首页> 外文会议>Proceedings of the Fourteenth InterSociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >Detailed and reduced order modeling of steady state counterflow mechanical draft cooling towers for analysis of Data Center energy efficiency
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Detailed and reduced order modeling of steady state counterflow mechanical draft cooling towers for analysis of Data Center energy efficiency

机译:稳态逆流机械通风冷却塔的详细和降阶建模,用于数据中心能源效率分析

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Air-cooled Data Centers absorb heat in central room air conditioners or air handlers and most commonly reject the heat through cooling towers to ambient air. The energy efficiency of the overall cooling system is determined by the energy efficiency of its components, its thermodynamic design and layout, and the protocol for its control, operation and its operational set points. The current work is part of an effort to develop a comprehensive analysis tool for thermodynamic modeling and analysis of such cooling systems. The tool, called Villanova Thermodynamic Analysis of Systems (VTAS), allows integration of sophisticated thermodynamic models of data center components into system layouts and then allows simulation of both steady state and transient system behavior from chip to cooling tower. This paper reports on the development of a steady-state model for a constant flow rate, counterflow mechanical draft cooling tower using a finite difference method and the subsequent synthesis of data from this model into a fast reduced order model developed using an Artificial Neural Network (ANN) approach. The outlet water temperature, moist air thermodynamic state, heat transfer, and exergy destruction are computed. By comparing the heat transfer and the exergy destruction from this model, an optimum range for the air flow rate was found for a set of inlet conditions based on the minimization of exergy destruction. An ANN model was developed using data generated from the detailed model. The ANN model is fast and accurate and is easily integrated into a system simulation code such as VTAS.
机译:空冷数据中心在中央房间的空调或空气处理器中吸收热量,最常见的是通过冷却塔将热量散发到周围的空气中。整个冷却系统的能效取决于其组件的能效,其热力学设计和布局以及其控制,操作和操作设定点的协议。当前的工作是开发用于这种冷却系统的热力学建模和分析的综合分析工具的一部分。该工具称为Villanova系统热力学分析(VTAS),可以将数据中心组件的复杂热力学模型集成到系统布局中,然后可以仿真从芯片到冷却塔的稳态和瞬态系统行为。本文报告了使用有限差分法开发的恒定流量稳态流模型,逆流机械通风冷却塔的模型以及随后从该模型将数据合成为使用人工神经网络开发的快速降阶模型( ANN)方法。计算出水温度,湿空气热力学状态,热传递和火用破坏。通过比较此模型的传热和火用破坏,基于火用破坏的最小化,找到了一组进气条件下空气流速的最佳范围。使用从详细模型生成的数据开发了ANN模型。 ANN模型快速准确,可以轻松地集成到系统仿真代码(例如VTAS)中。

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