在考虑二氧化碳水平和能耗的情况下,开发变风量系统中最小风量设置的控制策略

IF 2.5 4区 工程技术 Q3 CHEMISTRY, PHYSICAL
Jong Man Lee, Kwang Ho Lee, Jin Woo Moon, Sang Hoon Lee, Tianzhen Hong
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引用次数: 0

摘要

在装有变风量(VAV)系统的办公楼中,本文介绍了一种控制各区 VAV 箱最小送风量分数的新方法,该方法能够考虑室内二氧化碳水平和能耗。本文采用中型办公室原型模型进行了 EnergyPlus 仿真,评估了五种 VAV 箱气流控制策略在能耗和二氧化碳浓度方面的性能。本文重点讨论了基于二氧化碳浓度的气流控制方法,并根据指南和常见做法,将其与其他四种方法进行了比较,包括传统的单最大气流控制方法、最小单最大气流控制方法、需求控制通风(DCV)控制方法和双最大气流控制方法。新提出的控制策略直接将最小气流分数与二氧化碳浓度相关联。在比较二氧化碳浓度时发现了一个普遍趋势--较低的最小气流分数与较高的浓度相关。所提出的控制方法有效地保持了较低的二氧化碳浓度,并使较低的气流分数有助于降低能耗。研究证实,与传统的单最大和双最大控制策略相比,4A、5B 和 6A 气候区的供热能耗最高可节省约 30%。研究发现,与传统控制策略相比,气候区 4A 和 6A 的制冷能耗最多可节省约 10%。所提出的基于二氧化碳浓度的控制逻辑很有前景,因为它不仅能改善室内空气质量,降低占用空间的二氧化碳浓度,还有助于节省暖通空调能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Developing a Control Strategy for Minimum Airflow Setting Considering CO2 Level and Energy Consumption in a Variable Air Volume System

Developing a Control Strategy for Minimum Airflow Setting Considering CO2 Level and Energy Consumption in a Variable Air Volume System

In an office building equipped with a Variable Air Volume (VAV) system, this paper introduces a novel method for controlling the minimum supply airflow fraction in each zone’s VAV box, having a capability to consider indoor CO2 level and energy consumption. The EnergyPlus simulation using the medium office prototype model was employed, which evaluated the performance of the energy and CO2 concentration for five VAV box airflow control strategies. The paper focuses on CO2 concentration-based airflow control method and compares it with other four methods including conventional single-max, reduced minimum single-max, demand-controlled ventilation(DCV), and dualmax control methods according to guidelines and common practices. The newly proposed control strategy directly correlates the minimum airflow fraction to CO2 concentration. A general trend emerged when comparing CO2 concentrations—lower minimum airflow fractions were associated with higher concentrations. The proposed control method effectively maintained low CO2 concentrations and enabled a lower airflow fraction contributing to energy consumption reduction. It was confirmed that heating energy consumption in climate zone 4A, 5B, and 6A showed a maximum saving of approximately 30% compared to the conventional single-max and dual max control strategies. It was found that cooling energy consumption in climate zone 4A and 6A can achieve a maximum saving of approximately 10% compared to the conventional control strategies. The proposed CO2 concentration-based control logic is promising as it not only improves the indoor air quality lowering the CO2 concentration in the occupied spaces, but also contributes to HVAC energy savings.

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来源期刊
CiteScore
4.10
自引率
9.10%
发文量
179
审稿时长
5 months
期刊介绍: International Journal of Thermophysics serves as an international medium for the publication of papers in thermophysics, assisting both generators and users of thermophysical properties data. This distinguished journal publishes both experimental and theoretical papers on thermophysical properties of matter in the liquid, gaseous, and solid states (including soft matter, biofluids, and nano- and bio-materials), on instrumentation and techniques leading to their measurement, and on computer studies of model and related systems. Studies in all ranges of temperature, pressure, wavelength, and other relevant variables are included.
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