Analysis of thermal stratified storage tank

被引:5
|
作者
Smusz R. [1 ]
Kielan P. [2 ]
Mazur D. [3 ]
机构
[1] Department of Thermodynamics and Fluid Mechanics, Rzeszow University of Technology, Rzeszów
[2] Faculty of Electrical Engineering, Mechatronic Department, Silesian University of Technology, Gliwice
[3] Faculty of Electrical and Computer Engineering, Rzeszow University of Technology, Rzeszów
来源
| 1600年 / De Gruyter Open Ltd卷 / 66期
关键词
Convection; Heat recovery; Temperature stratification; Thermal energy;
D O I
10.1515/aee-2017-0048
中图分类号
学科分类号
摘要
The basic aim of the task is to compile a temperature stratification system in an accumulation tank. The range of the thesis concerns the shape and dimensions of a stratification system for an accumulation tank. Thermal stratification is a process that comprises the maintaining of temperature stratification at different levels of an accumulation tank which reduce to a minimum the process of temperature equalization. It results from the fact that the thermal stratification in a tank significantly increases the installation efficiency and improves the process of energy storing. It is connected with a thermodynamic element quality, that is the higher the temperature, the higher the energy, and, thus, the thermosdynamic element quality. In this phenomenon, thanks to the same amount of accumulated thermal energy and average temperature, as in a fully mixed tank, the user has a higher temperature in the upper part of the tank at his disposal. It has significant importance in the case when there is a low-temperature heating medium that transfers heat to the accumulation tank. Such a situation occurs when heat is absorbed from synthetic freons used in cooling and air-conditioning systems.
引用
收藏
页码:631 / 642
页数:11
相关论文
共 50 条
  • [21] Consistent thermal analysis procedure of LNG storage tank
    Jeon, Se-Jin
    Jin, Byeong-Moo
    Kim, Young-Jin
    Chung, Chul-Hun
    STRUCTURAL ENGINEERING AND MECHANICS, 2007, 25 (04) : 445 - 466
  • [22] Sensitivity analysis for thermocline thermal storage tank design
    Bonanos, A. M.
    Votyakov, E. V.
    RENEWABLE ENERGY, 2016, 99 : 764 - 771
  • [23] Performance assessment of stratified chilled water thermal energy storage tank at district cooling plant
    Majid, M. A. A.
    Hui, P. S.
    Soomro, A. A.
    SYMPOSIUM ON ENERGY SYSTEMS 2019 (SES 2019), 2020, 863
  • [24] Predicting heating demand and sizing a stratified thermal storage tank using deep learning algorithms
    Rahman, Aowabin
    Smith, Amanda D.
    APPLIED ENERGY, 2018, 228 : 108 - 121
  • [25] Measured and modeled charging of a stratified chilled water thermal storage tank with slotted pipe diffusers
    Bahnfleth, WP
    Song, J
    Cimbala, JM
    HVAC&R RESEARCH, 2003, 9 (04): : 467 - 491
  • [26] A Standard-Based Method to Simulate the Behavior of Thermal Solar Systems with a Stratified Storage Tank
    Piana, Edoardo Alessio
    Grassi, Benedetta
    Socal, Laurent
    ENERGIES, 2020, 13 (01)
  • [27] One-dimensional model of a stratified thermal storage tank with supercritical coiled heat exchanger
    Paradis, Pierre-Luc
    Rousse, Daniel R.
    Lamarche, Louis
    Nesreddine, Hakim
    Talbot, Marie-Helene
    APPLIED THERMAL ENGINEERING, 2018, 134 : 379 - 395
  • [28] Thermal Stratification in the Storage Tank
    Wilk, Joanna
    Balon, Pawel
    Smusz, Robert
    Rejman, Edward
    Swiatoniowski, Andrzej
    Kielbasa, Bartlomiej
    Szostak, Janusz
    Cieslik, Jacek
    Kowalski, Lukasz
    23RD INTERNATIONAL CONFERENCE ON MATERIAL FORMING, 2020, 47 : 998 - 1003
  • [29] Field Synergy Analysis of Thermal Storage Effect of Solar Energy Storage Tank
    Yun, Heming
    Ma, Fangfang
    Guo, Xunhu
    Chen, Baoming
    10TH INTERNATIONAL SYMPOSIUM ON HEATING, VENTILATION AND AIR CONDITIONING, ISHVAC2017, 2017, 205 : 4001 - 4008
  • [30] Heat Transfer Analysis of Stratified Chilled Water Storage Tank for District Cooling Systems
    Bhatkar, Vijay W.
    Shastri, Dhiresh S.
    Kaithari, Dinesh K.
    Bhambare, Parimal S.
    Allampallewar, Girish L.
    Meherkar, Amar A.
    INTERNATIONAL JOURNAL OF HEAT AND TECHNOLOGY, 2025, 43 (01) : 39 - 46