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    • 2. 发明申请
    • GAS COOLER
    • 气体冷却器
    • WO2011071374A2
    • 2011-06-16
    • PCT/NL2010050819
    • 2010-12-03
    • STICHTING ENERGIEVAN DER MEIJDEN CHRISTIAAN MARTINUSBATENBURG RONALD
    • VAN DER MEIJDEN CHRISTIAAN MARTINUSBATENBURG RONALD
    • F28D7/02
    • F28D7/0016F28D7/028F28D2021/0075F28F9/22
    • Gas cooler, provided with a gas inlet, a gas outlet, an outer wall fitted between the gas inlet and the gas outlet which connects the gas inlet and gas outlet to one another in a gas-tight manner, a cooling device, which is connected to the outer wall, wherein the outer wall has a frustoconical shape, wherein the gas inlet is situated on the base side of the cone and the gas outlet is situated on the top side of the cone, and wherein an inner wall is provided at a distance from the outer wall, wherein the inner wall has a frustoconical shape, wherein the centre axis of the cone of the inner wall substantially coincides with the centre axis of the cone of the outer wall, and wherein the outer wall has a larger diameter than the inner wall.
    • 气体冷却器,设有气体入口,气体出口,安装在气体入口和气体出口之间的外壁,气体入口和气体出口以气密方式彼此连接;冷却装置,其被连接 其中所述外壁具有截头圆锥形状,其中所述气体入口位于所述锥体的基部侧上,并且所述气体出口位于所述锥体的顶侧,并且其中内壁设置在所述外壁 距离外壁的距离,其中内壁具有截头圆锥形状,其中内壁的锥体的中心轴线基本上与外壁的锥体的中心轴线重合,并且其中外壁的直径大于 内墙。
    • 3. 发明申请
    • QUICK OPERATING HEAT EXCHANGER DEVICE
    • 快速操作热交换器设备
    • WO1993012389A1
    • 1993-06-24
    • PCT/IT1992000156
    • 1992-12-04
    • CTS S.R.L.BETTELLI, Giampaolo
    • CTS S.R.L.
    • F24D03/08
    • F28D7/028F24D3/087F24H1/20F24H6/00
    • This heat exchanger comprises a pair of tubular containers (3, 7) adjacent to each other and connected by one end, suitable for containing a first fluid which is inlet at a predetermined pressure. Furthermore, each one of the containers houses a circuit (4, 5) in which a second fluid flows, in a direction which is generally in countercurrent in respect of the flowing direction of said first fluid. Both ends of the containers are tightly sealed by means of a suitable cover, of which the head cover (1) comprises the inlet and outlet connectors of both fluids, and the bottom cover (2) comprises the connectors by means of which the fluids pass from one tubular container to the other one.
    • 该热交换器包括一对彼此相邻并通过一端连接的管状容器(3,7),适于容纳以预定压力为入口的第一流体。 此外,每个容器容纳一个电路(4,5),其中第二流体沿着与所述第一流体的流动方向大致相反的方向流动。 容器的两端通过合适的盖子紧密地密封,其顶盖(1)包括两种流体的入口和出口连接器,底盖(2)包括流体通过的连接器 从一个管状容器到另一个管状容器。
    • 4. 发明申请
    • CONIC SPIRAL COILS
    • CONIC螺旋线圈
    • WO2015155611A3
    • 2015-12-03
    • PCT/IB2015001286
    • 2015-03-23
    • QUESADA SABORIO CARLOS
    • QUESADA SABORIO CARLOS
    • F28D1/047F28D7/02
    • F28D1/0473F28D7/028
    • Interlaced tubing elements form a conic spiral shaped heat exchange element/ The tubing elements are tilted while being helically wound, forming a substantially overall conic spiral structure having a central longitudinal axis. Tubing elements are tilted with respect to the central longitudinal axis, and may be continuously tilted or variably tilted. A heat exchange element is formed by a continuous tubing element that spirals around a central longitudinal axis, or by several interlaced tubing elements that are spaced adjacent to each other in a conic spiral shape. The tubing elements may have a plurality of fins on at least one of the outer surfaces or first and/or second side wall.
    • 交错管道元件形成圆锥形螺旋形热交换元件/管道元件在螺旋缠绕时倾斜,形成具有中心纵向轴线的基本上整体的圆锥螺旋结构。 管元件相对于中心纵向轴线倾斜,并且可以连续地倾斜或可变地倾斜。 热交换元件由围绕中心纵向轴线螺旋的连续管元件或通过以圆锥螺旋形状彼此相邻间隔开的多个交织管元件形成。 管件可以在外表面或第一和/或第二侧壁中的至少一个上具有多个翅片。
    • 6. 发明申请
    • CARDIOPLEGIA HEAT EXCHANGER
    • CARDIOPLEGIA热交换器
    • WO1993002722A1
    • 1993-02-18
    • PCT/US1992004138
    • 1992-05-15
    • WILES, Terry, L.
    • WILES, Terry, L.PIERSON, Jeanne, S.
    • A61M01/36
    • A61M5/44A61M1/36A61M2205/3606A61M2205/366F28D7/028
    • A heat exchanger for medical use, in particular a cardioplegia heat exchanger is disclosed. In one embodiment, this heat exchanger comprises a heat transfer element (14) having a closed first end (54) and a substantially opposing second end (56) and being provided with at least one helical corrugation (42) extending between the first and second ends; an outer member (12) surrounding the at least one corrugation and together with the heat transfer element defining a first, helical flow path, the outer member having inlet and outlet apertures (28, 30) located adjacent opposite ends of the heat transfer partially; and an inner member (74) located at least partially within the heat transfer element and together with the heat transfer element defining a second helical flow path intermeshing with the first helical flow path, the inner member having inlet and outlet apertures located adjacent opposite ends of the heat transfer element.
    • 公开了一种用于医疗用途的热交换器,特别是一种心麻痹热交换器。 在一个实施例中,该热交换器包括传热元件(14),其具有封闭的第一端(54)和基本上相对的第二端(56),并且设置有至少一个螺旋形波纹(42),其在第一和第二端 结束; 围绕所述至少一个波纹的外部构件(12),并且与所述传热元件一起限定第一螺旋形流动路径,所述外部构件具有部分地位于所述热传递的相对端附近的入口和出口孔(28,30) 以及内部构件(74),其至少部分地位于所述传热元件内并且与所述传热元件一起限定与所述第一螺旋流动路径相互啮合的第二螺旋形流动路径,所述内部构件具有邻近所述第二螺旋流动路径的相对端的入口和出口孔 传热元件。
    • 7. 发明申请
    • CONIC SPIRAL COILS
    • CONIC螺旋线圈
    • WO2015155611A2
    • 2015-10-15
    • PCT/IB2015/001286
    • 2015-03-23
    • QUESADA SABORIO, Carlos
    • QUESADA SABORIO, Carlos
    • F28D1/0473F28D7/028
    • Interlaced tubing elements form a conic spiral shaped heat exchange element/ The tubing elements are tilted while being helically wound, forming a substantially overall conic spiral structure having a central longitudinal axis. Tubing elements are tilted with respect to the central longitudinal axis, and may be continuously tilted or variably tilted. A heat exchange element is formed by a continuous tubing element that spirals around a central longitudinal axis, or by several interlaced tubing elements that are spaced adjacent to each other in a conic spiral shape. The tubing elements may have a plurality of fins on at least one of the outer surfaces or first and/or second side wall.
    • 隔行管元件形成锥形螺旋形热交换元件/管元件在被螺旋缠绕的同时倾斜,形成具有中心纵向轴线的基本上整体的锥形螺旋结构。 管道元件相对于中心纵向轴线倾斜,并且可以连续地倾斜或可变地倾斜。 热交换元件由连续的管道元件形成,该连续管道元件围绕中心纵向轴线螺旋形,或者通过以锥形螺旋形状相互间隔开的多个交错管道元件形成。 管道元件可以在至少一个外表面或第一和/或第二侧壁上具有多个翅片。
    • 8. 发明申请
    • HEAT EXCHANGER FOR COMBUSTION ENGINES
    • 用于燃烧发动机的热交换器
    • WO2014145915A1
    • 2014-09-18
    • PCT/US2014/030766
    • 2014-03-17
    • THILLEN, Thomas V.
    • THILLEN, Thomas V.
    • F03B13/00F22B1/00F28F9/02
    • F28D7/028F22B1/1807F22B15/00Y02E20/363
    • A novel heat exchange device to provide sufficient amounts of heat within a manifold including a working fluid within heating coils to generate electricity through an external combustion steam engine and electrical generator is provided. Such a novel heat exchanger includes coils that surround a central heating compartment thereby exposing such coils to gradually increasing temperatures such that the working fluid is first vaporized and then is ultimately superheated to a "dry" steam upon the point of egress of the heat exchanger leading to the engine portion. In this manner, greater efficiency in heating of the working fluid is accomplished with all of the fluid converted to a gas under pressure to effectuate the necessary engine, etc., movement for energy production.
    • 提供了一种新颖的热交换装置,其在歧管内提供足够的热量,包括加热线圈内的工作流体,以通过外部燃烧蒸汽发动机和发电机发电。 这种新颖的热交换器包括围绕中央加热室的线圈,从而将这种线圈暴露于逐渐增加的温度,使得工作流体首先蒸发,然后在热交换器出口点处最终过热到“干”蒸汽 到发动机部分。 以这种方式,通过将所有流体转化为在压力下的气体来实现工作流体的加热效率的提高,从而实现必要的发动机等用于能量产生的运动。
    • 9. 发明申请
    • 금속 열 저장장치
    • 金属储存装置
    • WO2014126342A1
    • 2014-08-21
    • PCT/KR2014/000321
    • 2014-01-10
    • 김병균
    • 김병균
    • F24J2/34F24J2/10F24J2/30
    • F28D20/02F24S20/20F24S23/12F24S23/30F24S23/70F24S60/00F28D1/0472F28D7/028F28D20/0056F28D20/021Y02E10/41Y02E60/142Y02E60/145Y02E70/30
    • 본 발명은 외부로부터 전달되는 열을 저장하는 용도로 사용하는 금속 열 저장장치에 관한 것으로서, 특히 태양열 집광장치 등을 통해서 집진된 높은 온도의 태양열 에너지는 고온으로 저장하였다가 서서히 방출할 수 있도록 함으로 해서 천연에너지인 태양열 저장을 획기적으로 개선할 수 있게 한 금속 열 저장장치를 제공코자 하는 것이다. 본 발명은 고온(100~1300도)의 태양열에너지를 저장하는 금속열저장매체를 이중으로 단열되도록 구성하여 금속열저장매체와 근접하도록 열교환기를 설치하여 장시간동안 난방수 가열이 가능하도록 구성하되, 상기 금속열저장매체를 단열하는 이중 단열수단으로, 금속열저장매체의 내측과 외측 및 바닥에 각각 단열내벽과 단열외벽 및 단열바닥을 배치하여 형성한 매체내입실과 콘크리트로 구성되며 바닥과 중앙기둥과 외벽벽체 및 상부덮개를 포함하는 외벽구조물 및 상부덮개 아래쪽에 설치한 적외선 반사용 거울과 열저장탱크를 진공처리 함으로서 공기에 의한 대류작용과 열전도를 막아서 열 허실을 최소화 할 수 있게 한 것이다.
    • 本发明涉及用于储存从外部传递的热量的金属储热装置,特别是本发明的目的在于提供一种金属储热装置,其在高温下储存通过装置收集的高温太阳能 的太阳能聚光器等,并允许其逐渐排出,从而显着改善作为自然能量的太阳能的储存。 本发明将储存太阳能的金属储热介质双重地隔离在高温(100-1300度),并且配置热交换器以接近金属储热介质,从而工作加热流体可以 长时间加热,其中为了使金属储热介质双重绝缘:介质插入室具有内侧,外侧和外侧的绝缘内壁,绝缘外壁和绝缘底板的布置 分别为金属储热介质; 由混凝土制成的外壁结构包括地板,中心柱,外壁体和上盖; 用于反射红外线的反射镜设置在上盖的下方; 并对蓄热箱进行真空处理,从而阻止空气引起的对流过程和热传导,从而使热损失最小化。
    • 10. 发明申请
    • VACUUM PUMPED LIQUID COOLING SYSTEM FOR COMPUTERS
    • 用于计算机的真空泵送液体冷却系统
    • WO2011133265A1
    • 2011-10-27
    • PCT/US2011/028360
    • 2011-03-14
    • HARRINGTON, Steve
    • HARRINGTON, Steve
    • F04F3/00
    • H05K7/20836F28D7/028F28D2021/0019F28F1/16F28F7/02F28F2215/00G06F1/20H05K7/20272H05K7/2079
    • A reliable, leak tolerant liquid cooling system with a backup air-cooling system for computers is provided. The system may use a vacuum pump and a liquid pump in combination to provide negative fluid pressure so that liquid docs not leak out of the system near electrical components. The system distributes flow and pressure with a scries of pressure regulating valves so that an array of computers can be serviced by a single cooling system. The system provides both air and liquid cooling so that if the liquid cooling system does not provide adequate cooling, the air cooling system will be automatically activated. A connector system is provided to automatically evacuate the liquid from the heat exchangers before they are disconnected.
    • 提供了一种具有电脑备用空气冷却系统的可靠的泄漏容错液体冷却系统。 该系统可以组合使用真空泵和液体泵以提供负的流体压力,使得液体文件在电气部件附近不会泄漏出系统。 该系统通过压力调节阀的分配来分配流量和压力,使得一组计算机可以由单个冷却系统来维修。 该系统提供空气和液体冷却,使得如果液体冷却系统不能提供足够的冷却,则空气冷却系统将被自动启动。 提供一种连接器系统,用于在断开连接器系统之前自动从热交换器排出液体。