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A Solar Thermal Application for Mongolian Detached Houses: An Energy, Environmental, and Economic Analysis Based on Dynamic Simulations

机译:蒙古独立式住宅的太阳能热应用:基于动态模拟的能源,环境和经济分析

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Ulaanbaatar (Mongolia) is the coldest capital city in the world with approximately 98% of its heating demand satisfied by means of coal-burning stoves. This leads to enormous air pollutant emissions, with Ulaanbaatar being one of the top five most polluted cities in the world. In this study, an innovative solar hybrid heating system for the Mongolian scenario was used, which was based on the operation of a solar field composed of four series-connected evacuated tube heat pipe collectors, coupled with a thermal energy storage. The solar hybrid heating system was simulated and analyzed using the software TRNSYS. The simulations were designed to satisfy the heating demand of a typical single-family detached house located in Ulaanbaatar and were carried out with and without considering the soiling effects on the solar system operation. The overall performance of the proposed plant was compared with those associated with different fossil fuel-based Mongolian conventional heating systems, in order to assess the potential energy, environmental and economic benefits. The results highlighted that the proposed plant allowed for the obtainment of significant reductions in terms of primary energy consumption (up to 34.6%), global CO 2 equivalent emissions (up to 52.3%), and operating costs (up to 49.6%), even if the expected return on the investment could be unacceptable.
机译:乌兰巴托(蒙古)是世界上最冷的首都,约有98%的供暖需求通过燃煤炉子得到满足。这导致了巨大的空气污染物排放,乌兰巴托是世界上污染最严重的五个城市之一。在这项研究中,使用了针对蒙古情景的创新型太阳能混合供暖系统,该系统基于一个太阳能场的运行,该场由四个串联连接的真空管式热管集热器以及一个热能储存器组成。使用软件TRNSYS对太阳能混合供热系统进行了仿真和分析。该模拟旨在满足位于乌兰巴托的一栋典型的单户独立式住宅的供热需求,并且在进行模拟时不考虑污染对太阳能系统运行的影响。为了评估潜在的能源,环境和经济效益,将拟建电厂的总体性能与基于化石燃料的蒙古传统供暖系统的性能进行了比较。结果表明,拟建的工厂可以实现一次能源消耗(高达34.6%),全球CO 2当量排放(高达52.3%)和运营成本(高达49.6%)的显着降低,甚至如果预期的投资回报率不可接受。

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