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Comparative analysis on thermal performance of different wall insulation forms under the air-conditioning intermittent operation in summer

机译:夏季空调间歇运行下不同壁绝缘形式热性能的比较分析

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Air-conditioning intermittent operation is widely applied in building daily management, but more attention is focused on the air-conditioning continuous operation to simplify the energy-saving design. And the air-conditioning operation difference between the daily use and the energy-saving design must lead to large discrepancies in the energy efficiency and energy consumption between the actual usage and the primary design. Taking into account this situation, a verified numerical simulation was carried on to comparatively analyze the thermal performance of different wall insulation forms under air-conditioning intermittent and continuous operation in summer. The numerical results showed that the different wall insulation forms had a remarkable effect on the temperature response rate and the heat flow of the inner surface under the air-conditioning intermittent operation, although they had the same heat transfer coefficients. The interior insulation was more suitable for the wall insulation form under air-conditioning intermittent operation, while the heavyweight self-insulation and exterior insulation were more suitable under air-conditioning continuous operation. Compared with the air-conditioning continuous operation, the daily cooling load formed by walls was reduced by 44-55% under the intermittent operation and the interior insulation wall had the highest energy conservation rate of 52-65%, which was 7-19% higher than other wall insulation forms. If air-conditioning had operated for a long time, a short stop would not reduce the cooling load formed by walls. (C) 2017 Elsevier Ltd. All rights reserved.
机译:空调间歇性操作广泛应用于建设日常管理,但更多关注专注于空调连续操作,以简化节能设计。日常使用和节能设计之间的空调运行差异必须导致实际使用和主要设计之间的能效和能耗的大致差异。考虑到这种情况,进行了经过验证的数值模拟,以相互分析在夏季空调间歇和连续操作下不同壁绝缘形式的热性能。数值结果表明,不同的壁绝缘形式对空调间歇操作下的内表面的温度响应速率和热流具有显着影响,尽管它们具有相同的传热系数。室内绝缘更适合于空调间歇操作下的壁绝缘形式,而重量级自绝缘和外部绝缘体更适合于空调连续操作。与空调连续运行相比,在间歇运行下,壁形成的日常冷却负荷降低了44-55%,内部绝缘墙的最高节能率为52-65%,为7-19%高于其他墙壁绝缘形式。如果空调长时间运行,则短路停止不会减少由墙壁形成的冷却载荷。 (c)2017 Elsevier Ltd.保留所有权利。

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