein a voltage between the positive rail and the central node is maintained substantially equal to a voltage between the negative rail and the central node. The device includes a first and second current limiting device configured to maintain a continuity of current from the inductive component when the first and second switching components are turned off.
    • 描述了一种用于包括正母线,负母线和地面的飞机配电系统的总线定心装置。 该装置包括中央节点,第一和第二开关部件,其被配置成分别将第一和第二预定占空比将中心节点耦合到正轨和负轨。 该装置包括耦合在中心节点和地之间的电感部件,并且被配置为将中心节点处的电压基本上保持等于接地,其中正轨和中心节点之间的电压基本上等于 负轨和中心节点。 该装置包括第一和第二限流装置,其被配置为当第一和第二开关部件关闭时保持来自电感部件的电流的连续性。
    • 8. 发明申请
    • DISCRETIZED PHYSICS-BASED MODELS AND SIMULATIONS OF SUBTERRANEAN REGIONS, AND METHODS FOR CREATING AND USING THE SAME
    • 基于物理学的分层模型和模拟亚区域及其创建和使用方法
    • WO2011043862A1
    • 2011-04-14
    • PCT/US2010/045031
    • 2010-08-10
    • EXXONMOBIL UPSTREAM RESEARCH COMPANYWALLACE, Jon, M.HUANG, HaoWAN, Jing
    • WALLACE, Jon, M.HUANG, HaoWAN, Jing
    • G06G7/48
    • E21B49/00E21B43/00G01V99/00
    • Methods for creating and using discretized physics-based models of subsurface regions, which may contain a hydrocarbon reservoir or other subsurface feature(s). The methods may include selecting a pre-solved model, applying a mesh to the pre-solved model, defining the shape of the subsurface region to be modeled, and transforming the pre-solved model, to which the mesh has been applied, to the shape of the subsurface region. In some methods, the pre-solved model is an idealized model. In some methods, the mesh is applied to a solution of potential field lines associated with the pre-solved model, and in some methods, the solution of potential field lines is a composite solution of a plurality of solutions of potential field lines. In some methods, one or more supershapes are used to define the shape of the subsurface region. In some methods, a hyperelastic strain deformation calculation is utilized for the transforming.
    • 用于创建和使用可能包含烃储层或其他地下特征的地下区域的基于离散物理的模型的方法。 所述方法可以包括选择预先解决的模型,将网格应用于预先确定的模型,定义待建模的地下区域的形状,以及将已应用网格的预先解决的模型转换为 地下区域的形状。 在一些方法中,预先解决的模型是一个理想化的模型。 在一些方法中,将网格应用于与预定模型相关联的潜在场线的解,并且在一些方法中,势场线的解是多个势场解的解的复合解。 在一些方法中,使用一个或多个超级形状来限定地下区域的形状。 在一些方法中,使用超弹性应变变形计算进行变换。
    • 10. 发明申请
    • MODELING OF HYDROCARBON RESERVOIRS USING DESIGN OF EXPERIMENTS METHODS
    • 使用实验设计方法建立油气储层
    • WO2009139949A1
    • 2009-11-19
    • PCT/US2009/035855
    • 2009-03-03
    • EXXONMOBIL UPSTREAM RESEARCH COMPANYHUANG, HaoHSU, Sheng-YuanBURDETTE, Jason, A.ASMANN, Marcus
    • HUANG, HaoHSU, Sheng-YuanBURDETTE, Jason, A.ASMANN, Marcus
    • G06F7/60
    • E21B43/00
    • Methods for generating a surrogate model for subsurface analysis may include identifying input parameters for the subsurface analysis, and selecting a range of values for the identified parameters. The methods also include selecting a design of experiments method for filling sampling points within the ranges of values for the identified input parameters. The design of experiments method may be a classical method or a space-filling technique. The methods also include filling sampling points within the ranges of values for the identified input parameters. The sampling points are filled based on the design of experiments method selected. The methods further include acquiring output values for each of the selected sampling points, and constructing a surrogate model based upon the output values for at least some of the selected sampling points. The surrogate model is a mathematical equation that represents a simplified model for predicting solutions to complex reservoir engineering problems.
    • 用于生成用于地下分析的替代模型的方法可以包括识别用于地下分析的输入参数,以及为所识别的参数选择值的范围。 所述方法还包括选择用于在所识别的输入参数的值的范围内填充采样点的实验方法的设计。 实验方法的设计可以是经典的方法或空间填充技术。 这些方法还包括在所识别的输入参数的值的范围内填充采样点。 基于所选实验方法的设计填充采样点。 所述方法还包括获取每个所选择的采样点的输出值,以及基于所选择的采样点中的至少一些的输出值构建代理模型。 代理模型是一个数学方程,代表了一个简化的模型,用于预测复杂油藏工程问题的解决方案。