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    • 1. 发明申请
    • Rack enclosure
    • 机架外壳
    • US20070129000A1
    • 2007-06-07
    • US11510501
    • 2006-08-25
    • Neil RasmussenMark GermagianVictor AvelarJames Donovan
    • Neil RasmussenMark GermagianVictor AvelarJames Donovan
    • H05K5/00
    • H05K7/20736H01L2924/0002H05K7/20572H01L2924/00
    • An enclosure is provided for housing electronic equipment that accommodates the different cooling and ventilating requirements of different types of equipment. The enclosure is constructed and arranged to support cooling airflow in a front-to-back configuration through the enclosure and in a side-to-side configuration from one side to an opposite side of the enclosure. The enclosure can thereby provide within a single enclosure means cooling air for components using front-to-back airflow for cooling, such as information technology (IT) equipment, and for components using side-to-side airflow, such as certain types of telecommunications equipment. The enclosure can thereby support a mix of IT and telecommunications equipment, providing flexibility and adaptability in network room and data center configuration. The enclosure is further configured to separate intake air used by equipment for cooling from exhaust air vented by equipment into its interior during operation. As a result, the enclosure promotes sufficient equipment cooling and prevents/minimizes equipment overheating.
    • 提供外壳用于容纳电子设备,以适应不同类型设备的不同冷却和通风要求。 外壳被构造和布置成支撑通过外壳的前后配置的冷却气流,并以从外壳的一侧到另一侧的侧向配置支撑。 因此,外壳可以在单个外壳内提供使用用于冷却的前后气流(例如信息技术(IT))设备的组件的冷却空气,以及使用诸如某些类型的电信 设备。 因此,机箱可以支持IT和电信设备的混合,提供网络室和数据中心配置的灵活性和适应性。 外壳进一步构造成在操作期间将由设备排出的排气所进行的冷却设备分离到其内部。 因此,外壳可以提供足够的设备冷却并防止/最小化设备过热。
    • 2. 发明申请
    • Method and apparatus for inspecting a component
    • 用于检查部件的方法和装置
    • US20060236769A1
    • 2006-10-26
    • US11114316
    • 2005-04-26
    • Brenda TenleyMichael DziechJoseph TraxlerJames Donovan
    • Brenda TenleyMichael DziechJoseph TraxlerJames Donovan
    • G01N29/00
    • G01N29/226F01D25/285G01N29/265G01N2291/102G01N2291/2693Y02T50/671
    • A method for inspecting a gas turbine engine component includes positioning an ultrasonic probe assembly proximate to a surface of the component; said ultrasonic probe assembly including a body portion and an inspection bar, coupling the inspection bar to the body portion such that the inspection bar is substantially vertical with respect to the body portion, moving the ultrasonic probe assembly along a substantially horizontal axis while generating ultrasonic data of the component, coupling the inspection bar to the body portion such that the inspection bar is substantially horizontal with respect to the body portion, moving the ultrasonic probe assembly along a substantially vertical axis while generating ultrasonic data of the component, and utilizing the generated data to reconstruct an image of the component.
    • 用于检查燃气涡轮发动机部件的方法包括将超声波探头组件定位在靠近部件表面的位置; 所述超声波探头组件包括主体部分和检查条,将检查条连接到主体部分,使得检查条相对于主体部分基本上是垂直的,使超声波探头组件沿着基本上水平的轴线移动,同时产生超声波数据 将所述检查条连接到所述主体部分,使得所述检查条相对于所述主体部分基本上水平,在生成所述部件的超声波数据的同时沿着基本垂直的轴线移动所述超声波探头组件,并且利用所生成的数据 以重建组件的图像。
    • 3. 发明授权
    • Apparatus and process for continuous concentration and washing of solids
from a solids-containing fluid
    • 用于从含固体的流体连续浓缩和洗涤固体的装置和方法
    • US3984317A
    • 1976-10-05
    • US583974
    • 1975-06-05
    • James Donovan
    • James Donovan
    • B01D29/39B01D33/06C02F11/00C02F11/12B01D37/00
    • B01D29/39
    • Apparatus for concentrating and washing solids in a slurry comprising a housing containing both separation/concentration and washing chambers with an inlet for continuously injecting solids -- containing fluid into the separation chamber wherein a dynamic filtering system is provided for separating the solids -- containing fluid to form a cencentrate of solids and a filtrate. The filtering system includes a plurality of stationary filter elements and a plurality of rotor elements mounted on a rotatable shaft from which they extend outwardly and adjacent the filter elements to form a plurality of alternating rotor and filter elements within the housing. The concentrate washing chamber is disposed downstream of the filtering system and includes a plurality of stationary filter elements and a plurality of rotor elements arranged similarly to the elements in the filtering system. The washing chamber also includes means for introducing and commingling a wash fluid with the concentrate to remove impurities therefrom by dissolving said impurities or diluting the liquid containing them and then removing the liquid by further filtration. One embodiment is described wherein a single continuous upstream injection and continuous downstream removal of wash fluid is provided in the washing chamber. Another embodiment comprises a continuous downstream injection with continuous removals and reinjections of wash water in sections progressing in an upstream direction from the initial downstream injection until final withdrawal at the extreme upstream section of the washing chamber. In still another embodiment fresh wash fluid is simultaneously injected and removed continuously in each of a plurality of separate sections of the washing chamber.
    • 用于在浆料中浓缩和洗涤固体的装置,包括含有分离/浓缩和洗涤室的壳体,其具有用于将含固体的流体连续注入分离室的入口,其中提供动态过滤系统用于分离含固体的流体以形成 固体的浓度和滤液。 过滤系统包括多个固定过滤器元件和安装在可旋转轴上的多个转子元件,它们从该转子轴向外延伸并邻近过滤元件,以在壳体内形成多个交替的转子和过滤元件。 浓缩清洗室设置在过滤系统的下游,并且包括多个固定过滤元件和与过滤系统中的元件类似地布置的多个转子元件。 洗涤室还包括用于通过溶解所述杂质或稀释含有它们的液体然后通过进一步过滤除去液体而将浓缩物引入和混合洗涤流体以除去杂质的装置。 描述了一个实施例,其中在洗涤室中提供单次连续的上游注入和连续的下游去除洗涤流体。 另一个实施方案包括连续的下游注射,其具有在从初始下游注入直到在洗涤室的最上游部分最后抽出的最后排出处的部分中的洗涤水的连续移除和再注入。 在另一个实施方案中,新鲜洗涤流体同时在洗涤室的多个分开部分的每一个中连续注入和去除。
    • 7. 发明授权
    • Apparatus and system for stabilizing the disc elements of a rotary
concentrator for solids-containing fluids
    • 用于稳定含固体流体的旋转浓缩器的圆盘元件的装置和系统
    • US4036759A
    • 1977-07-19
    • US724176
    • 1976-09-17
    • James Donovan
    • James Donovan
    • B01D29/39B01D25/38
    • B01D29/39
    • In a dynamic solids concentrator having a rotor with radially extensive disc-like elements which rotate adjacent other stationary or rotating disc-like elements, stabilizing members are provided along radial edges of the respective elements. In the case of the rotating elements, the stabilizing members are stabilizing fingers which ride within guide members on or guide paths in the inner walls of the concentrator and, in another embodiment, T-shaped stabilizing members whose arms ride on the surfaces of adjacent disc-like elements. In the case of the non-rotating elements, the stabilizng members are stabilizing fingers which ride within the guide members on or guide paths in the concentrators's rotor shaft. The fingers, T-shaped members and their cooperating guides stabilize the relative positions of the disc-like elements within the concentrator under conditions in which pressure differentials within the concentrator or high rotor speeds would otherwise disturb their relative positions.
    • 在具有径向扩大的盘状元件的转子的动态固体浓缩器中,其相对于另一个固定或旋转的盘状元件旋转,稳定构件沿各个元件的径向边缘设置。 在旋转元件的情况下,稳定构件是稳定的手指,其在集中器的内壁中的引导构件或导向路径上行进,并且在另一个实施例中,其T形稳定构件的臂骑在相邻盘的表面上 类元素。 在非旋转元件的情况下,稳定构件是稳定的指状物,其在引导构件内行进,或者在集中器转子轴中的引导路径上。 手指T形构件及其配合导向器在集中器内的压力差或高转子速度将会干扰其相对位置的条件下使盘状元件在集中器内的相对位置稳定。