Numerical analysis of heat gain to geothermal heat exchangers with moisture evaporation in the structure

被引:0
|
作者
Polovnikov, V. Yu. [1 ]
Shelemekhova, S. D. [1 ]
Lyubivy, E. V. [1 ]
机构
[1] Natl Res Tomsk Polytech Univ, Tomsk, Russia
来源
BULLETIN OF THE TOMSK POLYTECHNIC UNIVERSITY-GEO ASSETS ENGINEERING | 2024年 / 335卷 / 06期
基金
俄罗斯科学基金会;
关键词
geothermal energy; geothermal heat exchanger; mathematical modeling; heat gain; evaporation; BOREHOLE; STORAGE;
D O I
10.18799/24131830/2024/6/4579
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Relevance.Provisions on the need to transition to alternative energy sources and energy security, reduc-tion ofenvironmental emissions and energy conservation in various industries can largely rely on the use of geo-thermal energy. A separate area in the field of modeling geothermal technologies is the study of thermal regimes of geothermal heat exchangers. The need to ensure reliable thermal contact between the geothermal heat ex-changer and its environment leads to the use of a variety of backfills, including pre-moistened ones.Aim. Study of the intensification of heat supply to geothermal heat exchangers, taking into account the effectof moisture evap-oration in its backfill, its characteristics and operating conditions of the systems under consideration.Methods.The solution to the problem was obtained by the finite difference method. An implicit difference scheme and sweep algorithm were used. The coordinate step ranged from 1 to 10 mm. Results and conclusions. Study was carried out for six months of continuous operation of a geothermal heat exchanger. When analyzing the thermal conditions of the system under consideration, the main attention was paid to the study of the intensification of heat supply to the geothermal heat exchanger, taking into account the effect of moisture evaporation in its back-fill, its characteristics and operating conditions of the systems under consideration. It was established that an increase in the sand backfill humidity of a geothermal heat exchanger leads to a growth in heat inflows by 3.2-7.8%. A significant effect of the unsteadiness of transfer processes on heat transfer intensification in the system under consideration was revealed. It was shown that the increase in heat flow to the geothermal heat ex-changer due to the presence of evaporation is about 22%. The conclusion is substantiated that when choosing an option for regulating the thermal conditions of geothermal heat exchangers, the volumetric humidity of the sand backfill should be primarily changed.
引用
收藏
页码:89 / 97
页数:9
相关论文
共 50 条
  • [1] A spectral model for heat transfer with friction heat gain in geothermal borehole heat exchangers
    BniLam, Noori
    Al-Khoury, Rafid
    APPLIED MATHEMATICAL MODELLING, 2016, 40 (15-16) : 7410 - 7421
  • [2] HEAT AND MOISTURE EXCHANGERS
    REPLYUK, J
    ANAESTHESIA, 1987, 42 (10) : 1120 - 1120
  • [3] HEAT AND MOISTURE EXCHANGERS
    BETHUNE, DW
    LATIMER, RD
    BRITISH JOURNAL OF ANAESTHESIA, 1988, 61 (03) : 367 - 368
  • [4] Heat transfer analysis of pile geothermal heat exchangers with spiral coils
    Cui, Ping
    Li, Xin
    Man, Yi
    Fang, Zhaohong
    APPLIED ENERGY, 2011, 88 (11) : 4113 - 4119
  • [5] GEOTHERMAL HEAT EXCHANGERS.
    Balzhiser, James K.
    Geothermal Resources Council, Special Report, 1980, (09): : 5 - 9
  • [6] Evaporation in micro heat exchangers
    Hapke, Ingo
    Doye, Hartwig
    Schmidt, Jürgen
    Staate, Yvonne
    Chemical Engineering and Technology, 2000, 23 (06): : 496 - 500
  • [7] Evaporation in micro heat exchangers
    Hapke, I
    Boye, H
    Schmidt, J
    Staate, Y
    CHEMICAL ENGINEERING & TECHNOLOGY, 2000, 23 (06) : 496 - 500
  • [8] Ground Heat Exchangers of Geothermal Heat Pumps and Analysis of their Constructive Features and Types
    Shtym, A.
    Zhurmilova, I.
    2017 INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING, APPLICATIONS AND MANUFACTURING (ICIEAM), 2017,
  • [9] Numerical simulation of heat and moisture transfer in co-current membrane heat exchangers
    Naumkin, V. S.
    Nizovtsev, M. I.
    4TH ALL-RUSSIAN SCIENTIFIC CONFERENCE THERMOPHYSICS AND PHYSICAL HYDRODYNAMICS WITH THE SCHOOL FOR YOUNG SCIENTISTS, 2019, 1359
  • [10] NUMERICAL MODELING OF FLUID FLOW AND THERMAL BEHAVIOR IN GEOTHERMAL HEAT EXCHANGERS
    Thompson, Willis H., III
    Ekkad, Srinath V.
    Olgun, C. Guney
    Wheeler, Joseph
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2013, VOL 6B, 2014,