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    • 1. 发明授权
    • Cooling and heating system and air circulation panel
    • 冷却和加热系统和空气循环面板
    • US06752203B2
    • 2004-06-22
    • US09894156
    • 2001-06-27
    • Yasuo Kurita
    • Yasuo Kurita
    • F28F312
    • F24D5/10
    • A thermal control system includes an air colliding chamber bounded by at least a conducting board and an insulating panel. An air jet pipe and an air jet suction pipe extend into the air colliding chamber. Thermally adjusted air is urged into each air jet pipe, and out at least one air jet hole, into the air colliding chamber. In the air colliding chamber, air vortices repeatedly contact the conducting board and thermal transfer occurs. Return air is urged into each air suction pipe through at least one jet suction hole for return and thermal adjustment.
    • 热控制系统包括由至少导电板和绝缘板界定的空气碰撞室。 空气喷射管和空气喷射吸入管延伸到空气碰撞室中。 热调节的空气被推入每个空气喷射管中,并且将至少一个空气喷射孔排出到空气冲击室中。 在空气碰撞室中,空气涡流反复接触导电板,发生热传递。 返回空气通过至少一个喷射吸入孔被推入每个吸气管,用于返回和热调节。
    • 2. 发明授权
    • Cooling elements for shaft furnaces
    • 轴炉的冷却元件
    • US06257326B1
    • 2001-07-10
    • US09189909
    • 1998-11-12
    • Peter Heinrich
    • Peter Heinrich
    • F28F312
    • C21B7/10
    • A cooling element for shaft furnaces provided with a refractory lining, particularly blast furnaces is made of copper or a low copper alloy and is provided with coolant ducts arranged in the interior of the element. The cooling element is composed of an extruded or rolled section which in the interior thereof has a plurality of cooling ducts which are round or have a shape which deviates from the circular shape. The cooling element is provided with lateral webs. The cooling element is equipped on the side facing away from the blast furnace wall in vertical direction with at least one continuous slag rib and the cooling element is equipped on the side facing the blast furnace wall with at least one fastening rib.
    • 用于具有耐火衬里的竖炉的冷却元件,特别是高炉由铜或低铜合金制成,并且设置有设置在元件内部的冷却剂管道。 冷却元件由挤压或轧制部分组成,其在其内部具有圆形的或具有偏离圆形形状的多个冷却管道。 冷却元件设有横向腹板。 冷却元件在垂直方向上设置在远离高炉壁的一侧上,并具有至少一个连续的炉渣肋,并且冷却元件装配在面向高炉壁的一侧上,并具有至少一个紧固肋。
    • 6. 发明授权
    • Flat heat exchange tubes
    • 扁平换热管
    • US06446715B2
    • 2002-09-10
    • US09748015
    • 2000-12-27
    • Hirohiko WatanabeRyouichi HoshinoHiroyasu SimanukiTakashi Tamura
    • Hirohiko WatanabeRyouichi HoshinoHiroyasu SimanukiTakashi Tamura
    • F28F312
    • F28D1/0316F28F3/04
    • A flat heat exchange tube comprises an upper wall, a lower wall, right and left side walls interconnecting right and left side edges of the upper and lower walls, and a plurality of reinforcing walls connected between the upper and lower walls, extending longitudinally of the tube and spaced apart from one another. The tube has parallel fluid passages formed inside thereof and extending forward or rearward. Each of the reinforcing walls has a plurality of communication holes arranged at a spacing longitudinally thereof for holding the parallel fluid passages in communication with one another therethrough. The upper surface of the lower wall is provided at a portion thereof forming each of the fluid passages with a plurality of turbulence producing portions extending over the entire width of the fluid passage and arranged at a spacing longitudinally of the passage.
    • 扁平的热交换管包括上壁,下壁,互连上壁和下壁的左右侧边缘的左右侧壁,以及连接在上壁和下壁之间的多个加强壁, 并彼此间隔开。 管具有在其内部形成并且向前或向后延伸的平行流体通道。 每个加强壁具有多个沿其长度方向布置的连通孔,用于保持彼此连通的平行流体通道。 下壁的上表面在其形成每个流体通道的部分处设置有多个湍流产生部分,其在流体通道的整个宽度上延伸并且沿通道的纵向布置。
    • 7. 发明授权
    • System for the thermoregulation of a room with radiant panels
    • 具有辐射面板的室内温度调节系统
    • US06276439B1
    • 2001-08-21
    • US09425063
    • 1999-10-22
    • Giuseppe BonuraMarco BonuraVanessa Bonura
    • Giuseppe BonuraMarco BonuraVanessa Bonura
    • F28F312
    • F24D19/1009F24D3/12
    • A system for the thermoregulation of a room with radiant panels, comprising a source for feeding thermovector liquid; radiant panels in which a thermovector liquid passes; the radiant panels comprising a rear wall and a front or radiant wall for thermal exchange with a room to be thermoregulated and, between the radiant wall and the rear wall, a gap space wherein channels are confined having a linear development, sweeping all the radiant wall completely covering the area thereof from behind, for a passage of the thermovector liquid so guided as to uniformly, entirely sweep the radiant wall. The radiant panels are built from aluminum box elements, and thermal exchange promoting twisted strips are arranged in the channels.
    • 一种用于辐射板的室内温度调节的系统,包括用于供给热动液体的源; 热动液体通过的辐射板; 辐射面板包括后壁和前部或辐射壁,用于与待温度调节的房间进行热交换,并且在辐射壁和后壁之间具有间隙空间,其中通道被限制为具有线性显影,扫除所有辐射壁 从后面完全覆盖其区域,以使得如此引导的热动液体通过均匀地完全扫掠辐射壁。 辐射板由铝盒元件构成,并且在通道中布置热交换促进扭曲条。
    • 8. 发明授权
    • Exhaust gas heat exchanger
    • 废气换热器
    • US06247523B1
    • 2001-06-19
    • US09626359
    • 2000-07-27
    • Kazuhiro ShibagakiTakaki OkochiKatsunori UchimuraShigeki Daidou
    • Kazuhiro ShibagakiTakaki OkochiKatsunori UchimuraShigeki Daidou
    • F28F312
    • F28D9/0043F02M26/28F02M26/32F28D21/0003F28F3/027F28F2250/104
    • An exhaust gas heat exchanger includes exhaust gas tubes through which exhaust gas generated by a combustion flows and cooling water tubes through which cooling water for cooling exhaust gas flows. Plural segments of offset fins are disposed within each exhaust gas tube to be arranged staggeringly in a tube longitudinal direction. The cooling water tubes communicate with each other through cooling water communication passages disposed on both end sides of each exhaust gas tube in the tube longitudinal direction at diagonal positions when being viewed from a minor-diameter direction of each exhaust gas tube. The segments are tilted relative to the tube longitudinal direction toward a side opposite to a diagonal line (L1) connecting the cooling water communication passages. Thus, a cross angle between the tilt direction of the segments and a main flow of the exhaust gas becomes smaller, and a pressure loss in the exhaust gas tubes is reduced.
    • 排气热交换器包括通过燃烧产生的废气流过的排气管和冷却废气的冷却水流过的冷却水管。 在每个排气管中设置有多个偏移翅片,以在管纵向方向上交错布置。 当从各排气管的小直径方向观察时,冷却水管通过设置在每个废气管的两端侧的冷却水连通通道在管纵向上对角位置相互连通。 这些段相对于管纵向朝与连接冷却水连通通道的对角线(L1)相反的一侧倾斜。 因此,分段的倾斜方向与废气的主流之间的交叉角变小,排气管的压力损失减小。