Optimization of Air Supply Conditions for Large Space Radiant Air Conditioning Based on Response Surface Analysis

Yijiang Chen, Jun Zhang
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Abstract

In large spaces, the comfort control of radiant air conditioning systems still has deficiencies. Mainly reliant on traditional parameter control methods, the interaction effects of diverse operating conditions are not taken into account, and the control results are still in need of optimization. To improve indoor air conditioning comfort control and address gaps in existing research, the response surface analysis method combined with numerical simulation is applied to determine the optimal air supply conditions for large-space radiant air conditioning. With the real model as a reference, simulations are carried out in Airpak, selecting four factors: supply air temperature, supply air humidity, air supply volume, and air supply angle for the response surface design. Discussions on interaction effects are carried out based on the simulated results of various scheme designs, determining eight groups of air supply schemes with the highest comfort. The research concludes that the response surface analysis method, considering the interactive effects of impacting factors, can lead to the strategy of high comfort and reasonable air supply conditions. Additionally, a set of recommendations are proposed for future practical application and promotion.
基于响应面分析的大空间辐射空调送风条件优化
在大空间中,辐射空调系统的舒适性控制仍存在不足。主要依赖于传统的参数控制方法,没有考虑到不同运行条件的交互影响,控制结果仍需优化。为改善室内空调舒适性控制,弥补现有研究的不足,本文采用响应面分析方法结合数值模拟,确定了大空间辐射空调的最佳送风条件。以实际模型为参考,在 Airpak 中进行模拟,选择送风温度、送风湿度、送风量和送风角度四个因素进行响应面设计。根据各种方案设计的模拟结果,对交互效应进行了讨论,确定了八组舒适度最高的送风方案。研究得出的结论是,考虑到影响因素的交互效应,响应面分析方法可以得出高舒适度和合理送风条件的策略。此外,还为今后的实际应用和推广提出了一系列建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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