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    • 2. 发明授权
    • Refrigeration circuit with reheat coil
    • 带加热线圈的制冷回路
    • US06381970B1
    • 2002-05-07
    • US09263391
    • 1999-03-05
    • David H. EberPaul R. GlammDwayne L. JohnsonWalter Earhart, Jr.John F. KloudaBrian J. KielDale A. Hulst
    • David H. EberPaul R. GlammDwayne L. JohnsonWalter Earhart, Jr.John F. KloudaBrian J. KielDale A. Hulst
    • F25D1706
    • F25B40/02F24F3/153F24F2011/0002F25B6/02F25B41/04F25B49/027F25B2400/16
    • A refrigeration system with a high percentage of fresh air. The system comprises a supply air duct; an indoor heat exchange coil operably positioned in the supply air duct; a reheat heat exchange coil operably positioned in the supply air duct; an outdoor heat exchange coil; at least one compressor; and an expansion device. The system also comprises refrigeration system tubing connected to and serially arranging the compressor, the outdoor heat exchange coil, the expansion device and the indoor coil into a refrigeration circuit; and reheat tubing connecting the reheat coil to the refrigeration tubing so as to arrange the reheat coil in a parallel circuited arrangement with the outdoor heat exchange coil and in a series circuited arrangement with the compressor, the expansion device and the indoor heat exchange coil. The system further comprises a subcooler located between and operably connected to the indoor heat exchange coil and the parallel circuited arrangement; and a control valve in the reheat tubing operable to control refrigerant flow through the reheat coil.
    • 具有高比例的新鲜空气的制冷系统。 该系统包括供气管道; 可操作地定位在供气管道中的室内热交换盘管; 可操作地定位在供气管道中的再热换热线圈; 户外热交换线圈; 至少一个压缩机; 和扩展装置。 该系统还包括连接到压缩机,室外热交换线圈,膨胀装置和室内线圈的制冷系统管道并联到制冷回路中; 以及将再热线圈连接到制冷管道的再加热管,以将再热线圈与室外热交换线圈并联布置,并与压缩机,膨胀装置和室内热交换线圈串联布置。 该系统还包括位于室内热交换线圈之间并可操作地连接到室内热交换线圈和并联绕组的过冷器; 以及再加热管中的控制阀,其可操作以控制通过再热线圈的制冷剂流。
    • 3. 发明授权
    • In-line incremetally adjustable electronic expansion valve
    • 在线可调式电子膨胀阀
    • US5417083A
    • 1995-05-23
    • US300093
    • 1994-09-01
    • David H. Eber
    • David H. Eber
    • F16K3/08F16K31/04F25B41/06F16K31/02F16K5/10
    • F16K31/041F16K3/085F25B41/062F25B2341/0653Y02B30/72
    • A variable flow rate expansion valve designed for in-line installation in a fluid conveying conduit such as between the high pressure condenser and lower pressure evaporator of a refrigeration system includes an integrally defined restrictor disc and a closure disc for controlling the flow of fluid through the valve. The restrictor disc has a first set of flow apertures and the closure disc a second set of flow apertures. The closure disc is rotatably coupled to the restrictor device in a plane parallel to the plane of the restrictor disc and perpendicular to refrigerant flow. A stepper motor is coupled to the closure disc through a linear actuator. Movement of the linear actuator causes the closure disc to rotate relative to the restrictor disc such that the flow apertures of the closure disc are selectively brought into and out of registry with the apertures of the restrictor disc.
    • 设计用于在诸如制冷系统的高压冷凝器和低压蒸发器之间的流体输送管道中进行在线安装的可变流量膨胀阀包括一体式限定的限制盘和封闭盘,用于控制通过 阀。 限流盘具有第一组流动孔,封闭盘具有第二组流动孔。 闭合盘在平行于限制盘的平面并垂直于制冷剂流动的平面中可旋转地联接到限流装置。 步进电机通过线性致动器耦合到闭合盘。 线性致动器的移动导致闭合盘相对于限制盘旋转,使得封闭盘的流动孔被选择性地进入到与限制盘的孔对准之外。
    • 4. 发明授权
    • Temperature sensitive solenoid valve in a scroll compressor
    • 涡旋压缩机中的温度敏感电磁阀
    • US4820130A
    • 1989-04-11
    • US133576
    • 1987-12-14
    • David H. EberPeter A. KotlarekRonald W. Okoren
    • David H. EberPeter A. KotlarekRonald W. Okoren
    • F16K31/06F04C28/28F04C29/12F25B1/00F25B31/02F25B49/02F04B39/08
    • F04C29/124F04C28/28F25B31/026F25B49/022F04C2270/19F04C2270/70F05B2270/3032
    • Inside the hermetic shell of a scroll compressor, a normally closed solenoid valve seats against the back side of a stationary scroll plate to close a discharge opening through the plate. A coil circuit that actuates the valve has an electrical resistance that increases with temperature. The temperature dependent resistance allows the coil circuit to also function as a discharge temperature sensor. Should the discharge gas over-heat, the compressor motor and the valve are de-energized in response to the resistance exceeding a predetermined limit. The closed valve prevents backflow from rapidly reversing the rotational direction of the compressor, which can be extremely noisy and damaging to the compressor. Both the valve and the compressor motor are energized at the same time, regardless of the compressor's direction of rotation. Should the compressor motor be inadvertently wired to operate in reverse, the solenoid valve still opens to prevent destructively low pressure from developing between the scroll plates.
    • 在涡旋压缩机的密封壳体的内部,常闭电磁阀抵靠固定涡盘的背面,以封闭通过该板的排出口。 驱动阀的线圈电路具有随温度而增加的电阻。 温度依赖电阻允许线圈电路也用作放电温度传感器。 如果放电气体过热,压缩机电动机和阀门响应于超过预定极限的电阻而断电。 关闭的阀防止逆流快速地逆转压缩机的旋转方向,这对压缩机可能是非常嘈杂和有害的。 无论压缩机的旋转方向如何,阀门和压缩机电机同时通电。 如果压缩机电机被无意地连接以反向操作,则电磁阀仍然打开以防止在涡旋板之间的破坏性低压显影。
    • 7. 发明授权
    • Electric motor driven air valve
    • 电机驱动空气阀
    • US4884590A
    • 1989-12-05
    • US279638
    • 1988-12-05
    • David H. EberH. Kenneth Ring
    • David H. EberH. Kenneth Ring
    • F24F11/76F24F13/10
    • F24F13/10F24F11/053Y10T137/0318Y10T137/3367Y10T137/8242
    • An air valve actuated by an electric motor has a cylindrical inlet section. The inlet section defines a seating surface upstream of which is a support grid. A backplate, upon which the actuating motor is mounted, is fixedly supported by a plurality of rods that extend downstream of the inlet section. A damper assembly includes a generally planar damper mounted for movement axially of the inlet section. The damper assembly includes a splined rod which extends upstream and into a cooperating spline in the support grid. A threaded spindle extends downstream of the damper plate through a cooperatively threaded motor-driven drive gear which is mounted for rotation on the backplate. Because a portion of the damper assembly is splined, the damper assembly cannot rotate and is driven axially within the valve by the rotation of the drive motor and drive gear. A strain sensing device is mounted on the valve such that the abutment of the damper with the inlet section seating surface, which causes a detectable strain to develop within the valve, is sensed immediately upon its occurrence. The strain signal from the sensor is used to control the de-energization of the motor so that the stalling of the motor as a result of its driving the damper into abutment with the inlet section seating surface is prevented while the development of a tight seal between the damper and its seating surface is assured.
    • 由电动机驱动的空气阀具有圆柱形入口部分。 入口部分限定了一个座面,其上游是支撑格栅。 安装有致动马达的背板由在入口部分的下游延伸的多个杆固定地支撑。 阻尼器组件包括安装成用于沿入口部分轴向运动的大致平面的阻尼器。 阻尼器组件包括花键杆,其在上游延伸并且进入支撑格栅中的配合花键。 螺纹主轴通过协作螺纹的电机驱动的驱动齿轮延伸到阻尼板的下游,该驱动齿轮安装成用于在背板上旋转。 因为阻尼器组件的一部分是花键的,所以阻尼器组件不能旋转并且通过驱动马达和驱动齿轮的旋转在阀内轴向地被驱动。 应变传感装置安装在阀上,使得阻尼器与入口部支座表面的邻接,其在阀内产生可检测应变,在其出现时立即被感测。 来自传感器的应变信号用于控制电动机的断电,从而防止电动机由于其驱动阻尼器与入口部分座表面的邻接而停止,同时在 阻尼器及其座椅表面得到保证。
    • 8. 发明授权
    • Oil management apparatus for a refrigeration chiller
    • 制冷冷水机油管理装置
    • US5675978A
    • 1997-10-14
    • US756629
    • 1996-11-26
    • Frederic B. Hamm, Jr.David H. Eber
    • Frederic B. Hamm, Jr.David H. Eber
    • F01M1/10F01M1/16F25B31/00F25B43/02
    • F25B31/002F01M1/16F01M1/10Y10T137/86566
    • Oil management apparatus for a refrigeration chiller includes a housing mounted to the head wall of an oil supply tank. The housing defines a series of ports and internal flow passages in communication with a valve cavity. A valve spindle disposed in the cavity is configured and positionable such that a plurality of oil flow passages within the chiller are capable of being setup in order to accommodate various chiller lubrication needs including those as they relate to both chiller operation and maintenance. The combination of an integral housing and single valve eliminates a large number of individual valves and the need to connect those valves and various chiller lubrication components, such as an oil filter and oil pressure regulator, with individual sections of difficult to fabricate piping. As a result, the likelihood of error in the setup of a chiller lubrication system is significantly reduced.
    • 用于制冷冷冻机的油管理装置包括安装在供油箱的顶壁上的壳体。 壳体限定了与阀腔连通的一系列端口和内部流动通道。 设置在空腔中的阀芯被构造和定位,使得能够设置冷却器内的多个油流通道以适应各种冷却器润滑需求,包括它们涉及冷却器操作和维护的那些。 整体外壳和单个阀门的组合消除了大量单独的阀门,并且需要连接这些阀门和各种冷却器润滑部件,例如油过滤器和油压调节器,具有难以制造的管道的各个部分。 结果,冷却器润滑系统的设置误差的可能性大大降低。
    • 9. 发明授权
    • Centrifugal fan with variable blade pitch
    • 具有可变叶片间距的离心式风扇
    • US4662819A
    • 1987-05-05
    • US849997
    • 1986-04-10
    • Rodney LakowskeJames C. TischerDavid H. Eber
    • Rodney LakowskeJames C. TischerDavid H. Eber
    • F04D29/28F04D29/36
    • F04D29/287
    • A centrifugal fan includes a fan wheel having airfoil blades mounted for pivotal movement about their center of gravity. A yoke mechanism exterior of the fan wheel, when moved axially of the fan wheel drive shaft axis, causes actuator rods to move through the sidewall of the fan wheel. The axial movement of the actuator rods is translated first into rotary movement of a quill hub relative to the fan wheel and finally to radial movement of blade pivoting levers interior of the fan wheel. The movement of the blade pivoting levers causes the pitch of the individual fan blades to be changed in accordance with the degree of movement of the yoke mechanism. The yoke mechanism, actuator rods, quill hub and blade pivoting levers operate independently of the fan wheel so that blade pitch can be varied over an operating range irrespective of whether the fan wheel is stopped or is rotating. The yoke mechanism is moved and fan modulation is accomplished in response to the demand for conditioned air by the variable air volume system in which the fan is employed.
    • 离心风扇包括风扇叶轮,风扇叶片安装成围绕其重心枢转运动。 当风扇叶轮的轴向移动时,风扇叶轮的轭机构外部使致动器杆移动通过风扇叶轮的侧壁。 致动器杆的轴向运动首先被翻转成套筒毂相对于风扇叶轮的旋转运动,最后平移到叶轮枢转杆的风扇轮内部的径向移动。 叶片枢转杆的移动使得各个风扇叶片的间距根据轭架机构的移动程度而改变。 轭机构,致动器杆,套筒毂和叶片枢转杆独立于风扇叶片操作,使得叶片间距可以在操作范围内变化,而不管风扇轮是否停止或正在旋转。 轭机构被移动,并且响应于使用风扇的可变风量系统对调节空气的需求而完成风扇调节。