首页> 外文会议>ASME International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic Microsystems >MEASUREMENT OF THE THERMAL PERFORMANCE OF A SINGLE-PHASE IMMERSION COOLED SERVER AT ELEVATED TEMPERATURES FOR PROLONGED TIME
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MEASUREMENT OF THE THERMAL PERFORMANCE OF A SINGLE-PHASE IMMERSION COOLED SERVER AT ELEVATED TEMPERATURES FOR PROLONGED TIME

机译:测量单相浸没式冷却服务器在升高的温度下延长时间的热性能

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Fully immersion of servers in electrically nonconductive (dielectric) fluid has recently become a promising technique for minimizing cooling energy consumption in data centers. The improved thermal properties of these dielectric fluids facilitate considerable savings in both upfront and operating cost over traditional air-cooling. This technology provides an opportunity for accommodating increased power densities. It also minimizes the common operational issues of air cooling technique like overheating and temperature swing in the system, fan failures, dust, air quality, and corrosion. This paper presents various data about the thermal performance of a fully single-phase dielectric fluid immersed server over wide temperature ranges (environment temperatures) from 25°C to 55°C for prolonged periods in an environmental chamber. This work explores the effects of high temperatures on the performance of a server and other components like pump, along with potential issues associated with extreme climatic conditions. The experimental data serves as a means to determine failure criteria for the server and pump by subjecting the system to accelerated thermal aging conditions i.e. around 55°C, consequently simulating the most extreme environmental condition that the server may encounter. Connector seals are inspected for expected degradation upon temperature cycling typically at such extreme conditions. Throttling limit for the server and pump power draw for different temperatures was determined to assess pump performance. Determining the relations between component behavior and operating temperature provides an accurate measure of lifetime of a server. The scope of this paper can be expanded by reviewing the effects of low temperatures on server and component performance. Changes to various performance parameters like power draw of pump and server at the higher and the lower operating temperatures and an understanding of issues like condensation can be used to quantify upper and lower limits for pump and server performance.
机译:在电不导通(电介质)流体中的服务器完全浸没最近成为最小化数据中心的冷却能耗的有希望的技术。这些介电流液的改善的热性质在传统的空冷中促进了前期和运营成本的相当大的节省。该技术提供了适应增加的电力密度的机会。它还最大限度地减少了系统,风扇故障,灰尘,空气质量和腐蚀等过热和温度摆动的空气冷却技术的共同操作问题。本文介绍了各种关于在环境室中的宽温度范围(环境温度)在宽温度范围内(环境温度)的完全单相电介质流体浸没服务器的热性能。这项工作探讨了高温对服务器和其他组件的性能的影响,以及与极端气候条件相关的潜在问题。实验数据用作确定服务器和泵的故障标准通过使系统进行加速的热老化条件,即大约55°C,因此模拟服务器可能遇到的最极端的环境条件。在通常在这种极端条件下,在温度循环时检查连接器密封件的预期降解。确定用于不同温度的服务器和泵功率汲取的限制,以评估泵性能。确定组件行为和操作温度之间的关系提供了服务器的寿命的准确度。通过审查低温对服务器和组件性能的影响,可以扩展本文的范围。对泵和服务器的功率绘制等各种性能参数的变化,以及较低的操作温度以及对凝结等问题的理解可用于量化泵和服务器性能的上限和下限。

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