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Energy, Environmental, Economic Evaluation of Residential Building with Micro-CHP in South Korea

机译:韩国微仓居住楼的能源,环境,经济评价

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摘要

In South Korea, energy consumption of the building section accounts for 21% of the total energy consumption. When it comes to residential buildings, it takes 11% of the total energy consumption. The energy consumption is estimated to increase continuously as world energy consumption increases. In addition, CO2 emission has been increased accordingly. In order to reduce energy consumption and emission, a micro-CHP (Combined Heating and Power) is suggested to be applied in the typical Korean residential building. Based on the Korean multi-family building, the building energy analysis is conducted by comparing the conventional grid and boiler system to the micro-CHP system. The CHP model is developed with combining the stratified tank, and it is operated with the thermal load following method. Especially, the floor heating system is applied to the building. The results are presented in terms of annual energy consumption, environmental impact, and economic evaluation. According to the above results, it can be seen that the CHP application in the residential building in Korea has advantage in terms of energy saving and CO2 reduction. However, there is not much benefit from an economic point of view. The main reason is the utility rate policy in Korea. Gas price is relatively expensive and electricity price is relatively cheap as compared to other countries. Since it is not easy to change the utility rate right now due to the complicated interest relations, there must be government incentives on using CHP systems.
机译:在韩国,建筑物的能耗占总能耗的21%。涉及住宅建筑物,占总能耗的11%。随着世界能源消耗的增加,估计能源消耗量连续增加。此外,CO2排放已相应增加。为了降低能量消耗和排放,建议在典型的韩国住宅建筑中应用微型CHP(组合加热和电力)。基于韩国多家庭建筑,通过将传统电网和锅炉系统与微仓系统进行比较来进行建筑能量分析。 CHP模型采用分层罐组合而开发,并通过以下方法用热负荷进行操作。特别是,地板加热系统应用于建筑物。结果呈现在年能消耗,环境影响和经济评估方面。根据上述结果,可以看出,韩国住宅建筑中的CHP应用在节能和CO2减少方面具有优势。但是,从经济的角度来看,没有太大的好处。主要原因是韩国的效用政策。瓦斯价格相对昂贵,电价与其他国家相比相对便宜。由于现在由于复杂的息息关系而无法容易改变效用率,因此使用CHP系统必须有政府激励。

著录项

  • 来源
    《ASHRAE Transactions》 |2020年第1期|474-481|共8页
  • 作者

    Yujun Jung; Hoseong Lee;

  • 作者单位

    Department of Mechanical Engineering Korea university Seoul Korea;

    Department of Mechanical Engineering Korea University Seoul Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 21:40:47

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