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    • 1. 发明授权
    • Control rod guide tube and method for providing coolant to a nuclear reactor fuel assembly
    • 控制杆导向管和向核反应堆燃料组件提供冷却剂的方法
    • US08102961B2
    • 2012-01-24
    • US12715521
    • 2010-03-02
    • Birol AktasCarlton W. ClarkWilliam Earl Russell, II
    • Birol AktasCarlton W. ClarkWilliam Earl Russell, II
    • G21C19/00
    • G21C15/243G21C7/113G21C13/036G21Y2004/302Y02E30/40
    • Control rod guide tubes for a nuclear reactor having a body with an axial length that defines a lower end portion and an upper end portion and a cavity within a substantial length of the body. Orifices are included at the upper and lower end portions of the body. A control rod chamber is located within the cavity and is configured for receiving a control rod. A plurality of ports is coupled to the cavity and is positioned at a substantial length from the upper end portion of the body. Also included are at least two flow channels within the cavity that extend a substantial portion of the axial length of the body. Each flow channel is fluidly coupled to one or more of the ports for receiving fluid flow from outside the body and an outlet proximate to the upper end portion of the body for providing the received fluid flow.
    • 用于核反应堆的控制杆引导管具有主体,该主体具有限定下端部的轴向长度,以及在主体的相当长度内的上端部和空腔。 孔体包括在身体的上端部和下端部。 控制杆室位于空腔内并被构造成用于容纳控制杆。 多个端口联接到空腔并且被定位在距本体的上端部分相当长的位置。 还包括在空腔内的至少两个延伸主体的轴向长度的大部分的流动通道。 每个流动通道流体地联接到一个或多个端口,用于从主体外部接收流体流动,并且靠近主体的上端部分的出口用于提供接收的流体流。
    • 3. 发明授权
    • Control rod guide tube and method for providing coolant to a nuclear reactor fuel assembly
    • 控制杆导向管和向核反应堆燃料组件提供冷却剂的方法
    • US07672418B2
    • 2010-03-02
    • US11644485
    • 2006-12-22
    • Birol AktasCarlton W. ClarkWilliam Earl Russell, II
    • Birol AktasCarlton W. ClarkWilliam Earl Russell, II
    • G21C7/06
    • G21C15/243G21C7/113G21C13/036G21Y2004/302Y02E30/40
    • Control rod guide tubes for a nuclear reactor having a body with an axial length that defines a lower end portion and an upper end portion and a cavity within a substantial length of the body. Orifices are included at the upper and lower end portions of the body. A control rod chamber is located within the cavity and is configured for receiving a control rod. A plurality of ports is coupled to the cavity and is positioned at a substantial length from the upper end portion of the body. Also included are at least two flow channels within the cavity that extend a substantial portion of the axial length of the body. Each flow channel is fluidly coupled to one or more of the ports for receiving fluid flow from outside the body and an outlet proximate to the upper end portion of the body for providing the received fluid flow.
    • 用于核反应堆的控制杆引导管具有主体,该主体具有限定下端部的轴向长度,以及在主体的相当长度内的上端部和空腔。 孔体包括在身体的上端部和下端部。 控制杆室位于空腔内并被构造成用于容纳控制杆。 多个端口联接到空腔并且被定位在距本体的上端部分相当长的位置。 还包括在空腔内的至少两个延伸主体的轴向长度的大部分的流动通道。 每个流动通道流体地联接到一个或多个端口,用于从主体外部接收流体流动,并且靠近主体的上端部分的出口用于提供接收的流体流。
    • 7. 发明授权
    • Fuel bundle designs using mixed spacer types
    • 燃料束设计使用混合垫片类型
    • US08509377B2
    • 2013-08-13
    • US12572491
    • 2009-10-02
    • Birol Aktas
    • Birol Aktas
    • G21C3/34
    • G21C3/322G21C3/34G21C3/344G21C3/352Y02E30/38
    • Example embodiment fuel bundles use multiple types of spacers within the same fuel bundle. The type for each spacer location may be determined based on the axial position of the spacer, the characteristics of the spacer type, and the location and coolant characteristics for the particular example fuel bundle including the spacers. Historic performance data for the particular bundle location, predictive modeling, etc. may be used to determine what spacer types at which locations result in the best operating conditions and margins for example fuel bundles.
    • 示例性实施例燃料束在同一燃料束内使用多种类型的间隔物。 每个间隔件位置的类型可以基于间隔件的轴向位置,间隔件类型的特性以及包括间隔件的特定示例燃料束的位置和冷却剂特性来确定。 可以使用特定束位置,预测建模等的历史性能数据来确定哪些位置导致例如燃料束的最佳操作条件和余量的间隔物类型。