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    • 111. 发明申请
    • Heat exchanging tube and heat exchanger
    • 热交换管和热交换器
    • US20060151160A1
    • 2006-07-13
    • US10529632
    • 2003-10-01
    • Koichiro Take
    • Koichiro Take
    • F28F1/00
    • F28D1/05383F25B39/00F25B2500/01F28D2021/0029F28F1/022
    • A heat exchanging tube is provided with a flat tube main body having a predetermined length and a plurality of refrigerant passages extending in a tube longitudinal direction and arranged in a tube widthwise direction. The following relational equations (a) to (c) are satisfied: W=6 to 18 mm . . . (a); Ac/At×100=50 to 70% . . . (b) and P/L×100=350 to 450% . . . (c), where “W” is a width of the tube main body, “Ac” is a total cross-sectional area of the refrigerant passages, “At” is a total cross-sectional area of the tube main body ( including the refrigerant passages), “L” is an external perimeter of the tube main body and “P” is a total inner perimeter of the refrigerant passages. With this tube, enough pressure strength can be obtained and the passage resistance can be decreased while keeping the light weight, and further the heat exchanging performance can be improved.
    • 热交换管设置有具有预定长度的扁平管主体和沿管纵向延伸并且沿管宽度方向布置的多个制冷剂通道。 满足以下关系式(a)〜(c):W = 6〜18mm。 。 。 (一个); Ac / Atx100 = 50〜70%。 。 。 (b)和P / Lx100 = 350〜450%。 。 。 (c)中,“W”是管主体的宽度,“Ac”是制冷剂通路的总截面积,“At”是管主体的总截面积(包括 制冷剂通路),“L”是管主体的外周,“P”是制冷剂通路的总内周。 利用该管,可以获得足够的压力强度并且可以在保持轻量化的同时降低通过阻力,并且还可以提高热交换性能。
    • 112. 发明申请
    • Fin tube assembly for air-cooled condensing system and method of making same
    • 风冷冷凝系统的翅片管组件及其制造方法
    • US20060086490A1
    • 2006-04-27
    • US11255250
    • 2005-10-21
    • H. Fay
    • H. Fay
    • F28D1/02
    • F28F1/126F28B1/06F28B9/10F28D1/0316F28D1/05383F28F1/022F28F1/42Y10T29/49377
    • A fin tube assembly has a core tube of elongated transverse cross-section having rounded leading and trailing sides, opposite flat faces, and opposite open ends for flow through the tube. A plurality of fins project in opposite directions from finned areas of the opposite flat faces. The finned areas terminate short of the rounded sides of the core tube. A first internal rib extends across the interior of the core tube adjacent one rounded side and a second internal rib extends across the interior of the core tube adjacent the opposite rounded side to separate the interior of the core tube into a larger central channel between the ribs and separate side channels between each rib and the adjacent rounded side of the core tube.
    • 翅片管组件具有细长横截面的芯管,其具有圆形的前和后侧,相对的平坦表面和用于流过管的相对的开口端。 多个翅片从相对平坦面的翅片区域沿相反方向突出。 翅片区域不在芯管的圆形边缘处。 第一内部肋沿着芯管的内部延伸,邻近一个圆形侧,并且第二内部肋沿着芯管的内部延伸,邻近相对的圆形侧,以将芯管的内部分隔成肋之间的较大中心通道 并且在每个肋和芯管的相邻圆形侧之间分开的侧通道。
    • 114. 发明申请
    • Heat exchanger
    • 热交换器
    • US20050211420A1
    • 2005-09-29
    • US10516002
    • 2003-05-23
    • Akihiko Takano
    • Akihiko Takano
    • F25B39/02F28D1/053F28F1/02F28F9/02
    • F28D1/05391F25B39/02F25B2309/061F28D2021/0071F28F1/022F28F1/025F28F9/0204
    • A heat exchanger for a supercritical refrigerating cycle, comprising tubes 510 and tanks 520 which have plural hollow portions 520a and slots 521a for insertion of the ends of the tubes formed, wherein a sectional outline of the hollow portions of the tanks has an approximately semicircular shape with a side corresponding to the diameter directed to the side of the slots. And, the partition members each 523 is disposed between the plate bodies 521 and the tank member 522. The tanks are formed by assembling plate bodies 521 with slots formed and tank members 522 with plural curves formed to configure hollow portions, and the plate bodies are provided with communicating recesses 521b for communicating plural hollow portions. Besides, the partition members 523 for division of the hollow portions are disposed between the plate bodies and the tank members, holes 521c, 522a are formed in required portions of the plate bodies and the tank members, and plural projections 523a to be inserted through the individual holes are formed on the partition members and caulked after being inserted through the holes.
    • 一种用于超临界冷冻循环的热交换器,包括管510和罐520,罐510具有多个中空部分520a和槽521a,用于插入形成的管的端部,其中罐​​的中空部分的截面轮廓具有约 半圆形,其一侧对应于指向狭槽侧面的直径。 并且,分隔部件523分别设置在板体521和箱体522之间。 通过组装具有形成槽的板体521和形成有多个曲线的箱构件522构成中空部而形成罐,并且板体设置有用于连通多个中空部的连通凹部521b。 此外,用于划分中空部分的分隔构件523设置在板体和罐构件之间,孔521c,522a形成在板体和罐构件的所需部分中,并且多个突起523a 通过各个孔插入,形成在分隔构件上,并且在插入孔之后被铆接。
    • 115. 发明授权
    • Fluid conveying tube and vehicle cooler provided therewith
    • 设有流体输送管和车辆冷却器
    • US06935418B1
    • 2005-08-30
    • US09595038
    • 2000-06-15
    • Laszlo ValaszkaiEsad Celik
    • Laszlo ValaszkaiEsad Celik
    • F28F1/02F28F1/42F28D1/053F28F13/12
    • F28F1/426F28F1/022F28F1/42F28F3/044F28F13/02F28F19/00F28F2001/027
    • A fluid conveying tube included in a vehicle cooler comprises on its inside first and second opposite longitudinal primary heat exchange surfaces, and flow-directing surface structures which are arranged on the primary surfaces. Each surface structure comprises a plurality of elongate directing elements projecting from the primary surfaces. The surface structures are alternatingly arranged on the first and second primary surfaces in such manner that directing elements, succeeding in the longitudinal direction of the primary surfaces, are alternatingly arranged on the first and second primary surfaces and are mutually inclined at a given angle (γ). Each surface structure comprises a laterally extending row of mutually parallel directing elements. Thus an input fluid flow is divided into a number of parallel partial flows which follow a respective spiral-shaped flow path through the tube, whereby a high heat exchanging capacity is achieved.
    • 包括在车辆冷却器中的流体输送管在其内部包括布置在主表面上的第一和第二相对纵向主热交换表面和流动引导表面结构。 每个表面结构包括从主表面突出的多个细长导向元件。 表面结构以这样的方式交替地布置在第一和第二主表面上,使得在主表面的纵向方向上的引导元件交替地布置在第一和第二主表面上并且以给定的角度相互倾斜(γ )。 每个表面结构包括相互平行的引导元件的横向延伸的行。 因此,输入流体流被分成多个平行的部分流,其遵循通过管的相应的螺旋形流动路径,从而实现高的热交换能力。
    • 116. 发明授权
    • Heat exchanger
    • 热交换器
    • US06923019B2
    • 2005-08-02
    • US10685794
    • 2003-10-15
    • Masaaki KawakuboEtsuo HasegawaKen Muto
    • Masaaki KawakuboEtsuo HasegawaKen Muto
    • F25B1/00F25B39/04F28D1/053F28F1/02F28F9/02
    • F28F1/022F28D1/05391F28D2021/0073
    • In a high-pressure side heat exchanger for a vapor compression refrigerant cycle, a refrigerant passage is formed such that a flow area (S), a length (L), and an equivalent diameter (d) satisfy the conditional expression 0.04×e−1.8d≦S/L≦2.1×e−1.8d. The flow area (S) is obtained by dividing the product of a total cross-sectional area of the passages in one tube and the number of tubes by the path number. The length (L) is a flow distance of the refrigerant from the refrigerant inlet to the refrigerant outlet. That is, the length (L) is obtained by the product of the length of the tube and the path number. The diameter (d) is obtained by dividing the product of four and the cross-sectional area of the passage by a circumference of the passage.
    • 在蒸汽压缩制冷剂循环的高压侧热交换器中,形成制冷剂通路,使得流动面积(S),长度(L)和当量直径(d)满足条件表达式0.04xe -1.8d <= S / L <= 2.1×E -1.8d 。 流量面积(S)通过将一个管中的通道的总截面积与管数的乘积除以路径数获得。 长度(L)是制冷剂从制冷剂入口到制冷剂出口的流动距离。 也就是说,长度(L)通过管的长度和路径数的乘积获得。 直径(d)通过将通道的四倍和通道的横截面积除以通道的圆周来获得。
    • 118. 发明授权
    • High pressure heat exchanger
    • 高压热交换器
    • US06892803B2
    • 2005-05-17
    • US10299283
    • 2002-11-19
    • Stephen B. MemoryJianmin YinGregory G. Hughes
    • Stephen B. MemoryJianmin YinGregory G. Hughes
    • F28D1/00F28D1/047F28D7/00F28F1/02F28D7/08
    • F28F1/022F28D1/0478F28D7/0033F28D2021/0073
    • A heat exchanger including inlet and outlet header portions for a refrigerant (such as CO2), serpentine multiport tubes each with a plurality of aligned tube runs, and at least three plate assembly fluid paths. Each plate assembly fluid path includes a pair of spaced plates secured together at their edges to define an enclosed space with a fluid inlet and fluid outlet on opposite sides of the space. One plate of one fluid path is positioned against first aligned tube runs, one plate of a second of the fluid paths is positioned against second aligned tube runs, and a third fluid path is positioned between the first and second aligned tube runs. The plates may be substantially identical to one another.
    • 包括用于制冷剂(例如CO 2 2)的入口和出口集管部分的热交换器,每个具有多个对准的管道的蛇形多管端管和至少三个板组装流体路径。 每个板组件流体路径包括一对间隔开的板,它们在其边缘处固定在一起以限定具有在该空间的相对侧上的流体入口和流体出口的封闭空间。 一个流体路径的一个板被定位成抵抗第一对准的管道运行,第二个流体路径的一个板抵靠第二对准的管道定位,并且第三流体路径被定位在第一和第二对准的管道之间。 板可以基本上彼此相同。