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    • 1. 发明申请
    • SUN-SHADOW SIMULATION IN A GEOSPATIAL SYSTEM
    • 地球系统中的SUN-SHADOW模拟
    • WO2009046331A1
    • 2009-04-09
    • PCT/US2008/078795
    • 2008-10-03
    • AUTODESK, INC.HOWARD, Richard, D.
    • HOWARD, Richard, D.
    • G06T15/50
    • G06F17/30241G06T17/05G06T19/00
    • A method, apparatus, and article of manufacture provide the ability to display a sun and shadow simulation in a 3D system. A 3D view of a real world scene is displayed, using a 3D graphics application, on a display device. A plug-in is installed into the application. A calendar period (e.g., a month, day, and year) is defined by the user. A timeline arc is displayed with the calendar period defining a radius of the arc, and starting stopping endpoints of the timeline arc defining an interval of time during the calendar period. A timeline slider is displayed on the arc that indicates a time of day within the calendar period. A visualization is displayed, in the 3D view, of shadows cast by a sun on objects in the 3D view. A position of the sun is based on the calendar period and the time of day.
    • 一种方法,装置和制品提供了在3D系统中显示太阳和阴影模拟的能力。 使用3D图形应用程序在显示设备上显示现实世界场景的3D视图。 一个插件被安装到应用程序中。 日历期间(例如,月,日,年)由用户定义。 显示时间线弧,其中日历周期定义弧的半径,并且开始停止时间线弧的终点,定义日历周期内的时间间隔。 时间轴滑块显示在指示日历时段内的时间的弧线上。 在3D视图中,可以在3D视图中的对象上显示由太阳投射的阴影。 太阳的位置是基于日历时间和时间。
    • 4. 发明申请
    • CYLINDRICAL MEMBER MAINTENANCE DEVICE
    • 圆柱会员维护装置
    • WO2007086865A1
    • 2007-08-02
    • PCT/US2006/003093
    • 2006-01-27
    • HUEMANN, Steven, A.HOWARD, Richard, D.
    • HUEMANN, Steven, A.HOWARD, Richard, D.
    • B08B9/023B08B1/02B08B1/04B08B3/02
    • E01D19/106B05B13/0207B08B1/008B08B1/02B08B1/04B08B3/022B08B3/024B08B9/023E01D19/16
    • A cylindrical member maintenance device is comprised of a housing (10) comprised of two hinged halves (11, 12) for being closed around a cylindrical member (13), such as a stranded steel cable. A rotary helical brush assembly (21) and a rotary longitudinal brush assembly (22) are positioned in the housing and rotatable about an axis of the housing. Each rotary brush assembly is comprised of coaxial split rings (23, 26) with rotary cylindrical wire brushes (25, 28) connected in between and which are independently rotatable about their own axes. Nozzles (29) are positioned on the inside of the housing for applying a cleaning fluid or paint to the cylindrical member. Apertures (32) in the housing are for connecting to a suction device for removing debris, cleaning fluid, and paint to avoid contaminating the environment. Loops (18) on the housing are for attaching to cables for moving the housing along the cylindrical member.
    • 圆柱形构件维护装置包括由两个铰接半部(11,12)组成的壳体(10),用于围绕诸如绞合钢缆的圆柱形构件(13)封闭。 旋转螺旋刷组件(21)和旋转纵向刷组件(22)定位在壳体中并可围绕壳体的轴线旋转。 每个旋转刷组件包括具有连接在其间的旋转圆柱形线刷(25,28)的同轴开口环(23,26),并且可以围绕它们自己的轴独立地旋转。 喷嘴(29)位于壳体的内侧,用于将清洁流体或涂料施加到圆柱形构件。 外壳中的孔(32)用于连接到抽吸装置,用于清除碎屑,清洁液和油漆,以避免污染环境。 壳体上的环(18)用于连接到沿着圆柱形构件移动壳体的电缆。