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    • 1. 发明授权
    • Particle beam target with improved heat transfer and related apparatus and methods
    • 具有改善热传递的粒子束靶和相关装置和方法
    • US08670513B2
    • 2014-03-11
    • US12434002
    • 2009-05-01
    • Matthew Hughes StokelyBruce W. Wieland
    • Matthew Hughes StokelyBruce W. Wieland
    • G21G1/04H05H6/00G21K5/08G21C23/00
    • H05H6/00G21G1/10
    • A particle beam target for producing radionuclides includes a target body, a target cavity, parallel grooves, peripheral bores, and radial outflow bores. The parallel grooves are formed in a back side of the target body and include respective first and second groove ends. The peripheral bores extend through the target body from the plurality of grooves generally toward the front side that receives a particle beam. Each groove communicates with a peripheral bore at the first groove end and another peripheral bore at the second groove end. The radial outflow bores extend radially from the plurality of peripheral bores. The target body defines a plurality of liquid coolant flow paths. Each liquid coolant flow path runs from a respective groove to at least one of the first groove end and the second groove end of the respective groove, through at least one peripheral bore, and through at least one radial outflow bore.
    • 用于产生放射性核素的粒子束靶包括靶体,目标腔,平行凹槽,周边孔和径向流出孔。 平行的槽形成在目标体的后侧,并且包括相应的第一和第二凹槽端。 周边孔从多个槽大致朝向接收粒子束的前侧延伸穿过目标体。 每个凹槽与第一凹槽端处的周边孔和第二凹槽端处的另一个周边孔连通。 径向流出孔从多个周边孔径向延伸。 目标体限定了多个液体冷却剂流动路径。 每个液体冷却剂流动路径从相应的凹槽延伸到相应凹槽的第一凹槽端部和第二凹槽端部中的至少一个,穿过至少一个圆周孔,并穿过至少一个径向流出孔。
    • 6. 发明申请
    • SYSTEM AND METHOD FOR WATER RESTORATION
    • 用于水恢复的系统和方法
    • US20110042324A1
    • 2011-02-24
    • US12888320
    • 2010-09-22
    • Matthew Hughes
    • Matthew Hughes
    • C02F1/40E02B15/10
    • C02F9/00C02F1/001C02F1/40C02F1/74C02F2103/007E02B15/106E02B15/108Y02A20/204
    • A polarized distribution of positive flow sources are deployed to at least partially circumscribe one side of an oily patch floating in a water region and negative flow sources deployed to at least partially circumscribe the other side of the oily patch. Water emanates near the water line level from the positive flow sources and water is aspirated near the water line level by the negative flow sources, both water emanation and aspiration collaboratively causing the oily patch to move from the positive flow source side towards the negative flow source side. Aspirated water surfaces containing the oily patch are processed to separate oil from water and return the water to the water region. The positive and negative flow sources may be deployed near a boat slip, a marina, an oil rig platform, or in open water between boats, and may be supported by floatation devices.
    • 部署正向流动源的极化分布以至少部分地限定漂浮在水域中的油性补片的一侧,并且部署至少部分地限定油性补片的另一侧的负流体源。 水源于正流动源附近的水线水位发生,水流在靠近水线的水流下由负流源吸出,水分散和吸气均协同使油性补片从正流动源侧向负流源移动 侧。 含有油性贴剂的吸水表面被处理以将油与水分离并将水返回到水域。 正和负流量源可以部署在船单,码头,石油钻井平台附近,或者在船之间的开放水域中,并且可以由浮动装置支撑。
    • 8. 发明授权
    • System and method for water restoration
    • 水恢复系统和方法
    • US07550079B2
    • 2009-06-23
    • US11678437
    • 2007-02-23
    • Matthew Hughes
    • Matthew Hughes
    • E02B15/04
    • C02F9/00C02F1/001C02F1/40C02F1/74C02F2103/007E02B15/04Y02A20/204Y10S210/923
    • System and method for water restoration to a water pool or to water regions associated with freshwater or saltwater marinas. Embodiments include a positive water flow device that works in unison with a negative water flow device, wherein the positive and negative flow devices are separated from each other in the water pool or water regions. The positive flow device, for example, a water jet, directs a stream of water beneath the water surface of the water pool or water regions, and causes a water surface to move towards the negative flow device by a hydraulic pushing action. The negative flow device includes a water pump and receiving port, augments the hydraulic pushing action by providing a complementary pulling action by applying a vacuum or negative pressure to a water receiving port, or scoop. Water laden, oily surface contaminants are then removed in the scoop as a water oil mixture that is subsequently separated to form an oil mixture for subsequent recycling and a clean water source that is restored for delivery back into the water pool or water regions.
    • 对水池或与淡水或盐水码头相关的水域进行水的恢复的系统和方法。 实施例包括与负水流装置一致工作的正水流装置,其中正流动装置和负流装置在水池或水区域中彼此分离。 正流动装置,例如水射流,将水流引导到水池或水域的水面下方,并通过液压推动作用使水面向负流装置移动。 负流量装置包括水泵和接收口,通过向吸水口或勺施加真空或负压来提供补充牵引作用来增加液压推动作用。 然后将含水的油性表面污染物作为水油混合物在勺子中除去,随后分离以形成用于随后再循环的油混合物,并且将清洁水源恢复以输送回到水池或水区域。
    • 9. 发明申请
    • System and Method for Water Restoration
    • 恢复系统和方法
    • US20080185351A1
    • 2008-08-07
    • US11678437
    • 2007-02-23
    • Matthew Hughes
    • Matthew Hughes
    • C02F1/40C02F9/02
    • C02F9/00C02F1/001C02F1/40C02F1/74C02F2103/007E02B15/04Y02A20/204Y10S210/923
    • System and method for water restoration to a water pool or to water regions associated with freshwater or saltwater marinas. Embodiments include a positive water flow device that works in unison with a negative water flow device, wherein the positive and negative flow devices are separated from each other in the water pool or water regions. The positive flow device, for example, a water jet, directs a stream of water beneath the water surface of the water pool or water regions, and causes a water surface to move towards the negative flow device by a hydraulic pushing action. The negative flow device includes a water pump and receiving port, augments the hydraulic pushing action by providing a complementary pulling action by applying a vacuum or negative pressure to a water receiving port, or scoop. Water laden, oily surface contaminants are then removed in the scoop as a water oil mixture that is subsequently separated to form an oil mixture for subsequent recycling and a clean water source that is restored for delivery back into the water pool or water regions.
    • 对水池或与淡水或盐水码头相关的水域进行水的恢复的系统和方法。 实施例包括与负水流装置一致工作的正水流装置,其中正流动装置和负流装置在水池或水区域中彼此分离。 正流动装置,例如水射流,将水流引导到水池或水域的水面下方,并通过液压推动作用使水面向负流装置移动。 负流量装置包括水泵和接收口,通过向吸水口或勺施加真空或负压来提供补充牵引作用来增加液压推动作用。 然后将含水的油性表面污染物作为水油混合物在勺子中除去,随后分离以形成用于随后再循环的油混合物,并且将清洁水源恢复以输送回到水池或水区域。