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    • 1. 发明申请
    • HEAT PIPE LOOP WITH PUMP ASSISTANCE
    • 热泵管道与泵辅助
    • WO2003062686A2
    • 2003-07-31
    • PCT/US2003/001813
    • 2003-01-22
    • DINH, Khanh
    • DINH, Khanh
    • F16L
    • F28D15/0266F28D15/06
    • A heat pipe loop includes a first heat pipe section having a first temperature and a second heat pipe section having a second temperature higher than the first temperature. The first heat pipe section is a condenser and the second heat pipe section is an evaporator. A vapor line connects an upper portion of the first heat pipe section with an upper portion of a second heat pipe section. A liquid line connects a lower portion of the first heat pipe section with a lower portion of a second heat pipe section. In one embodiment the first heat pipe section is disposed at a first elevation and the second heat pipe section is disposed at a second elevation higher than the first elevation. A pump directs liquid from the first heat pipe section to the second heat pipe section through the liquid line.
    • 热管回路包括具有第一温度的第一热管段和具有高于第一温度的第二温度的第二热管段。 第一热管部是冷凝器,第二热管部是蒸发器。 蒸气管线将第一热管部分的上部与第二热管部分的上部连接。 液体管线将第一热管部分的下部与第二热管部分的下部连接。 在一个实施例中,第一热管段设置在第一高度处,第二热管段设置在高于第一高度的第二高度处。 泵通过液体管线将液体从第一热管部分引导到第二热管部分。
    • 2. 发明申请
    • BLADDER DAMPER
    • 刮板阻尼器
    • WO1994009301A1
    • 1994-04-28
    • PCT/US1993009581
    • 1993-10-15
    • DINH, Khanh
    • F16K31/145
    • F16K7/10F24F13/10F24F2013/087Y10T137/8225
    • A damper (10) includes an elastic bladder (16) which is attached to and surrounds a support element (32) mountable in a ventilation duct (12). The bladder (16) inflates when supplied with fluid to restrict the available air space within the duct (12), thus restricting airflow through the duct (12). The amount of restriction can be regulated by monitoring (40) the degree of inflation of the bladder (16) and by controlling the degree of inflation to provide the desired airflow restriction rate. The bladder may be inflated by supplying pressurized air to the interior of the bladder (16) through the support element (32) or by vaporizing a refrigerant in communication with the bladder. The damper may comprise a single bladder (16) extending longitudinally through the duct or a plurality of bladders (128) extending transversely across the duct (112).
    • 阻尼器(10)包括弹性囊(16),该弹性囊(16)附接到并围绕可安装在通风管道(12)中的支撑元件32。 气囊(16)在被供应流体时膨胀以限制管道(12)内的可用空气空间,从而限制通过管道(12)的气流。 可以通过监测(40)膀胱(16)的膨胀程度并通过控制膨胀程度来提供所需的气流限制率来调节限制的量。 通过将压缩空气通过支撑元件(32)供应到囊(16)的内部,或通过使与气囊连通的制冷剂蒸发而使气囊膨胀。 阻尼器可以包括纵向延伸通过管道的单个囊(16)或跨越管道(112)横向延伸的多个囊(128)。
    • 3. 发明申请
    • HEAT PIPE SYSTEM HAVING COMMON VAPOR RAIL
    • 具有通用蒸气轨的热管系统
    • WO2012103009A2
    • 2012-08-02
    • PCT/US2012022218
    • 2012-01-23
    • HEAT PIPE TECHNOLOGY INCDINH KHANHDINH THANG
    • DINH KHANHDINH THANG
    • F28D15/02
    • F28D15/0266F24F12/002F24F12/003F28D15/0275F28D21/0014F28D2015/0216F28F1/32F28F2210/10Y02B30/563
    • A heat pipe has a plurality of conduits. Each conduit has an evaporator section extending laterally from a first open end of the conduit, a condenser section extending laterally from a second open end of the conduit, and a liquid return section connected to the evaporator section at a position away from the first open end and connected to the condenser section at a position away from the second open end. The liquid return section of at least one conduit is distinct from the liquid return section of another of the conduits. A common vapor manifold extends between the first and second open ends of each of said plurality of conduits so vapors produced in the evaporator sections can flow from the first open ends through the common vapor manifold to the second open ends without flowing through the conduits.
    • 热管具有多个导管。 每个管道具有从管道的第一开口端横向延伸的蒸发器部分,从导管的第二开口端横向延伸的冷凝器部分,以及在远离第一开口端的位置处连接到蒸发器部分的液体返回部分 并且在远离第二开口端的位置处连接到冷凝器部分。 至少一个导管的液体返回部分不同于另一导管的液体返回部分。 常见的蒸汽歧管在所述多个导管中的每一个的第一和第二开口端之间延伸,因此在蒸发器部分中产生的蒸汽可以从第一开放端流过共同的蒸气歧管到第二开口端而不流过导管。
    • 6. 发明申请
    • HEAT PIPE LOOP WITH PUMP ASSISTANCE
    • 带泵辅助的热管循环
    • WO03062686A3
    • 2003-10-16
    • PCT/US0301813
    • 2003-01-22
    • DINH KHANH
    • DINH KHANH
    • F28D15/02F28D15/06F28D15/00F28F27/00
    • F28D15/0266F28D15/06
    • A heat pipe loop includes a first heat pipe section having a first temperature and a second heat pipe section having a second temperature higher than the first temperature. The first heat pipe section is a condenser and the second heat pipe section is an evaporator. A vapor line connects an upper portion of the first heat pipe section with an upper portion of a second heat pipe section. A liquid line connects a lower portion of the first heat pipe section with a lower portion of a second heat pipe section. In one embodiment the first heat pipe section is disposed at a first elevation and the second heat pipe section is disposed at a second elevation higher than the first elevation. A pump directs liquid from the first heat pipe section to the second heat pipe section through the liquid line.
    • 热管回路包括具有第一温度的第一热管部分和具有高于第一温度的第二温度的第二热管部分。 第一热管部分是冷凝器,第二热管部分是蒸发器。 蒸气管线连接第一热管部分的上部与第二热管部分的上部。 液体管线将第一热管部分的下部与第二热管部分的下部连接。 在一个实施例中,第一热管部分设置在第一高度处,并且第二热管部分设置在高于第一高度的第二高度处。 泵将液体从第一热管部分通过液体管线引导至第二热管部分。
    • 7. 发明申请
    • SERPENTINE HEAT PIPE AND DEHUMIDIFICATION APPLICATION IN AIR CONDITIONING SYSTEMS
    • SERPENTINE热管和脱气应用在空调系统中
    • WO1994000725A1
    • 1994-01-06
    • PCT/US1993006067
    • 1993-06-30
    • DINH, Khanh
    • F28D15/02
    • F28D15/0266F24F3/1405
    • A heat pipe heat exchanger is provided in the form of a serpentine heat pipe (38) that does not have the ends of the individual tubes manifolded to one another via a straight pipe or via any other common connector. Instead, it has been discovered that heat pipes connected via U-bends (31) to form a continuous coil function adequately. The serpentine heat pipe may include integral condenser and evaporator portions separated by a divider to form a one-slab heat exchanger, or separate evaporator and condenser coils connected to one another by vapor and return lines to form a two-section heat pipe. A method of producing a serpentine heat pipe indludes providing a plurality of U-shaped tubes (30) which are interconnected to form a single serpentine heat pipe (38), one of the tubes having an open end, and inserting sufficient refrigerant (34) in the one tube to allow each of the tubes to function as a separate heat pipe. The serpentine heat pipe heat exchanger may be used to increase the dehumidification capacity of an air conditioner.
    • 热管式热交换器以蛇形管(38)的形式提供,其不具有通过直管或经由任何其它公共连接器相互歧管的各个管的端部。 相反,已经发现通过U形弯曲(31)连接以形成连续线圈功能的热管充分。 蛇形热管可以包括由分隔器分开的一体式冷凝器和蒸发器部分,以形成单板式热交换器,或者通过蒸气和回流管线彼此连接以形成两段热管的单独的蒸发器和冷凝器盘管。 制造蛇形热管的方法不包括提供多个U形管(30),U形管(30)互连以形成单个蛇形管(38),其中一个管具有开口端,并插入足够的制冷剂(34) 在一个管中,以允许每个管作为单独的热管。 蛇形管热交换器可用于提高空调的除湿能力。
    • 9. 发明申请
    • CLOSED-LOOP DRYING PROCESS AND SYSTEM
    • 闭环干燥过程和系统
    • WO1993021489A1
    • 1993-10-28
    • PCT/US1993003158
    • 1993-04-12
    • DINH, Khanh
    • F26B03/00
    • F26B21/14A47L15/486F26B21/086F26B23/005F28D15/02Y02B30/52Y02P70/405
    • A dryer is designed as a closed system in which heated air used to dry the materials is continuously recycled within the drying compartment of the dryer without being discharged to the atmosphere, thus increasing the efficiency of the system while preventing the discharge of contaminated vapors to the atmosphere and also conserving energy which would otherwise be required to heat or air-condition the air drawn into the dryer from the building in which the dryer is located. A regenerative heat exchanger (140) and an atmospheric cooler/condenser (144) are provided in the dryer and condense and remove moisture from the saturated air and transfer the heat of condensation back into the air before the air is reheated and recycled back to the materials to be dried. The driving compartment may comprise an enclosed tunnel (131) through which a rack of superposed trays (170) are conveyed or may comprise some other conveying mechanism.
    • 干燥机设计为封闭系统,其中用于干燥材料的加热空气在干燥室的干燥室内连续循环,而不会排放到大气中,从而提高系统的效率,同时防止污染的蒸汽排放到 气氛并且还节省能量,否则将需要加热或空调从烘干机所在的建筑物吸入干燥机的空气。 再生热交换器(140)和大气冷却器/冷凝器(144)设置在干燥器中并冷凝并从饱和空气中除去水分,并且在空气再加热之前将冷凝热转移回到空气中并循环回到 要干燥的材料 驱动室可以包括封闭的通道(131),齿条叠置的托盘(170)可以通过该通道传送或者可以包括一些其它输送机构。