通道密封布局对边缘数据中心冷却性能的单独和组合影响的数值分析

IF 7.6 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Jinwoo Choi , Juwon Hong , Taehoon Hong , Soun Jo , Jimin Kim , Hyounseung Jang
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引用次数: 0

摘要

本研究考察了部署在城市环境中的边缘数据中心的冷却性能,在城市环境中,物理约束和低延迟需求限制了大规模超大规模设施的可行性。通过对包含70个服务器机架和地板下气流分布配置的真实系统进行高保真CFD模拟,定量比较了三种类型的通道密封策略:冷通道密封、热通道密封以及它们的组合配置。结果表明,冷通道密封显著减少了旁路气流,将平均入口温度降低了5.0°C,并消除了整个服务器机房的服务器机架过热。冷热通道密封组合进一步缓解了再循环并适度提高了温度均匀性,但平均入口温度的额外降低仅为0.2°C左右。相比之下,使用热通道密封而不使用管道返回只能提高0.5°C,甚至恶化了服务器室的热不平衡,导致18.6%的服务器机架由于几何限制而超过27°C。这些研究结果强调,通道密封策略不应统一应用于各个设施,而应根据边缘数据中心的空间和结构特征进行定制。该研究强调了高保真CFD建模对精确气流诊断的必要性,并为在密集城市环境中开发可靠和热效率高的边缘数据中心提供了实用的设计指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical analysis of the individual and combined effects of the aisle containment layouts on the cooling performance of the edge data center
This study examines the cooling performance of edge data centers deployed in urban environments, where physical constraints and low-latency demands limit the feasibility of large-scale hyperscale facilities. By applying high-fidelity CFD simulations to a real-scale system comprising 70 server racks and an underfloor air distribution configuration, the study quantitatively compares three types of aisle containment strategies: cold aisle containment, hot aisle containment, and their combined configuration. The results reveal that cold aisle containment markedly reduces bypass airflow, lowering the mean inlet temperature by 5.0 °C and eliminating overheated server racks across the entire server room. The combined cold and hot aisle containment further mitigates recirculation and modestly enhances temperature uniformity, but the extra reduction in mean inlet temperature is only about 0.2 °C. By contrast, using hot aisle containment without a ducted return yields only a 0.5 °C improvement and even worsens thermal imbalances of the server room, resulting in 18.6 % of server racks exceeding 27 °C due to geometric limitations. These findings highlight that the aisle containment strategies should not be applied uniformly across facilities, but rather tailored based on spatial and structural characteristics of the edge data center. This study underscores the necessity of high-fidelity CFD modeling for accurate airflow diagnosis and offers practical design guidelines for developing reliable and thermally efficient edge data centers in dense urban contexts.
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来源期刊
Building and Environment
Building and Environment 工程技术-工程:环境
CiteScore
12.50
自引率
23.00%
发文量
1130
审稿时长
27 days
期刊介绍: Building and Environment, an international journal, is dedicated to publishing original research papers, comprehensive review articles, editorials, and short communications in the fields of building science, urban physics, and human interaction with the indoor and outdoor built environment. The journal emphasizes innovative technologies and knowledge verified through measurement and analysis. It covers environmental performance across various spatial scales, from cities and communities to buildings and systems, fostering collaborative, multi-disciplinary research with broader significance.
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