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    • 1. 发明申请
    • Abstracting Business Logic into Centralized Database Controls
    • 将业务逻辑抽象为集中数据库控件
    • US20100269088A1
    • 2010-10-21
    • US12426722
    • 2009-04-20
    • Jon RushRichard Donald SalzMichael John SandbergKay Anderson Tate
    • Jon RushRichard Donald SalzMichael John SandbergKay Anderson Tate
    • G06F9/44
    • G06F17/30557G06F17/30371
    • Methods, systems, and products for abstracting business logic into centralized database controls are disclosed herein. In one general embodiment, a method, executed by a computer system, includes identifying data use code in business logic: analyzing the data use code to determine a general data model: and implementing the general data model in the centralized database controls. The general data model is an abstraction embodying the functionality inherent in the data use code. In specific embodiments, identifying data use code in the business logic may be carried out by identifying the data use code in at least one subcomponent of the business logic, such as a user interface code component, a database coding, a table, or a file. The computer system may remove the data use code from the business logic or designate the data use code for removal.
    • 本文公开了将业务逻辑抽象为集中式数据库控件的方法,系统和产品。 在一个一般实施例中,由计算机系统执行的方法包括在业务逻辑中识别数据使用代码:分析数据使用代码以确定一般数据模型:并且在集中式数据库控件中实现一般数据模型。 一般数据模型是体现数据使用代码固有的功能的抽象。 在具体实施例中,业务逻辑中的识别数据使用代码可以通过识别业务逻辑的至少一个子组件中的数据使用代码来执行,例如用户界面代码组件,数据库编码,表或文件 。 计算机系统可以从业务逻辑中删除数据使用代码或指定要删除的数据使用代码。
    • 2. 发明申请
    • Template-based approach for workload generation
    • 基于模板的工作量生成方法
    • US20070162602A1
    • 2007-07-12
    • US11327071
    • 2006-01-06
    • Kay AndersonEric BouilletParijat DubeZhen LiuDimitrios Pendarakis
    • Kay AndersonEric BouilletParijat DubeZhen LiuDimitrios Pendarakis
    • G06F15/173
    • G06Q10/06G06F11/3414G06Q10/10
    • A system and method for workload generation include a processor for identifying a workload model by determining each of a hierarchy for workload generation, time scales for workload generation, and states and transitions at each of the time scales, and defining a parameter by determining each of fields for user specific attributes, application specific attributes, network specific attributes, content specific attributes, and a probability distribution function for each of the attributes; a user level template unit corresponding to a relatively slow time scale in signal communication with the processor; an application level template corresponding to a relatively faster time scale in signal communication with the processor; a stream level template corresponding to a relatively fastest time scale in signal communication with the processor; and a communications adapter in signal communication with the processor for defining a workload generating unit responsive to the template units.
    • 用于工作负载生成的系统和方法包括:通过确定工作负载生成的层次结构,工作负载生成的时间标度以及每个时间尺度上的状态和转换来确定工作负载模型的每个处理器,以及通过确定每个 针对用户特定属性的字段,应用特定属性,网络特定属性,内容特定属性以及每个属性的概率分布函数; 用户级模板单元,其对应于与处理器进行信号通信的相对较慢的时标; 应用级模板对应于与处理器进行信号通信的相对较快的时间尺度; 对应于与处理器进行信号通信的相对较快的时标的流级模板; 以及与处理器进行信号通信的通信适配器,用于响应于模板单元来定义工作量生成单元。
    • 5. 发明授权
    • Integration of solvent deasphalting, gasification, and hydrotreating
    • 溶剂脱沥青,气化和加氢处理的整合
    • US06409912B1
    • 2002-06-25
    • US09476965
    • 2000-01-11
    • Paul S. WallaceKay Anderson Johnson
    • Paul S. WallaceKay Anderson Johnson
    • C10G4500
    • C10G49/22C10G45/02C10G49/007C10G67/0454
    • During the hydrotreating process, hydrogen sulfide and short chain hydrocarbons such as methane, ethane, propane, butane and pentane are formed. The separation of gas from hydrotreated liquid hydrocarbons is achieved using a stripper and a flash drum. High pressure steam or nitrogen is contacted with the hydrotreated liquid hydrocarbon material. This high pressure steam strips the volatiles, i.e., hydrogen, the volatile hydrocarbons, hydrogen sulfide, and the like, from the oil. The gaseous stream is then separated and cooled to remove condensables, including primarily water, short chain hydrocarbons, and hydrogen sulfide in the water. The condensables are advantageously sent to the gasifier, where the hydrocarbons are gasified, the water moderates the gasifier temperature and increases the yield of hydrogen, and where hydrogen sulfide is routed with the produced synthesis gas to the acid gas removal process.
    • 在加氢处理过程中,形成了硫化氢和短链烃,如甲烷,乙烷,丙烷,丁烷和戊烷。 气体与加氢处理的液体烃的分离是使用汽提塔和闪蒸桶来实现的。 高压蒸汽或氮气与加氢处理的液体烃材料接触。 这种高压蒸汽从油中除去挥发物,即氢,挥发性烃,硫化氢等。 然后将气流分离并冷却以除去水中的可冷凝物,主要包括水,短链烃和硫化氢。 可冷凝物有利地被送到气化器中,其中烃被气化,水缓和气化器温度并增加氢气的产率,并且其中硫化氢通过生成的合成气排放到酸性气体去除过程中。
    • 9. 发明授权
    • Filtration of feed to integration of solvent deasphalting and gasification
    • 过滤饲料以整合溶剂脱沥青和气化
    • US06274030B1
    • 2001-08-14
    • US09469998
    • 1999-12-22
    • Paul S. WallaceKay Anderson Johnson
    • Paul S. WallaceKay Anderson Johnson
    • C10C118
    • C10G21/003C10G53/04
    • The invention is a process of removing solids, particularly catalyst fines, from an asphaltene-containing hydrocarbon liquid. The process comprises contacting an asphaltene-containing hydrocarbon liquid with a solvent to create a mixture. The solvent is typically an alkane such as, propane to pentanes. Then, solids are removed from the mixture by any known process. Finally, additional solvent may be added, and the mixture heated until asphaltenes precipitate into a separate phase. The asphaltenes are removed from the mixture. The mixture is then further heated to recover the solvent from the deasphalted hydrocarbon liquid. The asphaltenes are advantageously gasified.
    • 本发明是从含沥青质烃的液体中除去固体,特别是催化剂细粒的方法。 该方法包括使含沥青烯的烃液与溶剂接触以产生混合物。 溶剂通常是烷烃,例如丙烷至戊烷。 然后,通过任何已知的方法从混合物中除去固体。 最后,可以加入另外的溶剂,并将混合物加热至沥青质沉淀成单独的相。 从混合物中除去沥青质。 然后将混合物进一步加热以从脱沥青烃液体中回收溶剂。 沥青质有利地气化。