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首页> 外文期刊>International Journal of Refrigeration >Evaporative condenser control in industrial refrigeration systems
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Evaporative condenser control in industrial refrigeration systems

机译:工业制冷系统中的蒸发冷凝器控制

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摘要

This paper is a result of a research project which focused on optimization of an existing industrial refrigeration system for a large two-temperature level cold storage distribution facility located near Milwaukee, Wisconsin. This system utilized a combination of single-screw and reciprocating compressors (each operating under single-stage compression), an evaporative condenser, and a combination of liquid overfeed and direct expansion evaporators. A mathematical model of the existing system was developed. The model was validated using experimental data recorded from the system. Subsequently, the model served as a tool to evaluate alternative system designs and operating strategies that lead to optimum system performance. The methods, analysis, and results presented in this paper focus on evaporative condenser sizing and head pressure control. Operating system head pressures that minimize the energy costs of the system were found to be a linear function of the outdoor wet-bulb temperature. A methodology for implementing the optimum control strategy is presented. Simulation results for the annual performance of the refrigeration system investigated in this project show a reduction in annual energy consumption by 11 % as a result of the recommended design and control changes.
机译:本文是一项研究项目的结果,该项目的重点是优化位于威斯康星州密尔沃基附近的大型两温级冷库配送设施的现有工业制冷系统。该系统利用了单螺杆压缩机和往复式压缩机的组合(每个均在单级压缩下运行),蒸发冷凝器以及液体过量供给和直接膨胀蒸发器的组合。开发了现有系统的数学模型。使用从系统记录的实验数据验证了该模型。随后,该模型用作评估可导致最佳系统性能的替代系统设计和操作策略的工具。本文介绍的方法,分析和结果集中在蒸发冷凝器的尺寸和压头压力控制上。发现使系统能源成本最小化的操作系统压头是室外湿球温度的线性函数。提出了实现最佳控制策略的方法。该项目研究的制冷系统年性能的模拟结果表明,由于建议的设计和控制更改,年能耗降低了11%。

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