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    • 51. 发明公开
    • Cold corner flow baffle
    • 冷流角挡板
    • EP2835312A1
    • 2015-02-11
    • EP14171605.0
    • 2014-06-06
    • Hamilton Sundstrand Corporation
    • DeLugan, Anthony
    • B64D13/06F28D7/00
    • F28D1/06B64D13/06F28D9/0068F28F9/0214F28F2265/00
    • A heat exchange system (10) includes a cold fluid circuit and a hot fluid circuit. The cold fluid circuit routes a cold fluid to a ram air inlet. From the ram air inlet, the cold fluid is routed to a cold fluid inlet (40) of a heat exchanger (12). The cold fluid is then routed to a cold fluid outlet (44) of the heat exchanger (12). The hot fluid circuit is configured to route a hot fluid. The hot fluid is routed through a bleed air valve. From the bleed air valve, the hot fluid is routed to a hot fluid inlet (46) of the heat exchanger (12). The hot fluid is then routed to a hot fluid outlet (48) of the heat exchanger. The hot fluid is then routed to a header (54) having a first cavity (74) and a second cavity (76) defined within a housing and separated by a baffle (50).
    • 热交换系统(10)包括冷流体回路和热流体回路。 冷流体回路将冷流体引导至冲压空气入口。 来自冲压空气入口的冷流体被引导至热交换器(12)的冷流体入口(40)。 然后冷流体被送到热交换器(12)的冷流体出口(44)。 热流体回路构造成引导热流体。 热流体通过排气阀排出。 来自放气阀的热流体被引导至热交换器(12)的热流体入口(46)。 热流体然后被引导至热交换器的热流体出口(48)。 热流体然后被引导到具有限定在壳体内的第一空腔(74)和第二空腔(76)并由挡板(50)隔开的集管(54)。
    • 53. 发明公开
    • Plattenwärmeübertrager und eine Anordnung aus einem solchen und einer Fluidheizung
    • 板式换热器和这种流体和加热器的组件
    • EP2175220A3
    • 2012-05-23
    • EP09012052.8
    • 2009-09-22
    • Bleckmann GmbH & Co. KG
    • Pleschinger, AndreasTeufl, Gernot
    • F28D9/00F28F3/10
    • F28D9/0068A47J31/44A47J31/46F28D9/0075F28F3/10F28F2275/085
    • Plattenwärmetauscher (10) zum Austausch von Wärme zwischen zwei strömungsfähigen Medien mit mindestens einem Flachmaterial (30) sowie einer oberen und einer unteren Abdeckung (20, 50, 60) für das Flachmaterial (30) zur Bildung von Strömungskanälen (K) zwischen dem Flachmaterial (30) und der oberen Abdeckung (20, 50) sowie dem Flachmaterial (30) und der unteren Abdeckung (20, 60) und zwischengelegte Dichtelemente (40) für eine mediumsdichte Abdichtung der Strömungskanäle (K). Mittels Schnappelementen (26) an der oberen Abdeckung und korrespondierender Schnappelemente (56, 66) an der unteren Abdeckung, die durch Durchbrechungen (36) in dem Flachmaterial (30) an vorbestimmten Stellen durchgreifen wird mittels einer vorbestimmten Komprimierung des jeweils zwischengelegten Dichtelements (40) zwischen der jeweiligen Abdeckung (20, 50, 60) und dem Flachmaterial (30) die obere und untere Abdeckung (20, 50, 60) gegeneinander verspannt und gleichzeitig eine Abdichtung der Strömungskanäle (K) des Plattenwärmetauscher (10) erreicht. Eine besondere Anwendung des Plattenwärmetauschers (10) besteht aus einer Kombination mit einer Fluidheizung (110), wobei mittels der Kombination ein weiter vorgeschlagenes Verfahren zum besonders energieeffizienten Herstellen eines heiß zuzubereitenden Kaltgetränks, insbesondere in Haushaltsgeräten zur Nahrungszubereitung, umgesetzt werden kann.
    • 57. 发明公开
    • HEAT EXCHANGE ELEMENT
    • WÄRMEAUSTAUSCHELEMENT
    • EP2131133A1
    • 2009-12-09
    • EP08720651.2
    • 2008-03-28
    • Panasonic Corporation
    • HASHIMOTO ToshihikoORITO Shinobu
    • F28F3/08F28D9/00
    • F28D9/0068F28D21/0015F28F3/02F28F21/00F28F2240/00F28F2250/102F28F2255/14F28F2255/146F28F2275/14
    • A supply air passage and an exhaust air passage alternately formed between heat transfer sheets laminated on each other with a predetermined interval; an opposed part formed in a center of the heat transfer sheet in each air passage, in which supply air and exhaust air flow opposite to each other with the heat transfer sheet therebetween; an orthogonal part formed in each end portion of the heat transfer sheet in each air passage, in which supply air and exhaust air flow orthogonal to each other with the heat transfer sheet therebetween; and a shielding rib preventing airflow leakage from regions other than inlet and outlet ports of supply and exhaust air are included. The heat transfer sheet is disposed so that a direction in which the heat transfer sheet is wound up is perpendicular to the direction in which supply air and exhaust air are allowed to pass through in the opposed part. Even when the heat transfer sheet is deformed by humidity, structural problem, and the like, high heat exchange efficiency performance can be obtained stably.
    • 供给空气通道和排气通道交替地形成在彼此层叠的预定间隔的传热片之间; 在每个空气通道中形成在传热片的中心的相对部分,其中供应空气和排气气流彼此相对并具有传热片; 每个空气通道中的传热片的每个端部中形成有正交部分,其中供应空气和排气流与其之间的传热片彼此正交; 并且包括防止供应和排出空气的入口和出口之外的区域的气流泄漏的屏蔽肋。 传热片被布置成使得传热片被卷绕的方向垂直于供给空气和排出空气在相对部分中通过的方向。 即使当传热片由于湿度,结构问题等而变形时,也能够稳定地获得高的热交换效率。
    • 58. 发明公开
    • Heat exchanger
    • Wärmeaustauschvorrichtung
    • EP2051021A2
    • 2009-04-22
    • EP08018177.9
    • 2001-03-14
    • Air-Change Pty Limited
    • Urch, John Francis
    • F24F12/00F28D9/00
    • F24F5/0042F24F3/147F24F12/006F24F2003/1435F28D9/0025F28D9/0068F28F9/0075F28F2250/108Y02B30/563
    • A gas-flow heat exchanger comprising a set parallel, spaced, heat-conductive areas providing between them a stack of pockets each containing parallel baffles (24) which define a platen of passageways (26) guiding the gas-flow path through the pocket between the inlet and outlet openings (22, 23). The openings being arranged in four parallel lines at the sides of the stack, two of the lines respectively containing the inlet and outlet openings (22, 23) associated with the gas flow paths of alternative pockets. The remaining two lines respectively containing the inlet and outlet openings associated with the remaining pockets. Each pocket containing a removable frame (21) formed with the openings provided at the ends of the gas flow path through it and supporting within the frame the parallel baffles (24) which divide the gas-flow path into the platen of passageways (26). All of the passageways (26) provide a substantially equal dwell time to gas passing therethrough.
    • 一种气流式热交换器,其包括设置的并联的间隔开的导热区域,在它们之间设置有一堆口袋,每个口袋均包含平行的挡板(24),所述平行挡板限定通道(26)的压板, 入口和出口开口(22,23)。 开口在堆叠的侧面以四条平行的线排列,其中两条线分别包含与替代袋的气体流动路径相关联的入口和出口开口(22,23)。 剩余的两条线分别包含与其余口袋相关的入口和出口。 每个口袋包含可拆卸的框架(21),所述可移除框架(21)形成有设置在通过其的气体流动路径的端部处的开口,并且在框架内支撑将气体流动路径分隔成通道(26)的压板的平行挡板(24) 。 所有通道(26)为通过其中的气体提供了基本相同的驻留时间。