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    • 4. 发明授权
    • Magnetically focused liquid drop radiator
    • 磁集中液滴散热器
    • US4572285A
    • 1986-02-25
    • US679841
    • 1984-12-10
    • Thomas E. BottsJames R. PowellRoger Lenard
    • Thomas E. BottsJames R. PowellRoger Lenard
    • B64G1/50F28D15/00
    • F28D15/00B64G1/50B64G1/503Y10S165/904Y10S505/90
    • A magnetically focused liquid drop radiator for application in rejecting rgy from a spacecraft, characterized by a magnetizable liquid or slurry disposed in operative relationship within the liquid droplet generator and its fluid delivery system, in combination with magnetic means disposed in operative relationship around a liquid droplet collector of the LDR. The magnetic means are effective to focus streams of droplets directed from the generator toward the collector, thereby to assure that essentially all of the droplets are directed into the collector, even though some of the streams may be misdirected as they leave the generator. The magnetic focusing means is also effective to suppress splashing of liquid when the droplets impinge on the collector.
    • 一种用于从航天器排除能量的磁性聚焦液滴辐射器,其特征在于在液滴发生器及其流体输送系统内以可操作的关系设置的可磁化液体或浆料,与围绕液滴的操作关系设置的磁性装置 LDR的收藏家。 磁性装置有效地将从发生器引导的液滴的流聚焦到收集器,从而确保基本上所有的液滴都被引导到收集器中,即使当一些流在它们离开发生器时可能被错误定向。 当液滴撞击收集器时,磁聚焦装置也有效地抑制液体飞溅。
    • 6. 发明授权
    • Cesium and strontium capsule disposal package
    • 铯和锶胶囊处理包装
    • US07368091B2
    • 2008-05-06
    • US10250097
    • 2003-06-03
    • Bernard ManowitzMorris ReichJames R. PowellLouis Ventre, Jr.
    • Bernard ManowitzMorris ReichJames R. PowellLouis Ventre, Jr.
    • B32B9/04
    • G21F5/005G21Y2002/301G21Y2002/304G21Y2002/60G21Y2004/30Y10S588/90
    • A package and process of using the package for disposal of radioactive cesium and strontium waste capsules. The package comprises a standard Hanford vitrified high-level waste canister as an outer container, which is approximately filled with three components: the first is a monolithic material with a defined cavity having a composite density less than about 3.5 grams per cubic centimeter and a melting temperature above that expected within the disposal package; the second is a frame for limiting relative movement of the capsules; and, the third are components forming an uninterrupted physical contact, thermal conduction pathway from the waste container to the outside of the package. The package includes lids for closing the disposal package. In the method of the invention, the capsules are loaded into position within the monolithic material, encased in thermally conducting material, and then lids are added to close the package.
    • 使用包装处理放射性铯和锶废胶囊的包装和工艺。 该包装包括标准的Hanford玻璃化高级废物罐作为外部容器,其大致填充有三个部件:第一个是具有限定的空腔的整体材料,其复合密度小于约3.5克/立方厘米,熔化 温度高于预期的处置包装; 第二个是用于限制胶囊的相对运动的框架; 第三个是形成从废物容器到包装外部的不间断物理接触,热传导路径的部件。 包装包括用于关闭处理包装的盖子。 在本发明的方法中,将胶囊装入整体材料内的位置,包裹在导热材料中,然后加盖盖以封闭包装。
    • 7. 发明授权
    • AVS melting process
    • AVS熔化工艺
    • US06558308B2
    • 2003-05-06
    • US10063460
    • 2002-04-25
    • James R. PowellMorris Reich
    • James R. PowellMorris Reich
    • A62D300
    • G21F9/305B09B3/0075C03B5/005C03B5/021C03B5/08G21F9/308Y02P40/52
    • The Advanced Vitrification System (AVS) Melting Process is a process for vitrification of waste in a disposable canister. In the process, waste is dropped into the disposable canister from the top. While the waste is being dropped into the disposable canister, radiant energy is added to the space above the waste in the canister, such that the temperature of the gaseous atmosphere above the waste is higher than the melting point of the waste. Since only the space above the waste in the canister is heated, the temperature of the melt decreases with increasing depth of the waste in the canister. The decreasing temperature permits a small surface melt volume to be maintained and solidified product to form with increasing depth. The process continues until the disposable canister is filled, then all heating is stopped and the disposable canister allowed to cool to ambient temperature.
    • 先进的玻璃化系统(AVS)熔化过程是一次性罐中废物玻璃化的过程。 在此过程中,垃圾从顶部落入一次性罐中。 当废物被丢弃到一次性罐中时,辐射能量被添加到罐中的废物上方的空间中,使得废物上方的气态气体的温度高于废物的熔点。 由于只有罐中的废物上方的空间被加热,熔体的温度随着罐中废物的深度的增加而减小。 降低的温度允许保持小的表面熔融体积并且随着深度增加而形成固化的产品。 该过程一直持续到一次性罐被填充,然后停止所有加热并且一次性罐被允许冷却至环境温度。
    • 8. 发明授权
    • Vitrification of waste with conitnuous filling and sequential melting
    • 具有饱和填充和顺序熔化的废物玻璃化
    • US06283908B1
    • 2001-09-04
    • US09564774
    • 2000-05-04
    • James R. PowellMorris Reich
    • James R. PowellMorris Reich
    • B09B300
    • C03B5/021C03B5/005C03B5/06G21F9/305Y02P40/52
    • A method of filling a canister with vitrified waste starting with a waste, such as high-level radioactive waste, that is cooler than its melting point. Waste is added incrementally to a canister forming a column of waste capable of being separated into an upper zone and a lower zone. The minimum height of the column is defined such that the waste in the lower zone can be dried and melted while maintaining the waste in the upper zone below its melting point. The maximum height of the column is such that the upper zone remains porous enough to permit evolved gases from the lower zone to flow through the upper zone and out of the canister. Heat is applied to the waste in the lower zone to first dry then to raise and maintain its temperature to a target temperature above the melting point of the waste. Then the heat is applied to a new lower zone above the melted waste and the process of adding, drying and melting the waste continues upward in the canister until the entire canister is filled and the entire contents are melted and maintained at the target temperature for the desired period. Cooling of the melted waste takes place incrementally from the bottom of the canister to the top, or across the entire canister surface area, forming a vitrified product.
    • 一种用玻璃化废弃物填充罐的方法,其以比其熔点更冷的废物(例如高放射性废物)开始。 废弃物逐渐加入到形成能够分离成上部区域和下部区域的废弃物塔的罐中。 定义柱的最小高度,使得下部区域中的废物可以被干燥和熔化,同时将上部区域中的废物保持在其熔点以下。 柱的最大高度使得上部区域保持足够多孔,以允许来自下部区域的放出的气体流过上部区域并且流出罐。 将热量施加到下部区域中的废物中以首先干燥,以将其温度升高至高于废物熔点的目标温度。 然后将热量施加到熔融废物上方的新的下部区域,并且在罐中向上加入,干燥和熔化废物的过程继续向上,直到整个罐被填充,并且将整个内容物熔化并保持在目标温度 期望期 熔化的废物的冷却从罐的底部到顶部或整个罐表面区域逐渐发生,形成玻璃化产品。
    • 10. 发明授权
    • Hand operated oral irrigation device for packaged liquids
    • 用于包装液体的手动口腔灌洗装置
    • US5086756A
    • 1992-02-11
    • US637142
    • 1991-01-03
    • James R. Powell
    • James R. Powell
    • A61C17/02
    • A61C17/02
    • A device for irrigating the oral cavity with liquid from a commercially available, factory prepared package or container which includes a discharge nozzle and a hand operated pump unit for delivering an antiplaque or similar liquid of therapeutic value to areas in the oral cavity which are remote and difficult to reach. The package or container is provided with a female module having a specifically configured opening to accept a male module on the pump unit with the modules including interlocking components which are engaged and disengaged by a partial rotation and including a seal which provides a leak proof communication between the interior of the container or package and the pump unit with the configuration of the modules being such that a specific mating configuration must be used in order to connect the modules. The package or container includes an upper end portion that is openable and separate from the liquid containing portion to provide a storage area for the pump unit.
    • 一种用于从市售的工厂制备的包装或容器中用液体冲洗口腔的装置,其包括排出喷嘴和手动泵单元,用于将治疗价值的抗牙斑或类似液体输送到口腔中远离的区域, 难以到达 该包装或容器设置有具有特殊构造的开口的母模块,以在泵单元上接纳阳模块,模块包括通过部分旋转接合和分离的互锁部件,并且包括密封件,该密封件提供 容器或包装的内部以及具有模块的配置的泵单元使得必须使用特定的配合配置以便连接模块。 包装或容器包括可开启并与液体容纳部分开的上端部分,以为泵单元提供储存区域。