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ENERGY AND FEASIBILITY ANALYSIS OF APPLYING BIO-BASED PHASE CHANGE MATERIALS TO BUILDINGS IN EAST ASIA

机译:将生物的相变材料应用于东亚建筑物的能量和可行性分析

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The application of phase change materials (PCMs) in building envelopes can help promote energy efficiency due to its high heat capacity. Our study aimed to provide energy and economic insights for deploying PCM to buildings in eight different regions of East Asia through a series of energy and economic analysis using computer modelling and simulations. The static payback period (SPP) and dynamic payback (DPP) methods were used to evaluate the economic feasibility of applying a PCM at different melting phase temperatures (20°C, 23°C, 25°C, 27°C and 29°C). Results show that the proper choice of a PCM melting temperature is a key factor to improve the performance of the PCM applied to buildings. A melting phase temperature of 29°C achieved the highest economic feasibility in Seoul, Tokyo; Pyongyang; Beijing; and Ulaanbaatar and a melting temperature of 23°C in Hong Kong had the highest economic feasibility. Overall, the combined economic and energy analysis presented in this study can play an important role in improving the energy and economic feasibility of PCM in buildings.
机译:相变材料(PCM)在建筑信封中的应用可以帮助促进由于其高热容量而促进能效。我们的研究旨在通过使用计算机建模和模拟的一系列能量和经济分析,为将PCM部署到东亚八个不同地区建筑物的能源和经济见解。静态投资回收期(SPP)和动态回报(DPP)方法用于评估在不同熔化相温度下施加PCM的经济可行性(20°C,23℃,25℃,27°C和29°C )。结果表明,PCM熔化温度的正确选择是提高PCM应用于建筑物的PCM性能的关键因素。熔化期温度为29°C实现了东京首尔的最高经济可行性;平壤;北京;乌兰巴托和香港23°C的熔化温度具有最高的经济可行性。总体而言,本研究中提出的经济和能源分析可以发挥重要作用,方面在提高PCM在建筑物中的能量和经济可行性方面发挥着重要作用。

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