Modeling and Design a Special Type of Passive Solar Greenhouse in Cold Climate by TRNSYS

被引:6
|
作者
Mohammadi, Saleh [1 ]
Sayyah, Amir Hossein Afkari [1 ]
Nikbakht, Ali Mohammad [2 ]
Khalife, Esmail [3 ]
机构
[1] Univ Mohaghegh Ardabili, Dept Mech Biosyst Engn, Ardebil, Iran
[2] Univ Urmia, Dept Mech Biosyst Engn, Orumiyeh, Iran
[3] Int Univ Erbil, Coll Engn, Mechatron Engn Dept, Erbil, Iraq
关键词
Passive solar greenhouse; Renewable energy; TRNSYS; Solar radiation; THERMAL PERFORMANCE; ENERGY MANAGEMENT; CLOSED GREENHOUSE; SEASONAL STORAGE; HEATING-SYSTEM; SIMULATION; AIR;
D O I
10.15832/ankutbd.502073
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
To improve the thermal performance, storage and saving heat solar energy of conventional greenhouse, a passive solar greenhouse was built which its north wall was made of soil. The bottom part of the north, south, west and east walls were sloping and constructed below ground surface. The indoor air temperature was measured during January and February. To optimize the size of greenhouse in cold climate condition a TRNSYS model was created and validated using experimental data. According to the results obtained, Total Incident Solar Radiation (TISR) in the north wall was 484 MJ during January and February and there was the possibility of cultivation in it. More specifically, the variation of TISR during 60 days varied from 190 to 3811 kJ h(-1) m(-2) . The indoor air temperature of the greenhouse varied from -4.3 to 42.4 degrees C while the outdoor temperature fluctuated between -13.8 to 10.6 degrees C. In addition, the differential temperature between modeled and measured data at climate conditions of snowy, rainy, cloudy and sunny days were 2.3, 0.2, 0.2, and 2.6 degrees C during daytime and -1.8, -2, 0.3 and 1 degrees C at nighttime, respectively. The obtained coefficient of determination (R-2) was 95.95% for measured and modeled data.
引用
收藏
页码:488 / 498
页数:11
相关论文
共 50 条
  • [1] Optimal design of a forced circulation solar water heating system for a residential unit in cold climate using TRNSYS
    Hobbi, Alireza
    Siddiqui, Kamran
    SOLAR ENERGY, 2009, 83 (05) : 700 - 714
  • [2] DESIGN OF A NON-AIRCONDITIONED PASSIVE SOLAR HOUSE FOR THE COLD CLIMATE OF SRINAGAR
    TIWARI, GN
    BUILDING AND ENVIRONMENT, 1991, 26 (04) : 371 - 380
  • [3] Preliminary indicators for passive solar greenhouse design
    Brunetti, Gian Luca
    SOLAR ENERGY, 2025, 290
  • [4] The Effect of Outdoor Climate Conditions on Passive Greenhouse Design
    Vanthoor, Bram
    Stanghellini, Cecilia
    van Henten, Eldert
    de Visser, Pieter
    INTERNATIONAL SYMPOSIUM ON STRATEGIES TOWARDS SUSTAINABILITY OF PROTECTED CULTIVATION IN MILD WINTER CLIMATE, 2009, 807 : 61 - 66
  • [5] Design of Solar Heating and Cooling System in Cold Areas of China Based on TRNSYS
    Liang, Ruobing
    Zhang, Jili
    Ma, Liangdong
    Zhao, Liang
    Shen, Shengqiang
    SUSTAINABLE CITIES DEVELOPMENT AND ENVIRONMENT, PTS 1-3, 2012, 209-211 : 1778 - 1782
  • [6] Modeling the heat balance of a solar greenhouse with a passive heat accumulator
    Khalimov A.G.
    Khairiddinov B.E.
    Kim V.D.
    Khalimov G.G.
    Applied Solar Energy, 1600, Allerton Press Incorporation (49): : 211 - 214
  • [7] Climate classification and passive solar design implications in China
    Lau, Chris C. S.
    Lam, Joseph C.
    Yang, Liu
    ENERGY CONVERSION AND MANAGEMENT, 2007, 48 (07) : 2006 - 2015
  • [8] Modeling heating demands in a Chinese-style solar greenhouse using the transient building energy simulation model TRNSYS
    Ahamed, Md Shamim
    Guo, Huiqing
    Tanino, Karen
    JOURNAL OF BUILDING ENGINEERING, 2020, 29
  • [9] DESIGN AND OPTIMIZATION OF A WINTER GREENHOUSE FOR THE LEH-TYPE CLIMATE
    TIWARI, GN
    DHIMAN, NK
    ENERGY CONVERSION AND MANAGEMENT, 1986, 26 (01) : 71 - 78
  • [10] DESIGN AND OPERATION OF A LOW-ENERGY CONSUMPTION PASSIVE SOLAR AGRICULTURAL GREENHOUSE
    SANTAMOURIS, M
    ARGIRIOU, A
    VALLINDRAS, M
    SOLAR ENERGY, 1994, 52 (05) : 371 - 378