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Method for Optimizing Equipment Cooling Effectiveness and HVAC Cooling Costs in Telecom and Data Centers

机译:电信和数据中心设备冷却效率和HVAC冷却成本的优化方法

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Today's critical high-density electronic equipment environments need adequate equipment (rack) cooling without excessive energy usage. This paper presents a methodology for optimizing the rack cooling effectiveness and HVAC cooling costs in telecom and data centers. Since raised-floor air distribution is the most common way of cooling data centers, this scheme is used here to demonstrate the methodology. Two key design parameters are evaluated: The supply air temperature and the supply airflow rate. These parameters not only impact the rack cooling effectiveness but also the energy costs for cooling the space. A leading Computational Fluid Dynamics (CFD) code is used to establish the temperature field and airflow pattern for various combinations of these parameters in a typical data center with hot and cold aisles. A new function was developed within the CFD code to compute the Rack Cooling Index (RCI)for evaluating the thermal equipment environment. This Index is designed to be a measure of how effectively equipment racks are cooled and maintained within industry thermal guidelines and standards. In addition, hypothetical cost functions are introduced based on chiller and fan energy costs. Based on the RCI results and the energy cost functions, recommendations are given for optimizing the supply temperature and airflow. Specifically, the overall performance is improved by modifying the temperature and airflow to values higher than traditionally thought useful. When the RCI algorithm has been incorporated into commercial CFD codes (or used manually), engineers and architects will have a new practical tool to design and evaluate telecom and data centers for optimal equipment rack cooling effectiveness and HVAC cooling costs.
机译:当今关键的高密度电子设备环境需要足够的设备(机架)冷却,而又不会消耗过多的能量。本文提出了一种用于优化电信和数据中心机架冷却效率和HVAC冷却成本的方法。由于高架地板的空气分配是冷却数据中心的最常用方法,因此在此使用此方案演示该方法。评估了两个关键设计参数:送风温度和送风量。这些参数不仅影响机架冷却效率,还影响冷却空间的能源成本。在具有热通道和冷通道的典型数据中心中,领先的计算流体动力学(CFD)代码用于为这些参数的各种组合建立温度场和气流模式。在CFD代码中开发了一个新功能,用于计算机架冷却指数(RCI)以评估热设备环境。该指数旨在衡量设备机架在行业散热指南和标准中的冷却和维护效率。此外,基于冷却器和风扇的能源成本引入了假设的成本函数。根据RCI结果和能源成本函数,给出了优化供应温度和气流的建议。具体而言,通过将温度和气流修改为高于传统上认为有用的值,可以改善整体性能。当RCI算法已被纳入商业CFD代码(或手动使用)后,工程师和建筑师将拥有一个新的实用工具,可以设计和评估电信和数据中心,以实现最佳的设备机架冷却效率和HVAC冷却成本。

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