Cite this article
  •    [Click To Copy]
  •    [Click To Copy]
【Print This Page】 【Download PDF Full Text】 View/Add CommentDownload reader Close

←Previous Article|Next Article→

Back Issue    Advanced Search

This Article Has Been:Browse 2075 Times   Download 2261 Times QR code information in this article
Scan Up The Code!
带约束条件的CO2热泵热水系统高压控制方程
王磊, 梁星宇, 邵亮亮, 张春路
0
(同济大学机械与能源工程学院 制冷与低温工程研究所)
摘要:
系统高压的优化与控制在提升跨临界CO2系统效率方面至关重要。在CO2热泵热水系统中,传统的高压控制方程中仅考虑了气体冷却器侧的出口温度而忽略实际应用中对出水温度的要求和温度夹点,导致系统性能大大降低。本文针对温度夹点和进出水温等约束的影响,建立了有约束的气冷器模型,并对系统高压进行了优化。采用实验设计以及统计学方法确定影响最优高压的主要因素,通过最小二乘法回归出最优高压控制方程。使用该高压控制方程的系统平均COP损失1.8%,最大COP损失8.7%,可以更好地满足实际应用。
关键词:  CO2热泵热水  高压控制  约束模型  实验设计
DOI:
Received:March 12, 2017
基金项目:
A Constrained High-pressure Control Equation for CO2 Heat Pump Water Heating System
Wang Lei, Liang Xingyu, Shao Liangliang, Zhang Chunlu
(Institute of Refrigeration and Cryogenics, School of Mechanical Engineering, Tongji University)
Abstract:
The optimization and control of discharge pressure is important in transcritical CO2 heat pump water heating systems. The traditional high-pressure control equation simply takes the exit temperature of the gas cooler into account, neglecting the impacts of the pinch point and the outlet temperature of water, which might lead to a huge coefficient of performance (COP) loss in applications. In this paper, we report the development of a constrained gas cooler model by considering the influence of the pinch point and water inlet and outlet temperatures. The main impact factors of the optimum high pressure are determined through the design of experiments and statistical methods. Consequently, a new constrained optimal high-pressure control equation using least-squares regression is proposed. Based on the new control equation, the system COP loss is 1.8% in average (maximum 8.7%), providing better reliability for engineering practices.
Key words:  CO2 heat pump water heater  high pressure control  constrained model  design of experiment

用微信扫一扫

用微信扫一扫