Influence of Air Vents Management on Trombe Wall Temperature Fluctuations: An Experimental Analysis under Real Climate Conditions

被引:13
作者
Briga-Sa, Ana [1 ]
Paiva, Anabela [2 ]
Lanzinha, Joao-Carlos [2 ]
Boaventura-Cunha, Jose [3 ,4 ]
Fernandes, Luis [5 ]
机构
[1] Univ Tras Os Montes & Alto Douro, Sch Sci & Technol, CQ VR & ECT, P-5000801 Vila Real, Portugal
[2] Univ Beira Interior, C MADE, Ctr Mat & Bldg Technol, P-6201001 Covilha, Portugal
[3] Univ Tras Os Montes & Alto Douro, INESC TEC, INESC Technol & Sci, P-5000801 Vila Real, Portugal
[4] Univ Tras Os Montes & Alto Douro, ECT Sch Sci & Technol, P-5000801 Vila Real, Portugal
[5] Univ Tras Os Montes & Alto Douro UTAD, ECT Sch Sci & Technol, P-5000801 Vila Real, Portugal
关键词
trombe wall; ventilation system management; thermal performance; thermal storage materials; temperature fluctuation; experimental work; PHASE-CHANGE MATERIAL; THERMAL PERFORMANCE; HEAT-TRANSFER; NUMERICAL-ANALYSIS; SOLAR-ENERGY; SYSTEM; SIMULATION; BUILDINGS; GAP;
D O I
10.3390/en14165043
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The Trombe wall is a passive solar system that can improve buildings energy efficiency. Despite the studies already developed in this field, more research is needed to assess the possibility of its integration in buildings avoiding user intervention. In this study, the influence of air vent management and materials' heat storage capacity upon its thermal performance, particularly in the temperature fluctuation and indoor conditions, was discussed. Comparing two days with similar solar radiation (SR) for non-ventilated (NVTW) and ventilated (VTW) Trombe walls, a differential of 43 degrees C between the external surface temperature and the one in the middle of the massive wall was verified for NVTW, while for VTW this value was 27 degrees C, reflecting the heat transfer by air convection, which reduced greenhouse effect, solar absorption and heat storage. A cooling capacity greater than 50% was verified for VTW compared to NVTW during night periods. An algorithm for the Trombe wall's automation and control was proposed considering SR as variable. Air vents and external shading devices should be open when SR exceeds 100 W/m(2) and closed for 50 W/m(2) to obtain at least 20 degrees C inside the room. Closing for 50 W/m(2) and opening for values lower that 20 W/m(2) is suggested for summer periods.
引用
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页数:22
相关论文
共 41 条
[1]   Performance augmentation of a PV/Trombe wall using Al2O3/Water nano-fluid: An experimental investigation [J].
Abed, Azhar Ahmed ;
Ahmed, Omer Khalil ;
Weis, Musa Mustafa ;
Hamada, Khalaf Ibrahim .
RENEWABLE ENERGY, 2020, 157 :515-529
[2]   Enhancement of the performance of Photovoltaic/Trombe wall system using the porous medium: Experimental and theoretical study [J].
Ahmed, Omer K. ;
Hamad, Khalaf I. ;
Salih, Abdulrazzaq M. .
ENERGY, 2019, 171 :14-26
[3]  
[Anonymous], 2020, 2020 CLIM EN PACK
[4]   PASLINK and dynamic outdoor testing of building components [J].
Baker, P. H. ;
van Dijk, H. A. L. .
BUILDING AND ENVIRONMENT, 2008, 43 (02) :143-151
[5]   The role of thermal mass on the cooling load of buildings. An overview of computational methods [J].
Balaras, CA .
ENERGY AND BUILDINGS, 1996, 24 (01) :1-10
[6]   An analytical approach to assess the influence of the massive wall material, thickness and ventilation system on the Trombe wall thermal performance [J].
Briga Sa, Ana Cristina ;
Martins, Analisa ;
Boaventura-Cunha, Jose ;
Lanzinha, Joao Carlos ;
Paiva, Anabela .
JOURNAL OF BUILDING PHYSICS, 2018, 41 (05) :445-468
[7]   Experimental and analytical approach on the Trombe wall thermal performance parameters characterization [J].
Briga-Sa, Ana ;
Boaventura-Cunha, Jose ;
Lanzinha, Joao-Carlos ;
Paiva, Anabela .
ENERGY AND BUILDINGS, 2017, 150 :262-280
[8]   Air flow and thermal efficiency characteristics in solar chimneys and Trombe Walls [J].
Burek, S. A. M. ;
Habeb, A. .
ENERGY AND BUILDINGS, 2007, 39 (02) :128-135
[9]   Review of passive solar heating and cooling technologies [J].
Chan, Hoy-Yen ;
Riffat, Saffa B. ;
Zhu, Jie .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2010, 14 (02) :781-789
[10]   Shading effects on the winter thermal performance of the Trombe wall air gap: An experimental study in Dalian [J].
Chen, B. ;
Chen, X. ;
Ding, Y. H. ;
Jia, X. .
RENEWABLE ENERGY, 2006, 31 (12) :1961-1971