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Compute and thermal performance of repurposed OCP hardware from air to liquid..pdf

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1、Compute and thermal performance of repurposed OCP hardware from air to liquid.Sustainability:Cooling EnvironmentsCompute and thermal performance of repurposed OCP hardware from air to liquid.Dr Jon Summers,Scientific Lead in Data Centers,Research Institutes of Swedenaatay Yilmaz,Project Manager,Rese

2、arch Institutes of SwedenPresentation contentIntroducing the repurposed serverConfiguration of a direct fresh air-cooled data center with the repurposed servers.Introducing the holistic cooling control approach between servers and coolers.Using the OCP fan speed control interface to fix CPU temperat

3、ures in a wind tunnel with some results of running workloads with different cooling configurations.Demonstrating a direct-to-chip configuration with some results where the CPU average temperature is targeted.Finally,demonstration of the repurposed servers in an immersed arrangement with some operati

4、onal results.Repurposed Leopard Servers https:/www.opencompute.org/documents/facebook-xeon-motherboard-v31Air cooled data center with Leopard serversThis project has received funding from the European Unions Horizon 2020 research and innovation programme under grant agreement N768875.Air cooled data

5、 center with Leopard serversCOLD AIRCOLD AIRHOT AIR360 OCP Leopard Servers2 CREC unitsThis project has received funding from the European Unions Horizon 2020 research and innovation programme under grant agreement N768875.Air cooled data center with Leopard serversHolistic cooling controlThis projec

6、t has received funding from the European Unions Horizon 2020 research and innovation programme under grant agreement N768875.Air cooled data center with Leopard serversStandard coolingSupply and return tempsRack inlet and outlet tempsHolistic coolingThis project has received funding from the Europea

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本文主要探讨了重置Open Compute Project(OCP)硬件的空气到液体冷却的计算和热性能。研究由来自瑞典研究机构的Jon Summers和Çağatay Yilmaz领导,得到了欧盟Horizon 2020研究创新计划的资助。关键点包括:1)介绍了重置服务器;2)配置了直接空气冷却的数据中心;3)提出了服务器和冷却器之间的整体冷却控制方法;4)利用OCP风扇速度控制界面修复风洞中CPU温度;5)展示了直接到芯片配置的实验结果;6)最后,展示了在沉浸式配置中重置服务器的运行结果。此外,文章还提到了社区应考虑重用和重置服务器,以减少退役服务器材料的环境影响,并提出了OCP服务器可配置和优化为液体冷却的观点。
如何优化重新利用的OCP硬件的计算和热性能? 如何实现OCP服务器的全面冷却控制方法? 重新利用的Leopard服务器在浸没式配置中的表现如何?
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