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    • 2. 发明申请
    • HEAT EXCHANGER DEVICE FOR CONFINED SPACES
    • 用于隔离空间的热交换器装置
    • WO2017027955A1
    • 2017-02-23
    • PCT/CA2016/000197
    • 2016-07-25
    • CAMPEAU, Gerard
    • CAMPEAU, Gerard
    • F28D1/04F28D1/047F28F1/10
    • F28D7/082H01M10/625H01M10/6556
    • This application is directed to a compact heat transfer system for use in heat transfer applications occurring in confined spaces. There is a need to improve heat transfer efficiencies in heat transfer systems designed for confined spaces. The heat exchanger device (14) of the present application, comprises a bladder (16) configured to contain a heat transfer fluid, and a recirculating fluid path (20) formed by a conduit circuit (36) to operatively communicate with the bladder, the bladder configured to provide shape-conformable interfaces (24, 82, 84) for heat transfer between the heat transfer fluid and an exposed surface (26) within the confined space (12). The conduit circuit (36) further extends through a secondary heat exchange unit (38) located at a heat generating device (30).
    • 该应用涉及一种紧凑的传热系统,用于在密闭空间中发生的传热应用。 需要提高为密闭空间设计的传热系统的传热效率。 本申请的热交换器装置(14)包括构造成容纳传热流体的气囊(16)和由导管电路(36)形成以与膀胱可操作地连通的再循环流体路径(20), 气囊构造成提供形状适形接口(24,82,84),用于传热流体和受限空间(12)内的暴露表面(26)之间的热传递。 导管电路(36)进一步延伸穿过位于发热装置(30)处的二次热交换单元(38)。
    • 3. 发明申请
    • IMPROVED EVAPORATIVE CONDENSER
    • 改进的蒸发冷凝器
    • WO2015172180A1
    • 2015-11-19
    • PCT/AU2015/000277
    • 2015-05-13
    • VISSER, Klaas
    • VISSER, Klaas
    • F25B39/04F28D5/02
    • F25B39/00F25B39/04F25B2339/041F25B2339/046F28B1/02F28C1/14F28C1/16F28D3/02F28D7/082
    • An evaporative condenser (10) for use in a refrigeration or air-conditioning system comprises one or more condensing coils (12) arranged in a condensing coil zone (13). The coils condense therewithin a refrigerant of the system. The condenser also comprises a mechanism (14, 15) for wetting the one or more condensing coils (12). The condenser further comprises drift eliminators (30) arranged to remove free water from an airstream A that has flowed past the one or more condensing coils and wetting mechanism (14, 15). The condenser additionally comprises a divergent zone (40) that diverges from the condensing coil zone (13) towards the drift eliminators (30) such that, once the airstream has flowed past the one or more condensing coils (12), it flows into and through the divergent zone 40 to the drift eliminators (30).
    • 用于制冷或空调系统的蒸发冷凝器(10)包括一个或多个布置在冷凝盘管区(13)中的冷凝线圈(12)。 线圈在系统的制冷剂中冷凝。 冷凝器还包括用于润湿一个或多个冷凝盘管(12)的机构(14,15)。 冷凝器还包括漂移消除器(30),其布置成从已经流过所述一个或多个冷凝盘管和润湿机构(14,15)的空气流A去除游离水。 冷凝器还包括从冷凝线圈区(13)朝向漂流消除器(30)分叉的扩散区(40),使得一旦气流已经流过一个或多个冷凝盘管(12),则其流入 通过发散区40到达漂移消除器(30)。
    • 6. 发明申请
    • WÄRMETAUSCHERLEITUNGSSYSTEM
    • 交换管系统
    • WO2013030402A2
    • 2013-03-07
    • PCT/EP2012/067080
    • 2012-09-03
    • AUROTEC GMBHZIKELI, StefanECKER, Friedrich
    • ZIKELI, StefanECKER, Friedrich
    • F28D7/00F28D7/08F28F13/08F28D7/02F28D7/10
    • F16L53/002B01J2219/00074C08B1/00C08B1/003C08L1/02D01D1/09F16L53/32F28D7/00F28D7/02F28D7/08F28D7/082F28D7/085F28D7/106F28D2021/0077F28D2021/0098F28F13/08Y10T137/6579
    • Die vorliegende Erfindung betrifft ein Wärmetauscherleitungssystem für den Transport von viskosen Fluiden mit einer Vielzahl von einzelnen Wärmetauschern als Leitungselemente und mit vorbestimmter kontrollierter Temperatur-und/oder Druckverteilung entlang des Leitungssystems sowie im Querschnitt der Leitungen, dadurch gekennzeichnet, dass in regelmäßigen Abständen des Leitungssystems Wärmetauscher als Leitungselemente vorgesehen werden, wobei die regelmäßigen Abstände derart gewählt werden um einevorbestimmte Temperatur-und/oder Druckverteilung entlang des Leitungssystems einzuhalten, wobei in den Wärmetauschern Temperiermittel eines in der Wärmetauscherleitung transportierten viskosen Fluids vorgesehen sind, sowie optional Mischelemente um je nach Leitungsquerschnitt eine vorgegebene Temperatur-und/oder Druckverteilung im Querschnitt der Leitungen einzuhalten, und wobei mindestens 30% der Länge des Wärmetauscherleitungssystems mit Wärmetauschern bestückt ist, sowie Verfahren zum Transport viskoser Fluide durch Wärmetauscherleitungen.
    • 本发明涉及一种WÄ rmetauscherleitungssystem˚F导航用途ř输送的粘性流体用的多个单独的W&AUML的; rmetauschern作为线条状元件,并在沿着管道系统中的预定控制的温度和/或压力分布以及在横截面中 线,其特征在于,以有规律的BEAR ROAD强度分区:Abst管线系统W&AUML的手;沿一预定的温度和/或压力分布选择器被提供为线元件,其中,所述规则BEAR ROAD强度分区:Abst手这样GEW&AUML 遵从所述管路系统,其中,在WÄ rmetauschern在W&AUML回火一个;观察到设置rmetauscherleitung输送的粘性流体,以及取决于电缆的横截面,在预定温度和/或压力分布的线的横截面,并且其中任选的混合元件中的至少30%的 W的长度 带热交换器的热交换器系统,以及通过热交换器管道输送粘性流体的方法。

    • 7. 发明申请
    • 熱交換器
    • 热交换器
    • WO2003056265A1
    • 2003-07-10
    • PCT/JP2002/011964
    • 2002-11-15
    • 本田技研工業株式会社小松 晴彦田中 宏幸篠原 雅志齋藤 文一和泉 秀治
    • 小松 晴彦田中 宏幸篠原 雅志齋藤 文一和泉 秀治
    • F28D7/02
    • F28D7/022F01N5/02F01N2240/02F28D7/0075F28D7/024F28D7/08F28D7/082F28D7/085F28D21/0003F28D2021/0064F28F9/22F28F13/12Y02T10/16
    • An evaporator (23) disposed between an exhaust manifold (22) and an exhaust pipe (24), comprising, in order, a first exhaust gas passage (56) having a third stage heat exchanger (H3) extending from an upstream side to a downstream side, a second exhaust gas passage (55) having a second stage heat exchanger (H2), and a third exhaust gas passage (50) having a first stage heat exchanger (H1), wherein a spiral passage partitioned by spiral heat transfer plates (68) is formed in the annular second exhaust gas passage (55) for the second stage heat exchanger (H2), and a plurality of waveform heat transfer pipes (67) overlapped with each other at shifted phases are spirally disposed in the spiral passage so as to be positioned along the heat transfer plate (68), whereby a heat exchange efficiency can be increased by increasing the length of the exhaust gas passage by the heat transfer plate (68) and bringing the flow of exhaust gas into a turbulent flow by the heat transfer pipes (67) to increase the chance of contact of the exhaust gas with the heat transfer plate (68) and the heat transfer pipes (67).
    • 设置在排气歧管(22)和排气管(24)之间的蒸发器(23),依次包括具有第三级热交换器(H3)的第一排气通道(56),所述第三级热交换器(H3)从上游侧延伸到 具有第二级热交换器(H2)的第二废气通道(55)和具有第一级热交换器(H1)的第三排气通道(50),其中螺旋形通道由螺旋传热板 (68)形成在第二级热交换器(H2)的环状的第二排气通路(55)中,并且以相位相互重叠的多个波形传热管(67)螺旋地设置在螺旋形通路 以便沿着传热板(68)定位,从而通过增加传热板(68)的排气通道的长度并使废气流进入湍流,可以提高热交换效率 通过传热管(67)加热 减轻排气与传热板(68)和传热管(67)的接触的机会。
    • 10. 发明申请
    • APPARATUS FOR COOLING FLUIDS
    • 冷却流体的装置
    • WO1997010171A1
    • 1997-03-20
    • PCT/US1996014919
    • 1996-09-13
    • KYEES, Melvin, D.
    • B67D05/62
    • F28D7/0016B67D1/0862B67D1/0867F25D31/003F28D7/08F28D7/082F28F1/22F28F9/02F28F21/084Y10T29/4935Y10T29/49396
    • An apparatus (1) for cooling at least one fluid includes a coolant system (18) defining a cold plate portion (12) and a tower portion (14), a fluid system (20) in heat exchange relationship with the coolant system (18) and likewise defining a cold plate portion (36) and a tower portion (38), means for dispensing (34) at least one fluid from the tower portion, and a metallic unit comprising unitary cold plate and tower portions which respectively incorporate the cold plate and tower portions of the coolant system and the fluid system. Another embodiment includes separable cold plate and dispenser units. The cold plate unit includes a coolant system, a fluid system and a metallic unit. The coolant system defines a cold plate portion and a tower portion. The cold plate portion of the coolant system has a primary inlet manifold (24) and a primary outlet manifold (26), and the tower portion has a secondary inlet manifold and a secondary outlet manifold.
    • 用于冷却至少一种流体的装置(1)包括限定冷板部分(12)和塔架部分(14)的冷却剂系统(18),与冷却剂系统(18)热交换的流体系统(20) )并且同样限定冷板部分(36)和塔架部分(38),用于从塔架部分分配(34)至少一种流体的装置,以及包括单一冷板和塔部分的金属单元,其分别包含冷 冷却剂系统和流体系统的板和塔部分。 另一个实施例包括可分离的冷板和分配器单元。 冷板单元包括冷却剂系统,流体系统和金属单元。 冷却剂系统限定冷板部分和塔部分。 冷却剂系统的冷板部分具有主入口歧管(24)和主出口歧管(26),塔部分具有次级入口歧管和次级出口歧管。