首页> 外文会议>Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >DIRECT LIQUID JET-IMPINGEMENT COOLING WITH MICRON-SIZED NOZZLE ARRAY AND DISTRIBUTED RETURN ARCHITECTURE
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DIRECT LIQUID JET-IMPINGEMENT COOLING WITH MICRON-SIZED NOZZLE ARRAY AND DISTRIBUTED RETURN ARCHITECTURE

机译:用微米尺寸的喷嘴阵列和分布式返回架构直接液体喷射冲洗

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We demonstrate submerged single-phase direct liquid-jet-impingement cold plates that use arrays of jets with diameters in the range of 31 to 126μm and cell pitches from 100 to 500μm for high power-density microprocessor cooling applications. Using parallel inlet and outlet manifolds, a distributed return concept for easy scaling to 40,000 cells on an area of 4 cm{sup}2 was implemented. Pressure drops < 0.1 bar at 2.5 1/min flow rate have been reached with a hierarchical tree-like double-branching manifold. Experiments were carried out with water jets having Reynolds numbers smaller than 900 at nozzle to heater gaps ranging between 3 to 300μm. We identified four flow regimes, namely, pinch-off, transition, impingement, and separation, with different influences on heat-removal and pressure-drop characteristics. Parametric analysis resulted in an optimal heat-removal rate of 420 W/cm{sup}2 using water as a coolant. For a near optimal design with a gap to inlet diameter ratio of 1.2, we measured a heat-transfer coefficient of 8.7 W/cm{sup}2K and a junction to inlet fluid unit thermal resistance of 0.17 Kcm{sup}2/W (720μm chip), which is equivalent to a 370 W/cm{sup}2 cooling performance at a junction to inlet fluid temperature rise of 63°C, a pressure drop of 0.35 bar, and a flow rate of 2.5 1/min.
机译:我们证明浸没单相直接喷液冲击冷板其直径在31至126μm和细胞间距为100〜500μm的高功率密度的微处理器冷却应用射流的使用阵列。使用并行入口和出口歧管,实现了用于容易缩放到4cm {sup} 2面积上的40,000个单元的分布式返回概念。使用等级树状双分支歧管已经达到了2.5 /最小流速下的压降<0.1巴。使用小于900的雷诺数的水射流进行实验,以在3至300μm之间的加热器间隙范围内。我们确定了四个流动制度,即挤压,过渡,冲击和分离,对除热性和压降特性的影响不同。参数分析使用水作为冷却剂的420W / cm {sup} 2的最佳除去速率。对于具有以1.2入口直径之比的间隙中的接近最优的设计中,我们测量2K的8.7瓦/平方厘米{SUP}传热系数和结到入口0.17 KCM {SUP} 2 / W(的流体单元热阻720μm芯片),其相当于370W / cm {sup} 2在接合处的冷却性能,进样口液温度升高为63°C,压降0.35巴,流速为2.5 / min。

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