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    • 4. 发明申请
    • APPARATUS AND METHOD FOR ENTRAINING FLUIDS
    • 装置和方法,用于输入流体
    • US20130000733A1
    • 2013-01-03
    • US13575186
    • 2011-02-17
    • Michelle GothardNicholas CousinsRobert Scott
    • Michelle GothardNicholas CousinsRobert Scott
    • G05D11/00
    • B01F3/0807B01F5/0262B01F5/0426B01F13/1016B01F13/1022Y10T137/0318Y10T137/0329Y10T137/2526Y10T137/87595
    • A method of entraining a second fluid in a first fluid is provided. The method comprises supplying a first fluid to a processing passage (4) having an inlet (6) and an outlet (8), and supplying an entrainment fluid to a nozzle (10) which opens into the processing passage (4) intermediate the passage inlet (6) and the passage outlet (8). A second fluid which will undergo a change of phase and/or state when added to the first fluid is also provided, and supplied to a first port (22) opening into the processing passage (4) adjacent the nozzle (10). The entrainment fluid is injected from the nozzle (10) into the processing passage (4) so as to form a dispersed phase of the first and second fluids in a continuous vapour phase, and the vapour phase is condensed downstream of the nozzle (10). A device suitable for carrying out such a method is also provided.
    • 提供了将第二流体夹带在第一流体中的方法。 该方法包括向具有入口(6)和出口(8)的处理通道(4)供应第一流体,并将夹带流体供应到通向处于通道(4)的通道 入口(6)和通道出口(8)。 还提供了当添加到第一流体时将经历相位和/或状态改变的第二流体,并且被供应到与喷嘴(10)相邻的通向处理通道(4)的第一端口(22)。 夹带流体从喷嘴(10)喷射到处理通道(4)中,以形成连续气相中的第一和第二流体的分散相,并且气相在喷嘴(10)的下游冷凝, 。 还提供了一种适于实施这种方法的装置。
    • 6. 发明授权
    • Overhead poultry conveying and counting system
    • 架空家禽输送和计数系统
    • US07572176B2
    • 2009-08-11
    • US11152486
    • 2005-06-14
    • James A. PetersenBrian PorterRobert Scott
    • James A. PetersenBrian PorterRobert Scott
    • A22C21/00
    • G06M7/04A22C21/00A22C21/0053G06M1/108
    • A system and method of counting poultry carcasses conveyed by an overhead shackle conveying system. Poultry carcasses are suspended from shackles of an overhead conveying system and moved along a path of travel defined by the overhead conveying system. The carcasses are directed to engage a force detecting device. The force detecting device generates a signal, such as an electrical signal, when the impacted by a carcass, a magnitude of the electrical signal is proportional to a force of impact of the carcass on the force detecting device. The electrical signal is transmitted to a counter. The counter analyzes the electrical signal and increments a carcass count each time a force in a carcass identifying range is measured.
    • 一种计算由顶置卸扣输送系统输送的家禽屠体的系统和方法。 家禽屠体悬挂在架空输送系统的枷锁上,并沿着由架空输送系统限定的行进路径移动。 被引导的屠体接合力检测装置。 力检测装置在被胎体撞击时产生诸如电信号的信号,电信号的大小与胎体在力检测装置上的冲击力成比例。 电信号传送到计数器。 计数器分析电信号,并在每次测量胴体识别范围内的力时增加屠体计数。
    • 7. 发明申请
    • Dental curing light including a light integrator for providing substantially equal distribution of each emitted wavelength
    • 牙科治疗光包括用于提供每个发射波长的基本相等分布的光积分器
    • US20070037113A1
    • 2007-02-15
    • US11200988
    • 2005-08-10
    • Robert ScottDee Jessop
    • Robert ScottDee Jessop
    • A61C1/00
    • A61C19/004
    • A dental curing light including a body having a housing, one or more light emitting devices disposed on or within the housing, and a light integrator configured to receive light emitted by the at least one light emitting device. The light integrator includes an outer wall defining a hollow reflective internal chamber, an input port through the wall, and an output port through the wall and spaced apart from the input port. Light is received by the light integrator through the input port and into the diffusely reflective internal chamber such that the received light is reflected in many directions and a plurality of times within the internal chamber before being emitted through the output port. Light exiting the output port of the light integrator is such that the intensity of any given wavelength emitted is substantially equally distributed across the entire footprint of emitted light.
    • 一种牙科固化灯,包括具有外壳的本体,设置在外壳上或壳体内的一个或多个发光器件,以及被配置为接收由至少一个发光器件发射的光的光积分器。 光积分器包括限定中空反射内部室的外壁,通过壁的输入端口和穿过壁并与输入端口间隔开的输出端口。 光由光积分器通过输入端口接收并进入漫反射内腔,使得接收的光在通过输出端口发射之前在多个方向上反复多次。 离开光积分器的输出端口的光使得发射的任何给定波长的强度基本上均匀地分布在发射光的整个占地面积上。