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    • 4. 发明申请
    • Liquid filter with directional fluid insert
    • 带定向流体插入件的液体过滤器
    • US20070205147A1
    • 2007-09-06
    • US11712323
    • 2007-02-28
    • Brian CrawfordRobert Ferguson
    • Brian CrawfordRobert Ferguson
    • B01D35/28
    • B01D27/00B01D29/21B01D29/906B01D2201/295
    • A filter assembly for removing particulate contaminants from a fluid, comprises a annular filter element having first and second ends, a filter housing containing the filter element and having first and second ends and a substantially cylindrical side wall defining an annular space between the side wall and the filter element, an end plate secured to the first end of the filter housing and having at least one fluid inlet therethrough adjacent to the first end of the filter element so that the fluid enters the filter housing through the at least one fluid inlet and flows into the annular space, and a directional fluid insert having at least one of fm disposed between the first end of the filter element and the end plate. The fins provided to cause the fluid entering the filter housing through the at least one fluid inlet to swirl around the filter element.
    • 一种用于从流体中除去微粒污染物的过滤器组件,包括一个具有第一和第二端的环形过滤器元件,一个包含过滤器元件的过滤器壳体,具有第一和第二端以及一个基本上圆柱形的侧壁,该侧壁在侧壁和 过滤器元件,固定到过滤器壳体的第一端的端板,并且具有与过滤器元件的第一端相邻的至少一个流体入口,使得流体通过至少一个流体入口进入过滤器壳体并流动 以及具有设置在过滤元件的第一端和端板之间的至少一个fm的定向流体插入件。 翅片被设置成使得流体通过至少一个流体入口进入过滤器壳体以围绕过滤元件旋转。
    • 5. 发明授权
    • Visualization of runtime analysis across dynamic boundaries
    • 跨动态边界的运行时分析的可视化
    • US08522217B2
    • 2013-08-27
    • US12763338
    • 2010-04-20
    • Suhail DuttaBrian Crawford
    • Suhail DuttaBrian Crawford
    • G06F9/44
    • G06F11/3612
    • Enhanced software architecture diagrams are derived by correlating runtime and static information, thereby allowing the diagrams to span runtime determination boundaries. Runtime determination boundaries are defined by decisions made at runtime, e.g., client-server boundaries, machine-machine boundaries, database-querying program boundaries, web service provider-consumer boundaries, factory caller-instance boundaries, interface call-implementing class boundaries, and reflection boundaries. Correlation may involve identifying instances of types, tracing an identifier injected into a communication channel, using a causality hook, and/or comparing messages leaving a caller with messages entering a callee, for example.
    • 增强的软件架构图是通过关联运行时和静态信息得出的,从而允许图跨越运行时确定边界。 运行时确定边界由运行时作出的决定定义,例如客户端 - 服务器边界,机器边界,数据库查询程序边界,Web服务提供者 - 消费者边界,工厂调用者实例边界,接口调用实现类边界,以及 反射边界。 相关性可以包括例如识别类型的实例,跟踪注入到通信信道中的标识符,使用因果挂钩,和/或比较离开呼叫者的消息进入被叫者的消息。
    • 6. 发明申请
    • VISUALIZATION OF RUNTIME ANALYSIS ACROSS DYNAMIC BOUNDARIES
    • 动态边界运动分析的可视化
    • US20110258611A1
    • 2011-10-20
    • US12763338
    • 2010-04-20
    • Suhail DuttaBrian Crawford
    • Suhail DuttaBrian Crawford
    • G06F9/44
    • G06F11/3612
    • Enhanced software architecture diagrams are derived by correlating runtime and static information, thereby allowing the diagrams to span runtime determination boundaries. Runtime determination boundaries are defined by decisions made at runtime, e.g., client-server boundaries, machine-machine boundaries, database-querying program boundaries, web service provider-consumer boundaries, factory caller-instance boundaries, interface call-implementing class boundaries, and reflection boundaries. Correlation may involve identifying instances of types, tracing an identifier injected into a communication channel, using a causality hook, and/or comparing messages leaving a caller with messages entering a callee, for example.
    • 增强的软件架构图是通过关联运行时和静态信息得出的,从而允许图跨越运行时确定边界。 运行时确定边界由运行时作出的决定定义,例如客户端 - 服务器边界,机器边界,数据库查询程序边界,Web服务提供者 - 消费者边界,工厂调用者实例边界,接口调用实现类边界,以及 反射边界。 相关性可以包括例如识别类型的实例,跟踪注入到通信信道中的标识符,使用因果挂钩,和/或比较离开呼叫者的消息进入被叫者的消息。
    • 9. 发明申请
    • Dye Injected Request Generation
    • 染料注入请求生成
    • US20100070611A1
    • 2010-03-18
    • US12210875
    • 2008-09-15
    • Brian CrawfordDavid GrayJohn CunninghamPeter HueneSteve Carroll
    • Brian CrawfordDavid GrayJohn CunninghamPeter HueneSteve Carroll
    • G06F15/16
    • G06F15/16G06F17/3089
    • Web server processes can host multiple web applications that process multiple requests from multiple clients. Recorded diagnostic information may not provide a useful separation of server execution data (e.g., functionality executed to process a request) based on a client's use of the web server process. An effective method for separating server execution data by client information is provided herein. Dye is injected into a request from a client, the dye comprises information regarding the client application making the request and a transaction (e.g., client defined set of requests) that the request is comprised within. The dye injected request is sent to a web server process (e.g., on a web server) that extracts the dye and executes the request. During execution of the request, executed functionality is associated and stored with the extracted dye. The recorded server execution data may be organized based upon the request, client, application, and/or transaction.
    • Web服务器进程可以托管多个Web应用程序,处理来自多个客户端的多个请求。 记录的诊断信息可能不会基于客户端对Web服务器进程的使用而提供服务器执行数据(例如,用于处理请求而执行的功能)的有用的分离。 本文提供了一种通过客户端信息分离服务器执行数据的有效方法。 染料被注入来自客户端的请求中,染料包括关于提出请求的客户端应用程序和涉及请求的事务(例如,客户定义的一组请求)的信息。 染料注入的请求被发送到提取染料并执行请求的web服务器进程(例如,在web服务器上)。 在执行请求期间,执行的功能与提取的染料相关联并存储。 记录的服务器执行数据可以基于请求,客户端,应用和/或事务来组织。
    • 10. 发明申请
    • Method and apparatus for executing unit tests in application host environment
    • 在应用主机环境中执行单元测试的方法和装置
    • US20060218446A1
    • 2006-09-28
    • US11087260
    • 2005-03-23
    • Brian Crawford
    • Brian Crawford
    • G06F11/00
    • G06F11/3688
    • A development environment in which unit tests are prepared. The unit tests run in a host environment for more complete and accurate testing of program units. The development environment uses a test execution shim to access an adapter running in the host environment. The host adapter may invoke other program objects that run specific tests. Such objects may late bind to the unit under test. An accessor class may facilitate late binding to the specific unit under test while allowing tests authored in the development environment to use context sensitive information needed to access the unit under test.
    • 准备单元测试的开发环境。 单元测试在主机环境中运行,以便更完整和准确地测试程序单元。 开发环境使用测试执行垫片来访问在主机环境中运行的适配器。 主机适配器可以调用运行特定测试的其他程序对象。 这样的物体可能晚期绑定到被测单元。 访问器类可以促进对被测单元的后期绑定,同时允许在开发环境中编写的测试使用访问被测单元所需的上下文相关信息。