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    • 3. 发明申请
    • OPTICAL APPARATUS AND METHODS
    • 光学装置和方法
    • US20160153766A1
    • 2016-06-02
    • US14905742
    • 2014-07-17
    • Robert JONESAlfred NEWMANMartin BROCKDean Stuart GRIFFITHS
    • Robert JONESAlfred NEWMANMartin BROCKDean Stuart GRIFFITHS
    • G01B9/02
    • G01B9/02094G01B9/02098
    • An optical apparatus measures characteristics of a measurement target including an illumination portion, detection portion and processing portion. The illumination portion produces at least one pair of spatially separated areas of illumination for illuminating a measurement target to produce an associated light field. The light field produced by illumination of the measurement target includes a component corresponding to interference between the areas of illumination, illuminates a first site on the measurement target and illuminates a second site on the measurement target. The detection portion receives light from the measurement target, directs the received light onto a detector, and outputs signals from the detector dependent on the intensity of the detected light. The processing portion analyses the signals output by the detector to measure the characteristics of the measurement target.
    • 光学装置测量包括照明部分,检测部分和处理部分的测量目标的特性。 照明部分产生至少一对空间上分离的照明区域,用于照射测量目标以产生相关联的光场。 通过照射测量对象产生的光场包括与照明区域之间的干涉相对应的成分,照射测量对象上的第一位置并照亮测量对象上的第二位置。 检测部分从测量对象接收光,将接收的光引导到检测器上,并根据检测到的光的强度从检测器输出信号。 处理部分分析由检测器输出的信号,以测量测量目标的特性。
    • 5. 发明授权
    • Energy management system and method for water heater system
    • 热水器系统能源管理系统及方法
    • US09195242B2
    • 2015-11-24
    • US13066752
    • 2011-04-21
    • Derek ZobristGabriel AyalaLarry K AckerRobert Jones
    • Derek ZobristGabriel AyalaLarry K AckerRobert Jones
    • G05D23/19F24D19/10
    • G05D23/1917F24D19/1051G05D23/19
    • An energy management system and method for water heater system is arranged for control of the water heater system based on user demand, and control the hot water distribution base on demand and water temperature of the recirculation loop. The energy management system includes a control center collecting operational parameter of the water heater system and real time information of hot water usage at each of user points, and a management center for managing operational parameter of the water heater system and real time information of hot water usage, wherein the management center is preset for automatically turning each of a motorized unit and a water heater unit of the water heater system in an on and off manner in responsive to hot water demand at user point so as to optimize energy saving of the water heater system.
    • 热水器系统的能量管理系统和方法是根据用户需求进行热水器系统的控制,并根据需要控制热水分配和循环循环的水温。 能源管理系统包括收集热水器系统的运行参数的控制中心和每个用户点的热水使用实时信息,以及用于管理热水器系统的运行参数的管理中心和热水的实时信息 用途,其中管理中心被预设为响应于用户点处的热水需求而以开关方式自动转动热水器系统的机动单元和热水器单元,以便优化水的节能 加热器系统。
    • 6. 发明申请
    • Hot Water Control Systems
    • 热水控制系统
    • US20150019027A1
    • 2015-01-15
    • US14340359
    • 2014-07-24
    • Larry K. AckerRobert JonesDerek ZobristGabriel Ayala
    • Larry K. AckerRobert JonesDerek ZobristGabriel Ayala
    • G05D23/19G05B15/02
    • G05D23/1917F24D19/1051G05D23/19
    • An energy management system and method for water heater system is arranged for control of the water heater system based on user demand, and control the of water distribution base on demand and water temperature of the recirculation loop. The energy management system includes a control center collecting operational parameter of the water heater system and real time information of hot water usage at each of user points, and a management center for managing operational parameter of the water heater system. and real time information of hot water usage, wherein the management center is preset for automatically turning each of a motorized unit and a water heater unit of the water heater system in an on and off manner in responsive to hot water demand at user point so as to optimize energy saving of the water heater system.
    • 配置热水器系统的能源管理系统和方法,用于根据用户需求对热水器系统进行控制,并根据需水量和再循环回路的水温进行控制。 能量管理系统包括收集热水器系统的操作参数的控制中心和每个用户点的热水使用的实时信息,以及用于管理热水器系统的操作参数的管理中心。 和热水使用的实时信息,其中管理中心被预设为响应于用户点处的热水需求而以开和关方式自动转动热水器系统的电动单元和热水器单元,以便 优化热水器系统节能。
    • 10. 发明申请
    • Amorphous Nickel Phosphorus Alloys for Oil and Gas
    • 用于石油和天然气的无定形镍磷合金
    • US20130153432A1
    • 2013-06-20
    • US13667758
    • 2012-11-02
    • Robert Jones
    • Robert Jones
    • C25D3/56
    • C25D3/562
    • There is disclosed a system and method for applying an amorphous NiP alloy coating on pipes and rods, particularly for use in the oil and gas industries to inhibit corrosion, In an embodiment, the method comprises applying an amorphous nickel phosphorus or NiP alloy coating to pipes and rods for use in oil and gas industries, comprising; preparing a Watt's type nickel phosphorus (NiP) plating bath solution utilizing a Watt's type nickel electrolyte containing hypophosphorous acid; maintaining the plating bath solution temperature at between 120° F. and 170° F. adjusted to regulate phosphorus content over 11%; regulating a pH level of the plating bath solution between 1.0 and 3.0 utilizing sulphuric acid; and controlling the cathode current density in the range of 10-100 amps/sq/ft. Significant cost savings may be realized by using an electroplated nickel-phosphorus alloy over regular carbon steel alloy components at sufficient thickness to be pore free replacing the use of more expensive components made of stainless steels or nickel base alloys.
    • 公开了一种在管和棒上施加非晶态NiP合金涂层的系统和方法,特别是用于油气工业中以抑制腐蚀。在一个实施方案中,该方法包括向管道施加无定形镍磷或NiP合金涂层 和用于石油和天然气工业的棒,包括: 使用含有次磷酸的瓦特型镍电解液制备瓦特型镍磷(NiP)电镀浴溶液; 保持电镀液温度在120°F至170°F之间,以调节磷含量超过11%; 使用硫酸调节镀液溶液的pH值在1.0和3.0之间; 并控制阴极电流密度在10-100安培/平方英尺的范围内。 通过使用电镀镍 - 磷合金超过常规碳钢合金部件足够的厚度以便无孔隙地替代使用由不锈钢或镍基合金制成的更贵的部件,可以实现显着的成本节约。