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Characterization and mitigation of cooling fan installation penalties in 1U enterprise class servers

机译:1U企业级服务器中冷却风扇安装处罚的特点及减轻

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Almost all enterprise class 1U servers utilize active air cooling to maintain component temperatures. Despite a trend toward more efficient server components, the use of active cooling is still prevalent. Since the fans are a significant contributor to the power draw as well as the heat load, it is important to be able to optimize in situ fan performance. Typically, an enterprise class 1U enclosure will be cooled by a number of fans arranged in parallel. In such installations, the use of fan curves from flow bench tests and 1-D flow impedance models are typically not sufficient to accurately predict the fan power draw, local flow distribution or even the net air flow through the enclosure. This is primarily due to installation-driven fan performance degradation. In this paper, installation effects in a typical 1U enclosure are experimentally investigated and quantified. In addition, mitigation strategies for reducing the impact of installation effects within the original fan tray space claim are presented. Employing these strategies, an optimized fan installation that measurably reduces server power requirements is demonstrated.
机译:几乎所有企业类1U服务器都使用有效的空气冷却来维持元件温度。尽管具有更高效的服务器组件的趋势,但使用主动冷却仍然是普遍存在的。由于粉丝是电力拉伸以及热负荷的重要贡献者,因此能够以原位风扇性能优化。通常,将通过并行排列的许多风扇冷却企业类1U机箱。在这种装置中,来自流量台式测试和1-D流量阻抗模型的风扇曲线通常不足以精确地预测风扇功率拉伸,局部流量分布或甚至净空气流过外壳。这主要是由于安装驱动的风扇性能下降。本文在实验研究和量化了典型的1U外壳中的安装效果。此外,还提出了减少用于降低原始风扇托盘空间索赔内的安装效应的影响的缓解策略。采用这些策略,可以说明可测量的风扇安装,可测量地降低服务器电源要求。

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