4.6 Article

Evaluating potentials of passive solar heating renovation for the energy poverty alleviation of plateau areas in developing countries: A case study in rural Qinghai-Tibet Plateau, China

Journal

SOLAR ENERGY
Volume 187, Issue -, Pages 95-107

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.solener.2019.05.049

Keywords

Energy poverty; Severe cold climate; Passive solar heating renovation; Coal consumption; Indoor thermal comfort; Thermal defect

Categories

Funding

  1. Australian Government Research Training Program of University of New South Wales, Australia
  2. National Key R&D Program of China-Technical System and Key Technology Development of Nearly Zero Energy Building [2017YFC0702600]
  3. Major Basic Research Development and Transformation Program of Qinghai province [2016-NN-141]
  4. Fundamental Research Funds for the Central Universities, China [2018MS103, 2018MS108, 2017MS119]

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Energy poverty refers to a situation that people cannot access and use energy safely. It is a major challenge for the global energy system because of its negative impacts on household income, health, education, gender equality and environmental conditions. To solve this problem, many countries advocate the development and promotion of passive solar technology, but the effectiveness of them for energy poverty mitigation has not been evidenced. Therefore, based on empirical studies in the rural areas of Qinghai-Tibet Plateau, this paper aims at investigating the effectiveness of passive solar heating renovation to alleviate energy poverty in rural plateau areas. Specifically, this paper compared and analyzed the coal consumption and indoor air quality during the heating period before and after the renovation of a single-storey building. Further, based on the IES-VE numerical simulation, this paper analyzed the impact of building envelope structure performance on indoor air temperature. The results show that after building renovation, the coal consumption during the heating period could be reduced by 97 kg/week, while the indoor average temperature of two bedrooms were increased by 4.8 degrees C and 1.7 degrees C respectively. Setting up the coal stove as an auxiliary heating device, can alleviate the defects of insufficient heating of passive solar energy technology, and indoor temperature could be further improved. However, indoor air quality was lowered because of the high PM2.5 concentration. In contrast, improving envelope performance could further improve the average temperature of two bedrooms and the sunspace to 16.7 degrees C, 15.9 degrees C and 15.6 degrees C, meeting the requirements of indoor space heating. In general, passive solar heating could achieve satisfactory results, but to alleviate energy poverty effectively in rural plateau areas, further attention should be paid to other technical, economic, social and policy issues.

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