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    • 2. 发明申请
    • HEAT TRANSFER COMPONENT AND HET TRANSFER PROCESS
    • 热传输部件和传输过程
    • US20130255931A1
    • 2013-10-03
    • US13690376
    • 2012-11-30
    • GENERAL ELECTRIC COMPANY
    • Michael Douglas ARNETTRebecca Evelyn HEFNER
    • F28F27/00
    • F28F27/00F28B1/02F28D5/00F28D7/106F28D15/02F28F13/06F28F13/12F28F2255/04
    • A heat transfer component and heat transfer process are disclosed. The heat transfer component includes thermally-responsive features positioned along a surface of the heat transfer component. The thermally-responsive features deploy from or retract toward the surface in response to a predetermined temperature change. The deploying from or the retracting toward of the thermally-responsive features increases or decreases a rate of heat transfer between a flow along the surface and the surface. The heat transfer process includes providing a heat transfer component having thermally-responsive features positioned along a surface of the heat transfer component; and increasing or decreasing a heat transfer rate between the surface and a flow by deploying the thermally-responsive features from or the retracting the thermally-responsive features toward the surface in response to a predetermined temperature change.
    • 公开了一种传热部件和传热过程。 传热部件包括沿着传热部件的表面定位的热响应特征。 响应于预定的温度变化,热响应特征从表面展开或缩回。 从热响应特征展开或向后回缩的方式增加或减少沿着表面和表面的流动之间的热传递速率。 传热过程包括提供具有沿着传热部件的表面定位的热响应特征的传热部件; 以及响应于预定的温度变化,通过从所述热响应特征部署所述热响应特征或使所述热响应特征朝向所述表面而增加或减少所述表面和流之间的热传递速率。
    • 6. 发明申请
    • THERMALLY-CONTROLLED COMPONENT AND THERMAL CONTROL PROCESS
    • 热控部件和热控制过程
    • US20130255248A1
    • 2013-10-03
    • US13690298
    • 2012-11-30
    • GENERAL ELECTRIC COMPANY
    • Paul Stephen DIMASCIOMichael Douglas ARNETTRebecca Evelyn HEFNER
    • F03G7/06
    • F03G7/06
    • A thermally-controlled component and thermal control process are disclosed. The thermally-controlled component includes thermally-responsive features. The thermally-responsive features are configured to modify a flow path to control temperature variation of the thermally-controlled component. The thermally-responsive features deploy from or retract toward a surface of the thermally-controlled component in response to a predetermined temperature change. The thermal control process includes modifying the flow path in the thermally-controlled component to control temperature variation of the thermally-controlled component and/or cooling a region of the thermally-controlled component through the thermally-responsive features deploying from or retracting toward a surface of the thermally-controlled component.
    • 公开了一种热控部件和热控制工艺。 热控制部件包括热响应特征。 热响应特征被配置为修改流路以控制热控部件的温度变化。 响应于预定的温度变化,热响应特征从热控部件的表面展开或缩回。 热控制过程包括修改热控部件中的流动路径以控制热控部件的温度变化和/或通过从表面向或朝向表面展开的热响应特征来冷却热控部件的区域 的热控部件。