Experimental investigation on dynamic performance of air-source heat pump water heater using R134a

被引:2
|
作者
Wang, Zhihua [1 ]
Wang, Fenghao [1 ]
Wu, Xiaozhou [1 ]
Tian, Chun [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Human Settlements & Civil Engn, Xian 710049, Shannxi, Peoples R China
关键词
heat pump water heater; refrigerant charge; TXV opening; thermal expansion valve; dynamic performance; exergetic efficiency; COMPRESSION REFRIGERATION SYSTEM; EXERGY ANALYSIS; EXCHANGER; DRIVEN; ENERGY; R22;
D O I
10.1504/IJEX.2016.075624
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper describes the experiment carried out to analyse the effects of improper refrigerant charge and incorrect thermal expansion valve (TXV) opening on the ASHPWH using R134a. The performance of the system were measured in combinations of four refrigerant charges of 70%, 85%, 100% and 115% of the optimal value and three TXV opening of 30%, 45% and 60% of full opening at ambient temperature of 20 degrees C D/15 degrees C W (dry-bulb temperature/wet-bulb temperature). The results showed that the maximum coefficient of performances (COPs) were nearly 33%, 31.9% and 4.4% higher than that of 70%, 85% and 115% of the optimal refrigerant charge at 60% TXV opening, respectively. And it was found that the increase in TXV opening can enhance the COP when water temperature exceeded 30 degrees C. Besides, an exergy analysis was conducted to evaluate the thermodynamic performance of the system and components in this study.
引用
收藏
页码:276 / 294
页数:19
相关论文
共 50 条
  • [1] The Performance Analysis on the 75°C Hot Water of the Air Source Heat Pump Using R134A
    Zhu, Xingwang
    Hu, Chunxia
    Lv, Yanli
    Wang, Chaoxin
    Su, Yugui
    ADVANCED COMPOSITE MATERIALS, PTS 1-3, 2012, 482-484 : 758 - +
  • [2] Experimental research and operation optimization of an air-source heat pump water heater
    Guo, J. J.
    Wu, J. Y.
    Wang, R. Z.
    Li, S.
    APPLIED ENERGY, 2011, 88 (11) : 4128 - 4138
  • [3] Experimental research of an air-source heat pump water heater using water-PCM for heat storage
    Zou, Deqiu
    Ma, Xianfeng
    Liu, Xiaoshi
    Zheng, Pengjun
    Cai, Baiming
    Huang, Jianfeng
    Guo, Jiangrong
    Liu, Mo
    APPLIED ENERGY, 2017, 206 : 784 - 792
  • [4] EXPERIMENTAL RESEARCH ON DYNAMIC PERFORMANCE OF AN AIR/WATER SOURCE HEAT PUMP WATER HEATER
    Qiu, Fuqiang
    Du, Juanli
    Wang, Yu
    Zhang, Xingwei
    Yu, Changsuo
    Nan, Yun
    THERMAL SCIENCE, 2024, 28 (3A): : 2067 - 2074
  • [5] Exergy Analysis of Air-source Heat Pump Water Heater
    Mi Bingjie
    Luo Qinghai
    Chen Guojie
    PROCEEDINGS OF THE 2015 4TH INTERNATIONAL CONFERENCE ON SENSORS, MEASUREMENT AND INTELLIGENT MATERIALS, 2016, 43 : 197 - 202
  • [6] Annual performance analysis of an air source heat pump water heater using a new eco-friendly refrigerant mixture as an alternative to R134a
    Xiao, Biao
    Chang, Huawei
    He, Lin
    Zhao, Shunan
    Shu, Shuiming
    RENEWABLE ENERGY, 2020, 147 (147) : 2013 - 2023
  • [7] Dynamic simulation of an air-source heat pump water heater using novel modified evaporator model
    Chen, Jiaheng
    Yu, Jianlin
    APPLIED THERMAL ENGINEERING, 2018, 144 : 469 - 478
  • [8] Performance analysis on parallel condensing air-source heat pump water heater system
    Wang, Shouchuan
    Wang, Qianxu
    Zhang, Huan
    Wang, Yuxuan
    Zhou, Junhai
    Zhao, Panpan
    Liu, Jiabao
    ENERGY REPORTS, 2022, 8 : 398 - 414
  • [9] Performance comparison of air-source heat pump water heater with different expansion devices
    Peng, Jing-Wei
    Li, Hui
    Zhang, Chun-Lu
    APPLIED THERMAL ENGINEERING, 2016, 99 : 1190 - 1200
  • [10] Experimental investigation of L41b as replacement for R410A in a residential air-source heat pump water heater
    Qiu, Jinyou
    Zhang, Hua
    Sheng, Jian
    Wu, Zhihong
    ENERGY AND BUILDINGS, 2019, 199 : 190 - 196