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Active solar heating systems for energy efficient buildings in Greece: A technical economic and environmental evaluation

机译:希腊用于节能建筑的主动太阳能供暖系统:技术经济和环境评估

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摘要

The purpose of this study is the technical and economic evaluation of a typical solar space and water heating system, utilized in an 88 m~2 detached house that is designed according to the latest Creek Regulation on the Energy Performance of Buildings as a means toward Nearly Zero Energy Buildings (NZEB). The analysis was conducted for each of the four climatic zones designated in the Greek Regulation. A financial analysis was performed and the Net Present Value and the Discounted Payback Period (DPBP) were calculated and correlated with the solar systems collector area and the storage tank volume. Furthermore, the annual avoided emissions from the substituted fossil fuels are estimated for the solar systems considered. The analysis demonstrates that the typical solar space and water heating system can provide a viable solution toward NZEB with solar coverage and DPBP being strongly influenced by the climatic zone of the building and the type of fossil fuel substituted. In all cases the solar system covers at least 45% of the total heating loads while the payback period is as low as 4.5 years with an annual abatement of more than 50t of CO_2 in the worst case scenario.
机译:这项研究的目的是对典型的太阳能空间和热水系统进行技术和经济评估,该系统用于88 m〜2的独立式房屋中,该房屋是根据最新的《建筑物能源性能的Creek法规》设计的,旨在实现近零能耗建筑(NZEB)。针对希腊法规中指定的四个气候区分别进行了分析。进行了财务分析,并计算了净现值和贴现回收期(DPBP),并将其与太阳能系统集热器面积和储罐容量相关联。此外,对于所考虑的太阳系,估计了每年由化石燃料替代产生的避免排放量。分析表明,典型的太阳能空间和热水系统可以为NZEB提供可行的解决方案,因为其太阳能覆盖率和DPBP受建筑物气候区和所替代的化石燃料类型的强烈影响。在所有情况下,太阳能系统至少覆盖总供暖负荷的45%,而投资回收期低至4.5年,在最坏的情况下,每年可减少50吨以上的CO_2。

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