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    • 2. 发明申请
    • A WATER STORAGE TANK AND HEATING APPARATUS FOR THE WATER STORAGE TANK, AND A METHOD FOR HEATING WATER IN A WATER STORAGE TANK
    • 水储罐用储水罐和加热装置,以及用于在储水罐中加热水的方法
    • WO2012020395A3
    • 2013-06-06
    • PCT/IE2011000044
    • 2011-08-09
    • QUINN KEVIN JOHNMOORE RICHARD CHRISTOPHER
    • QUINN KEVIN JOHNMOORE RICHARD CHRISTOPHER
    • F24H1/20F24H9/00
    • F24H9/0021F24H1/201F24H1/208F28D20/0039F28D2020/0069F28D2020/0078F28F2270/00Y02E60/142
    • A water storage tank (1 ) for heating domestic hot water defines a hollow interior region (6) within which heating apparatus (15) is located. The heating apparatus (15) comprises a housing (17) which forms a heat exchanger and comprises an outer cylindrical side wall (19) which extends around and upwardly from a circular base (21) to a top wall (22). Tubes (24) extending through the chamber (20) between the base and top walls (21,22) form passageways (25) for accommodating water from a lower portion (30) of the hollow interior region (6) to an upper portion (35) thereof. Heat exchange water from a boiler is circulated through the chamber (20) which heats water in the passageways (25). The heated water in the passageways (25) rises therethrough and into an outlet chamber (33) and in turn through a first outlet port (34) into the upper portion (35) of the hollow interior region (6). Water from the lower portion (30) of the hollow interior region (6) is drawn into the passageway (25) through first inlet ports (28) for heating thereof. The housing (17) is clad with heat insulating material (43) in order to concentrate heat from the heat exchange water in the chamber (20) into heating water in the passageways (25).
    • 用于加热家用热水的储水箱(1)限定了加热装置(15)所在的中空内部区域(6)。 加热装置(15)包括形成热交换器的壳体(17),并且包括从圆形基部(21)周围向上延伸到顶壁(22)的外圆筒形侧壁(19)。 延伸穿过基座和顶壁(21,22)之间的腔室(20)的管(24)形成通道(25),用于将水从中空内部区域(6)的下部(30)容纳到上部( 35)。 来自锅炉的热交换水循环通过加热通道(25)中的水的室(20)。 通道(25)中的加热水通过其中并通过第一出口(34)进入出口腔(33)并进入中空内部区域(6)的上部(35)。 来自中空内部区域(6)的下部(30)的水通过第一入口(28)被吸入通道(25)中,用于加热。 外壳(17)用绝热材料(43)包覆,以将来自室(20)中的热交换水的热量集中到通道(25)中的加热水中。
    • 4. 发明申请
    • SUBSEA COOLING SYSTEM
    • SUBSEA冷却系统
    • WO2012151635A1
    • 2012-11-15
    • PCT/AU2012/000510
    • 2012-05-11
    • MOORE, Richard John
    • MOORE, Richard John
    • F28D1/02
    • F24T10/00C10L3/10E02B17/00E21B36/001E21B41/0007E21B43/017F25J1/0022F25J1/0278F25J1/0296F28D1/022F28D15/00F28D15/0266Y02E10/10
    • A subsea hydrocarbon cooling and heat transfer system is provided. The system includes one or more subsea hydrocarbon process fluid heat exchangers arranged in heat exchange communication between a hydrocarbon process fluid and a cooling medium fluid, a cooling medium fluid distribution pipe system connected to the hydrocarbon process fluid heat exchangers, and a subsea cooling unit for cooling the cooling medium fluid. After passing through one of said heat exchangers, a heated cooling medium can act as a heat transfer fluid to re-heat another hydrocarbon process fluid. The subsea cooling unit includes an inlet and an outlet arranged in fluid communication with the cooling medium fluid distribution pipe system, one or more subsea cooling modules, a first conduit arranged to provide fluid communication between the inlet and the subsea cooling module(s) and a second conduit arranged to provide fluid communication between the subsea cooling module(s) and the outlet. Each cooling module comprises a plurality of cooling pipes configured in heat exchange relationship with surrounding seawater.
    • 提供海底碳氢化合物冷却和传热系统。 该系统包括一个或多个在烃工艺流体和冷却介质流体之间热交换连通的海底烃工艺流体热交换器,连接到烃工艺流体热交换器的冷却介质流体分配管系统和用于 冷却介质流体。 在通过一个所述热交换器之后,加热的冷却介质可以用作传热流体以再加热另一种烃工艺流体。 海底冷却单元包括布置成与冷却介质流体分配管道系统流体连通的入口和出口,一个或多个海底冷却模块,布置成在入口和海底冷却模块之间提供流体连通的第一导管和 第二导管,布置成在海底冷却模块和出口之间提供流体连通。 每个冷却模块包括与周围海水热交换关系的多个冷却管。
    • 6. 发明申请
    • ADAPTIVE VOLTAGE SCALING
    • 自适应电压调节
    • WO2010117795A3
    • 2010-12-02
    • PCT/US2010029220
    • 2010-03-30
    • QUALCOMM INCMOORE RICHARD AMICHALAK GERALD PBRIDGES JEFFREY T
    • MOORE RICHARD AMICHALAK GERALD PBRIDGES JEFFREY T
    • G06F1/32
    • G05F1/462G06F1/3203G06F1/3234G06F1/324G06F1/3296H03K3/012Y02D10/126Y02D10/172
    • Adaptive voltage scalers (AVSs), systems, and related methods are disclosed. The AVSs are configured to adaptively adjust voltage levels powering a functional circuit(s) based on target operating frequencies and delay variation conditions to avoid or reduce voltage margin. In one embodiment, the AVS includes an AVS database. The AVS database can be configured to store voltage levels for various operating frequencies of a functional circuit(s) to avoid or reduce voltage margin. The AVS database allows rapid voltage level decisions. The voltage levels stored in the AVS database may be initial, minimum, learned, populated, explored, backed out, temperature-based, and/or age-based voltage levels according to disclosed embodiments to further avoid or reduce voltage margin. An AVS module may be a software-based module that consults the AVS database to make voltage level decisions. Providing the AVS module as a software-based module may allow flexibility in configuring the AVS module and/or the AVS database.
    • 自适应电压缩放器(AVS),系统和相关方法被公开。 AVS被配置为基于目标工作频率和延迟变化条件自适应地调整为功能电路供电的电压电平,以避免或减少电压裕度。 在一个实施例中,AVS包括AVS数据库。 AVS数据库可以配置为存储功能电路的各种工作频率的电压电平,以避免或减少电压裕度。 AVS数据库允许快速的电压电平决定。 根据所公开的实施例,存储在AVS数据库中的电压电平可以是初始,最小,学习,填充,探测,退出,基于温度和/或基于年龄的电压电平,以进一步避免或降低电压裕度。 AVS模块可以是参考AVS数据库以进行电压电平决定的基于软件的模块。 将AVS模块提供为基于软件的模块可以允许在配置AVS模块和/或AVS数据库方面的灵活性。
    • 7. 发明申请
    • ADAPTIVE VOLTAGE SCALERS (AVSS), SYSTEMS, AND RELATED METHODS
    • 自适应电压调节器(AVSS),系统和相关方法
    • WO2010117795A2
    • 2010-10-14
    • PCT/US2010/029220
    • 2010-03-30
    • QUALCOMM INCORPORATEDMOORE, Richard, A.MICHALAK, Gerald, P.BRIDGES, Jeffrey, T.
    • MOORE, Richard, A.MICHALAK, Gerald, P.BRIDGES, Jeffrey, T.
    • G06F1/32
    • G05F1/462G06F1/3203G06F1/3234G06F1/324G06F1/3296H03K3/012Y02D10/126Y02D10/172
    • Adaptive voltage scalers (AVSs), systems, and related methods are disclosed. The AVSs are configured to adaptively adjust voltage levels powering a functional circuit(s) based on target operating frequencies and delay variation conditions to avoid or reduce voltage margin. In one embodiment, the AVS includes an AVS database. The AVS database can be configured to store voltage levels for various operating frequencies of a functional circuit(s) to avoid or reduce voltage margin. The AVS database allows rapid voltage level decisions. The voltage levels stored in the AVS database may be initial, minimum, learned, populated, explored, backed out, temperature-based, and/or age-based voltage levels according to disclosed embodiments to further avoid or reduce voltage margin. An AVS module may be a software-based module that consults the AVS database to make voltage level decisions. Providing the AVS module as a software-based module may allow flexibility in configuring the AVS module and/or the AVS database.
    • 自适应电压缩放器(AVS),系统和相关方法被公开。 AVS被配置为基于目标工作频率和延迟变化条件自适应地调整为功能电路供电的电压电平,以避免或减少电压裕度。 在一个实施例中,AVS包括AVS数据库。 AVS数据库可以配置为存储功能电路的各种工作频率的电压电平,以避免或减少电压裕度。 AVS数据库允许快速的电压电平决定。 根据所公开的实施例,存储在AVS数据库中的电压电平可以是初始,最小,学习,填充,探测,退出,基于温度和/或基于年龄的电压电平,以进一步避免或降低电压裕度。 AVS模块可以是参考AVS数据库以进行电压电平决定的基于软件的模块。 将AVS模块提供为基于软件的模块可以允许在配置AVS模块和/或AVS数据库方面的灵活性。