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    • 1. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATIC GENERATION AND USAGE OF FLUID FLOW LOSS COEFFICIENTS FOR T-JUNCTIONS
    • 用于自动生成和使用流体流动损失系数的系统和方法
    • US20120303345A1
    • 2012-11-29
    • US13479324
    • 2012-05-24
    • Sunil KumarVikram Mangat
    • Sunil KumarVikram Mangat
    • G06G7/57
    • G06F17/5018
    • A system and method for automatic generation and usage of fluid flow loss coefficients for T-junctions is disclosed. In one embodiment, a list of possible T-junctions is created using given geometric and flow parameters. Further, journal files are created using the geometric and the flow parameters associated with each T-junction. The journal files associated with each T-junction are pre-processed for creating a volume mesh. Boundary conditions and material properties for the volume mesh associated with each T-junction are defined. Simulation is performed using the volume mesh, the boundary conditions and the material properties associated with each T-junction to determine flow characteristics. Fluid flow loss coefficients for each T-junction are computed using the flow characteristics.
    • 公开了一种用于T形接头的流体流动损失系数的自动生成和使用的系统和方法。 在一个实施例中,使用给定的几何和流动参数创建可能的T形结的列表。 此外,使用与每个T形结点相关联的几何和流动参数来创建日志文件。 与每个T-junction相关联的日记文件已预处理,用于创建卷网格。 定义了与每个T形接头相关联的体积网格的边界条件和材料性质。 使用体积网格,边界条件和与每个T形结点相关联的材料性质来进行模拟以确定流动特性。 使用流动特性计算每个T形接头的流体流动损失系数。
    • 2. 发明授权
    • System and method for automatic generation and usage of fluid flow loss coefficients for T-junctions
    • 用于自动生成和使用T型接头的流体流动损失系数的系统和方法
    • US09009008B2
    • 2015-04-14
    • US13479324
    • 2012-05-24
    • Sunil KumarVikram Mangat
    • Sunil KumarVikram Mangat
    • G06F17/50
    • G06F17/5018
    • A system and method for automatic generation and usage of fluid flow loss coefficients for T-junctions is disclosed. In one embodiment, a list of possible T-junctions is created using given geometric and flow parameters. Further, journal files are created using the geometric and the flow parameters associated with each T-junction. The journal files associated with each T-junction are pre-processed for creating a volume mesh. Boundary conditions and material properties for the volume mesh associated with each T-junction are defined. Simulation is performed using the volume mesh, the boundary conditions and the material properties associated with each T-junction to determine flow characteristics. Fluid flow loss coefficients for each T-junction are computed using the flow characteristics.
    • 公开了一种用于T形接头的流体流动损失系数的自动生成和使用的系统和方法。 在一个实施例中,使用给定的几何和流动参数创建可能的T形结的列表。 此外,使用与每个T形结点相关联的几何和流动参数来创建日志文件。 与每个T-junction相关联的日记文件已预处理,用于创建卷网格。 定义了与每个T形接头相关联的体积网格的边界条件和材料性质。 使用体积网格,边界条件和与每个T形结点相关联的材料性质来进行模拟以确定流动特性。 使用流动特性计算每个T形接头的流体流动损失系数。
    • 9. 发明授权
    • Wellbore tools having superhydrophobic surfaces, components of such tools, and related methods
    • 具有超疏水表面的井筒工具,这种工具的组件以及相关方法
    • US08746375B2
    • 2014-06-10
    • US13111825
    • 2011-05-19
    • John HendrikSunil Kumar
    • John HendrikSunil Kumar
    • E21B10/46
    • E21B10/00B05D3/065B05D5/08
    • Wellbore tools include a body and a superhydrophobic surface disposed over at least a portion of the body. The superhydrophobic surface includes a patterned surface of a hydrophobic material exhibiting a higher hydrophobicity than an unpatterned surface of the hydrophobic material. A wellbore tool may include a seal, at least one sensor, and at least one flow line, each having at least one superhydrophobic surface. Methods of forming wellbore tools include forming a body, forming a hydrophobic surface over at least a portion of the body, and forming a pattern in a surface of the body, such that the patterned surface exhibits a higher hydrophobicity than an unpatterned surface of the same material.
    • 井筒工具包括设置在身体的至少一部分上的主体和超疏水表面。 超疏水表面包括疏水材料的图案化表面,其表现出比疏水材料的未图案化表面更高的疏水性。 井眼工具可以包括密封件,至少一个传感器和至少一个流动管线,每个流动管线具有至少一个超疏水表面。 形成井筒工具的方法包括形成一个主体,在该主体的至少一部分上形成疏水表面,并且在该主体的表面上形成图案,使得该图案化表面的疏水性比该相同的未图案化表面显示出更高的疏水性 材料。