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    • 3. 发明授权
    • Beverage cooling system
    • 饮料冷却系统
    • US07823411B2
    • 2010-11-02
    • US11711139
    • 2007-02-27
    • Thomas GaglianoIver J. PhallenDouglas Vogt
    • Thomas GaglianoIver J. PhallenDouglas Vogt
    • B67D5/62
    • B67D1/0406B67D1/0007B67D1/06B67D1/0855B67D1/0864B67D1/0884B67D1/0888B67D1/1211B67D1/124B67D1/1243B67D1/127B67D1/1272B67D1/1275B67D1/1405B67D1/1411B67D1/1416B67D1/1438B67D2210/00139
    • A beverage dispenser for dispensing a carbonated beverage from a beverage source into a receptacle. The dispenser includes a first housing defining an interior volume and having a first surface closer to the beverage source and a second surface further from the beverage source. The dispenser also includes a beverage cooler including a second housing having a top surface, a bottom surface, and sides defining an interior volume. A first circuit is disposed within the interior volume of the second housing and forms a first set of fluid flow paths. A second circuit is disposed within the interior volume of the second housing and forms a second set of fluid flow paths in parallel with the first set of fluid flow paths. A third circuit is disposed within the interior volume of the second housing and forms a third set of fluid flow paths in parallel with the first and second sets of fluid flow paths, wherein, the first, second, and third circuits defines an inlet and an outlet. The beverage dispenser also includes a first tubing in fluid communication with the beverage source entering the second housing and coupled to the inlet of the first, second, and third circuits. In addition, the beverage dispenser includes a second tubing coupled to the outlet of each of the first, second, and third circuits and entering the first surface of the first housing and terminating proximate the second surface of the first housing. The beverage dispenser also includes a multi-nodal flow rate controller disposed within the interior volume of the first housing in contact with the second tubing, and a subsurface dispensing nozzle in fluid communication with the terminal end of the second tubing.
    • 一种用于将碳酸饮料从饮料源分配到容器中的饮料分配器。 分配器包括限定内部容积并具有更靠近饮料源的第一表面的第一壳体和更远离饮料源的第二表面。 分配器还包括饮料冷却器,其包括具有顶表面,底表面和限定内部容积的侧面的第二壳体。 第一电路设置在第二壳体的内部容积内并且形成第一组流体流动路径。 第二电路设置在第二壳体的内部容积内,并与第一组流体流路平行地形成第二组流体流动路径。 第三电路设置在第二壳体的内部容积内,并与第一组和第二组流体流路平行地形成第三组流体流动路径,其中,第一,第二和第三电路限定入口和 出口。 饮料分配器还包括与进入第二壳体并与第一,第二和第三回路的入口连接的饮料源流体连通的第一管道。 此外,饮料分配器包括联接到第一,第二和第三回路中的每一个的出口的第二管道,并且进入第一壳体的第一表面并在第一壳体的第二表面附近终止。 饮料分配器还包括设置在与第二管道接触的第一壳体的内部容积内的多节流量控制器,以及与第二管道的终端流体连通的地下分配喷嘴。
    • 4. 发明申请
    • Liquid dispensing system and method
    • 液体分配系统和方法
    • US20070056296A1
    • 2007-03-15
    • US11225806
    • 2005-09-12
    • Thomas Gagliano
    • Thomas Gagliano
    • F25B21/02B67D5/62
    • B67D1/0869B67D1/06B67D1/0864F25B21/02F25D31/003
    • System and method of cooling and dispensing a liquid, such as a beverage. The system can include a liquid source, a cooling reservoir, a dispensing valve, and a liquid conduit. The liquid conduit can connect the liquid source to the dispensing valve. The liquid conduit can be constructed of a thermally-conductive material. The liquid conduit can pass through the cooling reservoir. The invention can include a method of providing cooled liquids to a dispensing valve. The method can include maintaining ice and a cooling liquid in a cooling reservoir near the dispensing valve, pumping liquid through a thermo conductive conduit positioned in the ice and cooling liquid, and pumping the liquid out of the dispensing valve.
    • 冷却和分配液体如饮料的系统和方法。 该系统可以包括液体源,冷却储存器,分配阀和液体导管。 液体导管可以将液体源连接到分配阀。 液体导管可由导热材料构成。 液体导管可以通过冷却槽。 本发明可以包括向分配阀提供冷却的液体的方法。 该方法可以包括在分配阀附近的冷却储存器中保持冰和冷却液体,将液体泵送通过位于冰和冷却液体中的热传导导管,并将液体泵出分配阀。
    • 5. 发明授权
    • Liquid dispensing lighter-than-air airship system
    • 液体分配轻于空气的飞艇系统
    • US06769493B1
    • 2004-08-03
    • US10321016
    • 2002-12-18
    • Raoul G. FimaThomas GaglianoRalph E. Pope
    • Raoul G. FimaThomas GaglianoRalph E. Pope
    • A62C2500
    • A01C11/00A01C7/085A01C23/006A01G25/09A62C3/0242B64D1/16Y02A40/243Y02P60/40Y10S111/919Y10S111/92
    • A lighter-than-air airship system, having a multitude of uses, with a primary purpose being the dispensing of water over a raging fire, where access by personnel and ground equipment is difficult. The airship system comprises an aerodynamically configured structure having a semi-rigid keel or skeleton, where lift is provided in part by helium, with the keel mounting a liquid management mechanism preferably consisting of a reservoir open to the outside for resupply of liquid or water, a conduit leading to a holding tank, and a piping distribution and nozzle assembly below the airship system to spray or dispense the liquid or water, like an artificial rain, over selected areas to control or extinguish the raging fire. Alternate systems are provided for replenishing or filling the holding tank from ground locations.
    • 具有多种用途的轻型空中飞艇系统,其主要目的是在肆意的火灾中分配水,人员和地面设备难以进出。 飞艇系统包括具有半刚性龙骨或骨架的空气动力学构造的结构,其中提升部分地由氦提供,龙骨安装液体管理机构,优选地由向外部开口的储存器供应以补充液体或水, 通向储罐的导管,以及在飞艇系统下方的管道分配和喷嘴组件,用于将液体或水如人造雨喷洒或分配在选定的区域上以控制或扑灭肆虐的火灾。 提供替代系统用于从地面位置补充或填充储罐。
    • 7. 发明授权
    • Apparatus and method for controlling fluid delivery temperature in a dispensing apparatus
    • 用于控制分配装置中的流体输送温度的装置和方法
    • US06360556B1
    • 2002-03-26
    • US09437853
    • 1999-11-10
    • Thomas Gagliano
    • Thomas Gagliano
    • B67D562
    • B67D1/0086B67D1/0006B67D1/0861B67D1/0867B67D2001/0088B67D2001/009B67D2210/00015
    • Preferred embodiments of the present invention have a nozzle assembly capable of controlling pressure of comestible fluid exiting the nozzle assembly, a refrigeration system in which refrigerant pressure and temperature is controllable to enable control of comestible fluid temperature, heat exchangers connected to cool comestible fluid in the nozzles, an ultraviolet sterilization system for sterilizing locations outside and inside the system, and a hand held comestible fluid dispenser capable of cooling and selectively dispensing one of several comestible fluids supplied thereto. To provide comestible fluid at rack pressure to the nozzles in one highly preferred embodiment, each nozzle preferably has a valve movable through a number of closed positions to change pressure within the nozzle. Prior to fluid dispense, pressure at the nozzle is preferably reduced by actuating the valve through its range of closed positions. To improve temperature control and cooling efficiency, the present invention preferably employs heat exchangers adjacent to the nozzle assemblies. Due to their locations close to the nozzle assemblies, the heat exchangers generate convective recirculation through the nozzle assemblies to cool comestible fluid to the discharge openings thereof. The present invention can take the form of a multi-fluid dispensing gun having such a nozzle and heat exchanger relationship and having the pressure controlling valve as described above. To further improve control of comestible fluid temperature, the present invention preferably has an evaporator pressure regulator to control refrigerant pressure upstream of the refrigeration system compressor and a hot gas bypass valve to control refrigerant temperature.
    • 本发明的优选实施例具有能够控制离开喷嘴组件的可食流体的压力的喷嘴组件,其中制冷剂压力和温度可控制以使得能够控制可食用流体温度的冷冻系统,连接到可食用流体中的可食用流体的热交换器 喷嘴,用于对系统外部和内部进行灭菌的紫外线灭菌系统,以及能够冷却并选择性地分配供应给其的几种可食用流体中的一种的手持食品流体分配器。 为了在一个非常优选的实施方式中,在支架压力下向喷嘴提供可食用流体,每个喷嘴优选地具有可移动通过多个关闭位置的阀,以改变喷嘴内的压力。 在流体分配之前,优选通过在其闭合位置的范围内致动阀来减小喷嘴处的压力。 为了提高温度控制和冷却效率,本发明优选采用与喷嘴组件相邻的热交换器。 由于其位置靠近喷嘴组件,热交换器通过喷嘴组件产生对流再循环以将可食流体冷却到其排出开口。 本发明可以采用具有这种喷嘴和热交换器关系的多流体分配枪的形式,并具有如上所述的压力控制阀。 为了进一步提高食用液温度的控制,本发明优选具有用于控制制冷系统压缩机上游的制冷剂压力的蒸发器压力调节器和用于控制制冷剂温度的热气旁通阀。
    • 8. 发明授权
    • Beverage dispensing
    • 饮料点胶
    • US08833405B2
    • 2014-09-16
    • US11611835
    • 2006-12-15
    • Iver J. PhallenDouglas VogtThomas Gagliano
    • Iver J. PhallenDouglas VogtThomas Gagliano
    • B65B1/08F17C13/04
    • B67D1/1234B67D1/0857B67D1/0888B67D1/124B67D1/1243B67D1/127B67D1/1272B67D1/1411F17C13/04G05D7/0652Y10T137/87917
    • A beverage dispenser for dispensing a carbonated beverage from a beverage source into a receptacle includes a housing defining an interior volume and having a first surface proximal to the beverage source and a second surface distal to the beverage source. The beverage dispenser further includes a conduit in fluid communication with the beverage source entering the first surface of the housing and terminating proximate the second surface of the housing. The dispenser also includes a multi-nodal flow rate controller disposed within the interior volume of said housing in contact with said conduit and a subsurface dispensing nozzle in fluid communication with the terminal end of the conduit. The flow through the conduit to the subsurface dispensing nozzle is compensated to maintain substantially hydraulic beverage flow within the conduit by adjusting the contact between the multi-nodal flow rate controller and the conduit.
    • 用于将碳酸饮料从饮料源分配到容器中的饮料分配器包括限定内部容积并具有靠近饮料源的第一表面和远离饮料源的第二表面的壳体。 饮料分配器还包括导管,其与进入壳体的第一表面的饮料源流体连通并且在壳体的第二表面附近终止。 分配器还包括设置在与所述导管接触的所述壳体的内部容积内的多节流量控制器和与导管的终端流体连通的地下分配喷嘴。 通过管道到地下分配喷嘴的流动被补偿,以通过调节多节流量控制器和管道之间的接触来保持管道内的基本上液压的饮料流动。
    • 9. 发明申请
    • BEVERAGE DISPENSING
    • 饮料配方
    • US20080142115A1
    • 2008-06-19
    • US11742118
    • 2007-04-30
    • Douglas VogtRobert C. CorbettThomas Gagliano
    • Douglas VogtRobert C. CorbettThomas Gagliano
    • B67D5/62B65B1/04B67D3/00
    • B67D1/0855B67D1/0007B67D1/06B67D1/0864B67D1/0884B67D1/0888B67D1/1211B67D1/124B67D1/1243B67D1/127B67D1/1272B67D1/1275B67D1/1411B67D1/1416B67D1/1438
    • An apparatus for controlling beverage flow includes a dispensing tube having a distal end. The apparatus also includes a ball plug configured for linear reciprocal motion between a first position and a second position so that the ball plug abuts the distal end of the dispensing tube in the first position and is separated from the distal end of the dispensing tube in the second position. A flow rate controller for compensation of flow in a fluid dispensing system includes a body portion and a first set of flow restricting nodes and a second set of flow restricting nodes formed in the body portion. The controller also includes a first channel formed in the body portion and configured to receive and partially surround a portion of a first fluid conduit such that the first fluid conduit is in contact with the first set of flow restricting nodes. The controller also includes a second channel formed in the body portion and configured to receive and partially surround a portion of a second fluid conduit such the second fluid conduit is in contact with the second set of flow restricting nodes. Flow through the first fluid conduit is compensated by adjusting the contact between the first set of flow restricting nodes and the first fluid conduit, and flow through the second fluid conduit is compensated by adjusting the contact between the second set of flow restricting nodes and the second fluid conduit.
    • 用于控制饮料流的设备包括具有远端的分配管。 该装置还包括一个球塞,其构造成用于在第一位置和第二位置之间进行线性往复运动,使得球塞在第一位置抵靠分配管的远端并与分配管的远端分离 第二名 用于补偿流体分配系统中的流量的流量控制器包括主体部分和第一组流量限制节点以及形成在主体部分中的第二组流动限制节点。 控制器还包括形成在主体部分中并被配置为接收并部分地围绕第一流体导管的一部分的第一通道,使得第一流体导管与第一组流动限制节点接触。 控制器还包括形成在主体部分中并且构造成接收和部分地包围第二流体导管的一部分的第二通道,使得第二流体导管与第二组流动限制节点接触。 通过调节第一组流量限制节点和第一流体导管之间的接触来补偿流过第一流体管道的流量,并且通过调节第二组流量限制节点与第二流量限制节点之间的接触来补偿流过第二流体导管的流量 流体导管。
    • 10. 发明申请
    • Beverage cooling system
    • 饮料冷却系统
    • US20080141702A1
    • 2008-06-19
    • US11711139
    • 2007-02-27
    • Thomas GaglianoIver J. PhallenDouglas Vogt
    • Thomas GaglianoIver J. PhallenDouglas Vogt
    • B67D5/62
    • B67D1/0406B67D1/0007B67D1/06B67D1/0855B67D1/0864B67D1/0884B67D1/0888B67D1/1211B67D1/124B67D1/1243B67D1/127B67D1/1272B67D1/1275B67D1/1405B67D1/1411B67D1/1416B67D1/1438B67D2210/00139
    • A beverage dispenser for dispensing a carbonated beverage from a beverage source into a receptacle. The dispenser includes a first housing defining an interior volume and having a first surface closer to the beverage source and a second surface further from the beverage source. The dispenser also includes a beverage cooler including a second housing having a top surface, a bottom surface, and sides defining an interior volume. A first circuit is disposed within the interior volume of the second housing and forms a first set of fluid flow paths. A second circuit is disposed within the interior volume of the second housing and forms a second set of fluid flow paths in parallel with the first set of fluid flow paths. A third circuit is disposed within the interior volume of the second housing and forms a third set of fluid flow paths in parallel with the first and second sets of fluid flow paths, wherein, the first, second, and third circuits defines an inlet and an outlet. The beverage dispenser also includes a first tubing in fluid communication with the beverage source entering the second housing and coupled to the inlet of the first, second, and third circuits. In addition, the beverage dispenser includes a second tubing coupled to the outlet of each of the first, second, and third circuits and entering the first surface of the first housing and terminating proximate the second surface of the first housing. The beverage dispenser also includes a multi-nodal flow rate controller disposed within the interior volume of the first housing in contact with the second tubing, and a subsurface dispensing nozzle in fluid communication with the terminal end of the second tubing.
    • 一种用于将碳酸饮料从饮料源分配到容器中的饮料分配器。 分配器包括限定内部容积并具有更靠近饮料源的第一表面的第一壳体和更远离饮料源的第二表面。 分配器还包括饮料冷却器,其包括具有顶表面,底表面和限定内部容积的侧面的第二壳体。 第一电路设置在第二壳体的内部容积内并且形成第一组流体流动路径。 第二电路设置在第二壳体的内部容积内,并与第一组流体流路平行地形成第二组流体流动路径。 第三电路设置在第二壳体的内部容积内,并与第一组和第二组流体流路平行地形成第三组流体流动路径,其中,第一,第二和第三电路限定入口和 出口。 饮料分配器还包括与进入第二壳体并与第一,第二和第三回路的入口连接的饮料源流体连通的第一管道。 此外,饮料分配器包括联接到第一,第二和第三回路中的每一个的出口的第二管道,并且进入第一壳体的第一表面并在第一壳体的第二表面附近终止。 饮料分配器还包括设置在与第二管道接触的第一壳体的内部容积内的多节流量控制器,以及与第二管道的终端流体连通的地下分配喷嘴。