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    • 11. 发明授权
    • Ultraviolet fluid disinfection system and method
    • 紫外线消毒系统及方法
    • US06447720B1
    • 2002-09-10
    • US09630245
    • 2000-07-31
    • Isaac B. Horton, IIIKurt Anthony GarrettAndrew P. RiserRonald Floyd MathisJames Pierre Hauck
    • Isaac B. Horton, IIIKurt Anthony GarrettAndrew P. RiserRonald Floyd MathisJames Pierre Hauck
    • A61L200
    • C02F1/325A61L2/10C02F1/725C02F2201/3221C02F2201/3224C02F2201/3227C02F2201/3228C02F2301/024C02F2303/04
    • An ultraviolet (UV) disinfection system and method for treating for treating fluids including a configuration and design to function effectively with at least one UV light source or lamp that is not submerged in the fluid. The UV light source is positioned outside the fluid to be disinfected via exposure to at least one UV dose zone outside the fluid being treated wherein UV light is projected into the at least one dose zone. The UV light source may be presented in a vertical riser configuration, wherein the UV light source is positioned above the fluid to be treated and projecting a UV dose zone downward toward and into the fluid to be treated, with the fluid moving upward toward the UV light source. Alternatively, the UV light source may be presented in a planar or horizontal design, wherein the UV light source is positioned above the fluid to be treated and projecting a WV dose zone downward toward and into the fluid to be treated, with the fluid moving in a direction substantially perpendicular to the UV dose zone. At least one interface plate is used to provide a surface zone for UV disinfection above the fluid and to provide additional treatment means for balancing pH, affecting effluent chemistry, and the like.
    • 一种用于处理流体的紫外线(UV)消毒系统和方法,包括配置和设计,以有效地运行至少一个不浸没在流体中的UV光源或灯。 UV光源通过暴露于被处理流体外的至少一个UV剂量区域而定位在要消毒的流体外部,其中UV光投射到至少一个剂量区域中。 UV光源可以呈垂直提升管构造,其中UV光源位于待处理的流体上方,并且将UV剂量区域向下朝向并进入待处理流体中并且流体朝向UV移动 光源。 或者,UV光源可以以平面或水平设计呈现,其中UV光源被定位在待处理流体上方,并将WV剂量区域向下朝向并流入待处理流体,并将流体移入 大致垂直于UV剂量区的方向。 使用至少一个界面板来提供用于在流体上方进行紫外消毒的表面区域,并提供用于平衡pH,影响流出物化学等的附加处理装置。
    • 12. 发明授权
    • Reflector and illumination system
    • 反射器和照明系统
    • US5832151A
    • 1998-11-03
    • US742846
    • 1996-11-01
    • Andrew P. RiserRichard E. AlbrechtDavid H. LiuNguyen V. To
    • Andrew P. RiserRichard E. AlbrechtDavid H. LiuNguyen V. To
    • F21V7/04G02B6/42G02B6/26G02B5/10
    • F21V7/04G02B6/4298Y10S385/901
    • An optical pipe illumination system is provided for coupling light from an illumination source to a number of output "light pipes", which are used for a variety of purposes, such as illuminating pools, spas, hazardous material zones, jail cells, and other applications where direct lighting is dangerous, difficult to maintain, or subject to vandalism. The illumination system employs an illumination reflector which has been customized to maximize the efficiency of light transmission between the illumination source, such as an arc lamp, and the cores of the output pipes. A method of fabricating the customized illumination reflector includes mapping the radiation patterns of the particular illumination source to be utilized, creating a database of those radiation patterns, and utilizing the database to generate an optimal illumination reflector configuration. The computer-generated reflector will virtually always be a non-conic section, because the illumination source is not ideal.
    • 提供了一种光管照明系统,用于将来自照明源的光耦合到用于各种目的的多个输出“光管”,诸如照明池,水疗中心,危险材料区域,监狱牢房和其他应用 直接照明是危险的,难以维护的,或遭受破坏。 照明系统采用已经定制的照明反射器,以最大化诸如弧光灯的照明源与输出管的芯之间的光传输的效率。 制造定制的照明反射器的方法包括映射要使用的特定照明源的辐射图案,创建这些辐射图案的数据库,以及利用数据库生成最佳照明反射器配置。 计算机生成的反射器将几乎总是非圆锥形部分,因为照明源不理想。
    • 15. 发明授权
    • Segmented reflector for coupling an extended illumination source to N fiber elements
    • 用于将扩展照明源耦合到N个光纤元件的分段反射器
    • US06208782B1
    • 2001-03-27
    • US09240281
    • 1999-01-29
    • Kathryn RiddickAndrew P. Riser
    • Kathryn RiddickAndrew P. Riser
    • G02B626
    • G02B6/4298G02B6/0006Y10S385/901
    • An optical fiber illumination system comprises a segmented reflector that efficiently couples energy from a lamp into a plurality of optical fibers. The segmented reflector offers the ability to improve the coupling efficiency by utilizing the cross-sectional area and numerical aperture of more than one optical fiber at the output of a reflector. Also this reduces the energy collected by a single fiber, and can be useful in preventing damage created by the source intensity. In practice, a source lamp is placed along a reflector axis. The reflector is specifically designed for a particular style and type of lamp, and is designed to collect as many rays from that lamp as possible. In a preferred embodiment, the reflector comprises four segments. Each of the four segments forms a distinct focus. In this embodiment, a plurality of lightguides, preferably optical fibers, are placed at the output of the reflector, one each at each focus of the respective reflector segments, with the longitudinal axis of each optical fiber substantially parallel to the axes of the reflector and the lamp. Assuming radial symmetry, each of the four fibers will collect substantially the same amount of light energy, and will transmit this light energy to an end device or user.
    • 光纤照明系统包括有效地将来自灯的能量耦合到多个光纤中的分段反射器。 分段反射器提供了通过利用反射器的输出处的多于一根光纤的横截面积和数值孔径来提高耦合效率的能力。 此外,这样可以降低由单根纤维收集的能量,并且可用于防止源强度产生的损伤。 在实践中,源灯沿着反射器轴线放置。 该反射器是专门为特定的类型和类型的灯设计的,并且被设计成尽可能多地收集来自该灯的光线。 在优选实施例中,反射器包括四个段。 四个部分中的每一个都形成了一个独特的焦点。 在本实施例中,多个光导,优选光纤,放置在反射器的输出处,每个光源在每个反射器段的每个焦点处,每个光纤的纵向轴线基本上平行于反射器的轴线; 灯。 假设径向对称,四个光纤中的每一个将收集基本上相同量的光能,并且将该光能量传输到终端设备或用户。
    • 17. 发明授权
    • Reflector and illumination system
    • 反射器和照明系统
    • US5682448A
    • 1997-10-28
    • US645327
    • 1996-05-13
    • Andrew P. RiserRichard E. Albrecht
    • Andrew P. RiserRichard E. Albrecht
    • F21S2/00F21V7/04F21V8/00G02B6/28G02B6/32G02B6/42G02B6/26G02B5/10
    • G02B6/2817F21V7/04G02B6/0006G02B6/2848G02B6/32G02B6/4298Y10S385/901
    • A light guide illumination system is provided for coupling light from an illumination source to a number of output "light guides", which are used for a variety of purposes, such as illuminating pools, spas, hazardous material zones, jail cells, and other applications where direct lighting is dangerous, difficult to maintain, or subject to vandalism. The illumination system employs an illumination reflector which has been customized to maximize the efficiency of light transmission between the illumination source, such as an arc lamp, and the cores of the output light guides. A method of fabricating the customized illumination reflector includes mapping the radiation patterns of the particular illumination source to be utilized, creating a database of those radiation patterns, and utilizing the database to generate an optimal illumination reflector configuration. The computer-generated reflector will virtually always be a non-conic section, because the illumination source is not ideal.
    • 提供了一种导光照明系统,用于将来自照明源的光耦合到用于各种目的的多个输出“光导”,诸如照明池,水疗中心,危险材料区域,监狱牢房和其他应用 直接照明是危险的,难以维护的,或遭受破坏。 照明系统采用已经定制的照明反射器,以使诸如弧光灯的照明源与输出光导的核心之间的光传输效率最大化。 制造定制的照明反射器的方法包括映射要使用的特定照明源的辐射图案,创建这些辐射图案的数据库,以及利用数据库生成最佳照明反射器配置。 计算机生成的反射器将几乎总是非圆锥形部分,因为照明源不理想。
    • 18. 发明授权
    • Trough reflector and lens coupler for lightguide illumination system
    • 用于光导照明系统的槽式反射镜和透镜耦合器
    • US06196709B1
    • 2001-03-06
    • US09239559
    • 1999-01-29
    • Andrew P. RiserRonald Rykowski
    • Andrew P. RiserRonald Rykowski
    • F21V800
    • G02B6/4298G02B6/0006
    • A lightguide illumination system is disclosed for providing more improved and efficient technology for capturing light from an extended light source having a relatively high aspect ratio, and coupling that light into a plurality of lightguides. The inventive systems functions by dividing the length of the extended light source into shorter segments, so that the aspect ratio of the light source can be more closely matched to the aspect ratio of the lightguide. In the preferred embodiment, a plurality of interleaved trough reflector segments are employed to segment the length of the light source. This enables the coupling efficiency of the total system to be greatly improved.
    • 公开了一种光导照明系统,用于提供用于从具有相对高的纵横比的扩展光源捕获光并且将该光耦合到多个光导中的更加改进和有效的技术。 本发明的系统通过将延伸的光源的长度分成较短的部分来实现,使得光源的纵横比可以与光导的纵横比更紧密地匹配。 在优选实施例中,采用多个交错的槽反射器段来分割光源的长度。 这样可以大大提高整个系统的耦合效率。
    • 19. 发明授权
    • Optical coupler and method utilizing optimal illumination reflector
    • 光耦合器和利用最佳照明反射器的方法
    • US5857041A
    • 1999-01-05
    • US599970
    • 1996-02-14
    • Andrew P. RiserRonald F. RykowskiStephen S. Wilson
    • Andrew P. RiserRonald F. RykowskiStephen S. Wilson
    • F21S2/00F21V7/04F21V8/00G02B6/00G02B6/28G02B6/32G02B6/42G02B6/26G02B5/10
    • G02B6/0006F21V7/04G02B6/2817G02B6/2848G02B6/32G02B6/4298Y10S385/901
    • An optical fiber manifold is provided for coupling light from an illumination source to a plurality of spaced, large diameter output fibers, or "light pipes", which are used for a variety of purposes, such as illuminating pools, spas, hazardous material zones, jail cells, and other applications where direct lighting is dangerous, difficult to maintain, or subject to vandalism. The manifold employs an illumination reflector(s) which has been customized to maximize the efficiency of light transmission between the illumination source, such as an arc lamp, and the cores of the plurality of output fibers. A method of fabricating the customized illumination reflector includes mapping the radiation patterns of the particular illumination source to be utilized, creating a database of those radiation patterns, and utilizing the database to generate an optimal illumination reflector configuration. The computer-generated reflector will virtually always be a non-conic section, because the illumination source is not ideal.
    • 提供了一种光纤歧管,用于将来自照明源的光耦合到用于各种目的的多个间隔开的大直径输出光纤或“光管”,诸如照明池,水疗中心,危险材料区域, 监狱牢房以及直接照明危险,难以维护或受到破坏的其他应用。 歧管采用已经定制的照明反射器,以使照明源(例如弧光灯)和多个输出光纤的芯之间的光透射效率最大化。 制造定制的照明反射器的方法包括映射要使用的特定照明源的辐射图案,创建这些辐射图案的数据库,以及利用数据库生成最佳照明反射器配置。 计算机生成的反射器将几乎总是非圆锥形部分,因为照明源不理想。