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    • 32. 发明授权
    • Barrier dryer transporting medium through heating liquid
    • 阻隔干燥器通过加热液输送介质
    • US08826558B2
    • 2014-09-09
    • US13649146
    • 2012-10-11
    • Alan Richard PriebeDonald Saul RimaiChristopher J. White
    • Alan Richard PriebeDonald Saul RimaiChristopher J. White
    • F26B19/00
    • F26B3/22
    • A media drying system removes a moistening liquid from a moistened medium having first and second surfaces. A liquid reservoir contains a heating liquid heated above a moistening-liquid boiling point. A rotatable liquid-blocking member has a liquid-blocking layer with an inner surface and an outer surface. A media-transport system transports the medium entrained around the liquid-blocking member so that the first surface of the moistened medium is brought into contact with the outer surface of the liquid-blocking layer. An entrained portion of the moistened medium passes through the liquid reservoir and is submerged in the warmed heating liquid. The heating liquid contacts the inner surface of the liquid-blocking layer so that heat is transferred through the liquid-blocking layer from the warmed heating liquid to the moistening liquid, or heat is transferred from the warmed heating liquid to the second surface of the moistened medium.
    • 介质干燥系统从具有第一和第二表面的润湿介质中除去润湿液体。 液体储存器包含在润湿液体沸点之上加热的加热液体。 可旋转的液体阻挡构件具有内表面和外表面的液体阻挡层。 介质输送系统输送夹带在液体阻挡构件周围的介质,使得湿润介质的第一表面与液体阻挡层的外表面接触。 润湿介质的夹带部分通过液体储存器并浸没在加热的加热液体中。 加热液体接触液体阻挡层的内表面,使得热量通过液体阻挡层从加热的液体转移到润湿液体,或者热量从加热的加热液体转移到湿润的加湿液体的第二表面 中。
    • 34. 发明授权
    • Sensing exposure to environmental factors
    • 感受环境因素的暴露
    • US08810391B2
    • 2014-08-19
    • US13600356
    • 2012-08-31
    • Ronald Steven CokChristopher J. White
    • Ronald Steven CokChristopher J. White
    • G08B1/08
    • G06K19/0717G07C3/00
    • A method of sensing exposure to one or more of a plurality of environmental factors includes exposing a code circuit to at least some of the environmental factors, the code circuit disposed over a substrate and including a plurality of electrically-connected sensor patches, each sensor patch susceptible to one of the environmental factors, wherein the code circuit has an electrical state. An electrical excitation signal is passed through the code circuit, and a corresponding received electrical signal detected, using a transceiver formed on a transceiver substrate separate from and disposed over the substrate, wherein the transceiver includes a controller and the received electrical signal depends on the excitation signal and the electrical state of the code circuit. Using the controller, the received electrical signal or a representation thereof is automatically stored in a memory. The checking and storing steps are automatically repeated after one or more selected time intervals.
    • 感测暴露于多个环境因素中的一个或多个的方法包括将码电路暴露于至少一些环境因素,所述码电路设置在衬底上并且包括多个电连接的传感器贴片,每个传感器贴片 易受环境因素之一影响,其中代码电路具有电状态。 电激励信号通过代码电路,并且使用形成在收发器基板上的收发器基板上分离并布置在基板上的收发器检测相应的接收电信号,其中收发器包括控制器,并且所接收的电信号取决于激励 信号和电路状态的电路。 使用控制器,所接收的电信号或其表示被自动存储在存储器中。 在一个或多个选定的时间间隔之后,自动重复检查和存储步骤。
    • 36. 发明授权
    • Service network discovery
    • 服务网络发现
    • US08725859B2
    • 2014-05-13
    • US13250200
    • 2011-09-30
    • Christopher J. WhiteDimitri Stratton VlachosDavid Paul Doyle
    • Christopher J. WhiteDimitri Stratton VlachosDavid Paul Doyle
    • G06F15/173G06F15/16
    • H04L67/16
    • An automated service discovery and monitoring utility employs automatically generated policies (rules) for monitoring network health of a service based on network discovery using flow data derived from transmissions sent over segments between computing components defining the service. An interactive discovery application employs flow data based on transmissions associated with a service. Analysis of the flow data identifies associated components from inspection of the transmissions. Iterative component selection allows network traversal of components based on flow data of the segments used for providing the service. The interactive service discovery therefore identifies associated components (servers) and segments based on flow data, rather than topology, rendering the flow data to allow a user to make an informed selection of segments and components for inclusion in a service, and generates a set of policies (rules) based on the discovered service dependencies for monitoring various metrics for the components providing the monitored service.
    • 自动化服务发现和监测实用程序采用自动生成的策略(规则),用于基于网络发现来监视服务的网络健康状况,使用从定义服务的计算组件之间的段发送的传输导出的流数据。 交互式发现应用程序使用基于与服务相关联的传输的流数据。 流量数据的分析通过检查传输来识别相关组件。 迭代组件选择允许基于用于提供服务的段的流数据进行网络遍历组件。 因此,交互式服务发现基于流数据而不是拓扑来识别相关联的组件(服务器)和段,从而呈现流数据,以允许用户对包含在服务中的段和组件进行通知选择,并且生成一组 基于发现的服务依赖关系的策略(规则),用于监视提供受监控服务的组件的各种度量。
    • 39. 发明申请
    • BARRIER DRYER TRANSPORTING MEDIUM THROUGH HEATING LIQUID
    • BARRIER干燥机通过加热液体运输中间体
    • US20140101957A1
    • 2014-04-17
    • US13649146
    • 2012-10-11
    • Alan Richard PriebeDonald Saul RimaiChristopher J. White
    • Alan Richard PriebeDonald Saul RimaiChristopher J. White
    • F26B19/00
    • F26B3/22
    • A media drying system removes a moistening liquid from a moistened medium having first and second surfaces. A liquid reservoir contains a heating liquid heated above a moistening-liquid boiling point. A rotatable liquid-blocking member has a liquid-blocking layer with an inner surface and an outer surface. A media-transport system transports the medium entrained around the liquid-blocking member so that the first surface of the moistened medium is brought into contact with the outer surface of the liquid-blocking layer. An entrained portion of the moistened medium passes through the liquid reservoir and is submerged in the warmed heating liquid. The heating liquid contacts the inner surface of the liquid-blocking layer so that heat is transferred through the liquid-blocking layer from the warmed heating liquid to the moistening liquid, or heat is transferred from the warmed heating liquid to the second surface of the moistened medium.
    • 介质干燥系统从具有第一和第二表面的润湿介质中除去润湿液体。 液体储存器包含在润湿液体沸点之上加热的加热液体。 可旋转的液体阻挡构件具有内表面和外表面的液体阻挡层。 介质输送系统输送夹带在液体阻挡构件周围的介质,使得湿润介质的第一表面与液体阻挡层的外表面接触。 润湿介质的夹带部分通过液体储存器并浸没在加热的加热液体中。 加热液体接触液体阻挡层的内表面,使得热量通过液体阻挡层从加热的液体转移到润湿液体,或者热量从加热的加热液体转移到湿润的加湿液体的第二表面 中。