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中国西北地区农村住宅太阳能与煤互补供暖系统的能耗分析。

Energy Analysis of a Complementary Heating System Combining Solar Energy and Coal for a Rural Residential Building in Northwest China.

机构信息

Western China Energy & Environment Research Center, Lanzhou University of Technology, Lanzhou 730050, China.

Key Laboratory of Complementary Energy System of Biomass and Solar Energy, Lanzhou, Gansu Province 730050, China.

出版信息

Biomed Res Int. 2018 Feb 14;2018:2158205. doi: 10.1155/2018/2158205. eCollection 2018.

Abstract

In order to utilize solar energy to meet the heating demands of a rural residential building during the winter in the northwestern region of China, a hybrid heating system combining solar energy and coal was built. Multiple experiments to monitor its performance were conducted during the winter in 2014 and 2015. In this paper, we analyze the efficiency of the energy utilization of the system and describe a prototype model to determine the thermal efficiency of the coal stove in use. Multiple linear regression was adopted to present the dual function of multiple factors on the daily heat-collecting capacity of the solar water heater; the heat-loss coefficient of the storage tank was detected as well. The prototype model shows that the average thermal efficiency of the stove is 38%, which means that the energy input for the building is divided between the coal and solar energy, 39.5% and 60.5% energy, respectively. Additionally, the allocation of the radiation of solar energy projecting into the collecting area of the solar water heater was obtained which showed 49% loss with optics and 23% with the dissipation of heat, with only 28% being utilized effectively.

摘要

为了利用太阳能满足中国西北地区农村住宅冬季的供暖需求,建造了一种将太阳能和煤炭结合的混合供暖系统。在 2014 年和 2015 年的冬季进行了多次实验来监测其性能。在本文中,我们分析了系统的能源利用效率,并描述了一个原型模型来确定在用煤炉的热效率。采用多元线性回归来表示多个因素对太阳能热水器日集热量的双重作用;同时检测了水箱的热损失系数。原型模型表明,炉子的平均热效率为 38%,这意味着建筑物的能量输入在煤炭和太阳能之间分配,分别为 39.5%和 60.5%。此外,还获得了投射到太阳能热水器集热区域的太阳能辐射的分配情况,其中光学损失 49%,散热损失 23%,有效利用率仅为 28%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ace/5832178/32d1a0a267b2/BMRI2018-2158205.001.jpg

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