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    • 5. 发明公开
    • Fluidic valve
    • 流体通风
    • EP1150020A2
    • 2001-10-31
    • EP01110380.1
    • 2001-04-26
    • Norwood Instruments Limited
    • Dickinson, John
    • F15C1/14
    • F15C1/14
    • There is described a valve (1) comprising a fluid inlet port (2) connected downstream of a junction (6), the junction (6) being provided with at least first (8) and second (10) fluid outlet ports, the valve (1) also being provided with means for adjusting the pressure of the fluid flowing through the inlet port, so as to divert the fluid flow at the junction (6) from the first fluid outlet port (8) to the second fluid outlet port (10).
      There is also described a method of producing a display in which a fluid can be seen to appear to jump from one position to another.
    • 描述了一种阀(1),其包括连接在接合部(6)下游的流体入口(2),所述接头(6)设置有至少第一(8)和第二(10)个流体出口,所述阀 (1)还设置有用于调节流过入口的流体的压力的装置,以便将接合处的流体流从第一流体出口(8)转移到第二流体出口( 10)。 还描述了一种制造显示器的方法,其中可以看到流体看起来从一个位置跳跃到另一个位置。
    • 7. 发明公开
    • SYNTHETIC JET ACTUATORS FOR COOLING HEATED BODIES AND ENVIRONMENTS
    • 对于一个曼·雷按钮冷却加热型机构和ENVIRONMENTS
    • EP1040736A1
    • 2000-10-04
    • EP98957870.3
    • 1998-11-12
    • GEORGIA TECH RESEARCH CORPORATION
    • GLEZER, AriALLEN, Mark, G.
    • H05K1/11H05K1/14
    • F21V29/70B64C21/08B64C2230/02B64C2230/04B64C2230/06B64C2230/14B64C2230/16B64C2230/18B64G1/26B64G1/40B64G1/401F01D5/148F02K1/28F15C1/14F15C5/00F15D1/009F15D1/08F15D1/12F16K99/0001F16K99/0007F16K99/0034F16K99/0048F16K2099/0094F16K2099/0098F21V29/677F21V29/74F21V29/83F23R3/24F28F13/02H01L23/4336H01L2924/0002H01L2924/3011H05K7/20172Y02T50/166H01L2924/00
    • Briefly described, the present invention is concerned with cooling heated bodies and/or heated fluid with synthetic jet actuators in either open or closed systems. A first preferred embodiment of a cooling system of the present invention comprises a synthetic jet actuator directed to impinge directly on a heat producing (or heated) body. The synthetic jet actuator generates a synthetic jet stream comprised of cool ambient fluid that impinges on the heated surface thereby cooling this surface. As an example, the heated surface/body could be a microchip array in a microcomputer. After coming into contact with the heated surface, the fluid moves along the surface and is finally rejected to the ambient where it mixes and cools down. The synthetic jet may be incorporated into a modular unit that may be clipped on to a circuit board or other heat producing element to provide added, 'ad hoc' cooling. In another configuration, a synthetic jet actuator may be positioned, relative to the heated surface, to create a synthetic jet stream to flow along the heated surface. In this embodiment, the flow would be approximately tangential to a surface of a heat producing body. This embodiment may further comprise a cyclical flow of the fluid jet, along the heated body and about a heat sink surface.
    • 简单地说,本发明涉及冷却加热体和/或加热的流体在开放或封闭系统中的合成射流致动器。 本发明的冷却系统的第一优选实施方案包括定向到上的产热(或加热)的身体直接撞击的合成射流致动器。 合成射流致动器基因率的合成射流流由冷的环境流体的加热表面,从而冷却该表面上没有撞击。 如在实施例中,加热的表面/体可能是在微型计算机的微型芯片阵列。 进入与加热的表面接触后,沿所述表面和所述流体移动最终拒绝到其混合并冷却周围环境。 合成射流可以被合并到一个模块单元并可以被夹到一个电路板或其它热产生元件以提供附加的,“特定”的冷却。 在另一配置中,合成射流致动器可以被定位,相对于加热表面,以创建一个合成射流流沿着加热表面流动。 在此,流动将是实施例大约相切于产热体的表面。 这可能实施例还包括将流体射流的一个周期性流,沿被加热体和有关的散热器表面。