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    • 71. 发明申请
    • In-Wall Hydronic Thermal Control System and Installation Method
    • 内置水力热控制系统及安装方法
    • US20130255912A1
    • 2013-10-03
    • US13625202
    • 2012-09-24
    • Joachim Fiedrich
    • Joachim Fiedrich
    • F24D3/14E04B2/00F24F5/00
    • F24D3/145E04B2/00E04C2/525F24D3/14F24D19/1006F24F5/0089F28D2021/0035F28D2021/0078F28F2013/006
    • A system for installing tubing of hydronic thermal control systems in the walls, including ceilings, of buildings. It allows for the stable incorporation of the tubing in the walls while ensuring good thermal conductivity between the tubing and the building's room. The system features a wall including a hydronic thermal management system. The wall comprises a vertically-extending wall support structure, tubing panels secured to the wall support structure, the panels being constructed from wood material, tubing in the tubing panels for carrying a heat transfer fluid, and drywall panels secured over the tubing panels. A filling material is applied between the tubing and the drywall panels. Also a high thermally conductive layer, such as aluminum foil, is used between the filling material and the drywall panels or between the filling material and the tubing panels.
    • 一种用于在建筑物的墙壁(包括天花板)中安装液压热控制系统管道的系统。 它允许管道稳定地结合在墙壁中,同时确保管道和建筑物房间之间良好的导热性。 该系统具有墙壁,包括水疗热管理系统。 该墙壁包括垂直延伸的壁支撑结构,固定在墙壁支撑结构上的管板,该板由木材构成,管板中用于承载传热流体的管道以及固定在管板上的干墙板。 在管道和干墙板之间施加填充材料。 此外,在填充材料和干墙板之间或填充材料和管板之间还使用高导热层,例如铝箔。
    • 72. 发明申请
    • COOLING STRUCTURE, GAS TURBINE COMBUSTOR AND MANUFACTURING METHOD OF COOLING STRUCTURE
    • 冷却结构,燃气轮机和冷却结构的制造方法
    • US20120255311A1
    • 2012-10-11
    • US13241594
    • 2011-09-23
    • Yoshiaki MIYAKE
    • Yoshiaki MIYAKE
    • F02C7/12F28F7/00B23P15/26
    • F23R3/005F23R3/002F23R2900/03045F28D2021/0078F28F3/022F28F3/048F28F13/12Y02T50/675Y10T29/49359
    • A cooling structure, a gas turbine combustor, and a method of manufacturing the cooling structure attain a high cooling efficiency without increasing manufacturing cost. The cooling structure includes a first member as a cooling object having a first plane, and a second member arranged above the first plane and having an opposing second plane such that a passage is formed between the first plane and the second plane for a cooling medium to flow. The first member has a plurality of prominences each of which extends upwardly from the first plane, and extends to be inclined along a direction in which the cooling medium flows. A clearance between the second plane and a tip of each prominence is set such that a heat transfer rate between the cooling medium and the first member becomes larger than that when each prominence extends vertically upward from the first plane.
    • 冷却结构,燃气轮机燃烧器和冷却结构的制造方法在不增加制造成本的情况下实现高冷却效率。 冷却结构包括作为具有第一平面的冷却对象的第一构件和布置在第一平面上方并具有相对的第二平面的第二构件,使得在第一平面和第二平面之间形成用于冷却介质的通道 流。 第一构件具有多个突起,每个凸起从第一平面向上延伸,并且沿着冷却介质流动的方向延伸。 第二平面与每个突出部的尖端之间的间隙被设定为使得冷却介质和第一部件之间的传热速率变得大于当每个突出部从第一平面垂直向上延伸时的传热速率。
    • 75. 发明授权
    • Heat exchanger panel
    • 换热器面板
    • US06907920B2
    • 2005-06-21
    • US10058621
    • 2002-01-29
    • Robert E. WarburtonWilliam J. Cuva
    • Robert E. WarburtonWilliam J. Cuva
    • F28D1/03F23R3/00F28F3/12F28F21/04
    • F28F3/12F23R3/007F28D2021/0078F28F21/04
    • The present invention relates to a heat exchanger panel which has broad utility in high temperature environments. The heat exchanger panel has a first panel, a second panel, and at least one fluid containment device positioned intermediate the first and second panels. At least one of the first panel and the second panel have at least one feature on an interior surface to accommodate the at least one fluid containment device. In a preferred embodiment, each of the first and second panels is formed from a high conductivity, high temperature composite material. Also, in a preferred embodiment, the first and second panels are joined together by one or more composite fasteners.
    • 本发明涉及一种在高温环境中具有广泛应用的热交换器面板。 热交换器面板具有第一面板,第二面板和位于第一面板和第二面板之间的至少一个流体收容装置。 第一面板和第二面板中的至少一个具有在内表面上的至少一个特征以容纳至少一个流体容纳装置。 在优选实施例中,第一和第二面板中的每一个由高导电性高温复合材料形成。 而且,在优选实施例中,第一和第二面板通过一个或多个复合紧固件连接在一起。
    • 77. 发明申请
    • Heat exchanger panel
    • 换热器面板
    • US20030141043A1
    • 2003-07-31
    • US10058621
    • 2002-01-29
    • Robert E. WarburtonWilliam J. Cuva
    • F28F007/00
    • F28F3/12F23R3/007F28D2021/0078F28F21/04
    • The present invention relates to a heat exchanger panel which has broad utility in high temperature environments. The heat exchanger panel has a first panel, a second panel, and at least one fluid containment device positioned intermediate the first and second panels. At least one of the first panel and the second panel have at least one feature on an interior surface to accommodate the at least one fluid containment device. In a preferred embodiment, each of the first and second panels is formed from a high conductivity, high temperature composite material. Also, in a preferred embodiment, the first and second panels are joined together by one or more composite fasteners.
    • 本发明涉及一种在高温环境中具有广泛应用的热交换器面板。 热交换器面板具有第一面板,第二面板和位于第一面板和第二面板之间的至少一个流体收容装置。 第一面板和第二面板中的至少一个具有在内表面上的至少一个特征以容纳至少一个流体容纳装置。 在优选实施例中,第一和第二面板中的每一个由高导电性高温复合材料形成。 而且,在优选实施例中,第一和第二面板通过一个或多个复合紧固件连接在一起。
    • 79. 发明授权
    • Method of manufacturing a combustion enclosure with cooling by
transpiration
    • 通过蒸发冷却制造燃烧罩的方法
    • US5903976A
    • 1999-05-18
    • US995307
    • 1997-12-22
    • Andre BeaurainEtienne Tiret
    • Andre BeaurainEtienne Tiret
    • F23M5/08F02K9/64F02K9/97F28F13/00F28F13/02B23P15/00
    • F02K9/972F02K9/64F28F13/003F28F13/02F05D2260/202F05D2260/203F28D2021/0078Y10T29/49346Y10T29/49826
    • The invention relates to a method of manufacturing an enclosure containing hot gases cooled by transpiration. The enclosure comprises a porous wall and means for applying a cooling fluid to the outside face of the porous wall to cause a flow of cooling fluid to pass through the porous wall by transpiration. The cooling fluid application means is formed by disposing a plurality of cooling liquid distribution pipes regularly around the porous wall and terminating tangentially on its outside face in a plurality of superposed horizontal injection levels. Feed channels are provided crossing substantially perpendicularly through the distribution pipes, formed between each of them, and connected to cooling liquid feed means. Calibration ducts of determined section are provided, connecting, at each of the injection levels, the vertical feed channels to the horizontal distribution pipes surrounding them, to deliver predetermined headloss to the inside face of the porous wall. The headloss is adapted as a function of the zone to be cooled to optimize cooling flow rates along the porous wall.
    • 本发明涉及一种制造包含通过蒸腾冷却的热气体的外壳的方法。 外壳包括多孔壁和用于将冷却流体施加到多孔壁的外表面的装置,以使冷却流体的流动通过蒸发通过多孔壁。 冷却流体施加装置通过在多孔壁周围规则地设置多个冷却液体分配管并且以多个重叠的水平喷射水平在其外表面上切向地终止而形成。 进料通道被设置成大致垂直地穿过分配管,每个分配管之间形成并连接到冷却液体进料装置。 提供了确定部分的校准导管,在每个注射水平处将垂直进料通道连接到围绕它们的水平分配管,以将预定的损耗输送到多孔壁的内表面。 头部损失被调整为要冷却的区域的函数,以优化沿着多孔壁的冷却流速。