首页> 外文期刊>Energy Reports >The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), September 20–23, 2019, Okinawa, Japan Energy efficiency on the reefer container storage yard; an analysis of thermal performance of installation roof shade
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The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), September 20–23, 2019, Okinawa, Japan Energy efficiency on the reefer container storage yard; an analysis of thermal performance of installation roof shade

机译:第六次国际电力和能源系统会议工程(CPESE 2019),2019年9月20日至23日,冲绳,日本的能源效率在收音机容器储存码;安装屋盖的热性能分析

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摘要

This study aims to estimate the effect of energy efficiency by installing roof shade in the reefer container storage. A cross sectional of reefer container was simulated by using thermal simulation to investigate thermal performance and estimate the energy efficiency. The roof shade is used to reducing heat penetration on the container surface caused by strong load of solar radiation during the day. Since the thermal performance is difficult to estimate on measurement experiment because the effects are not always so much and have strong deviation, thermal simulation provides a useful tool to predict the temperature distribution. The current thermal simulation model consists of thermal radiation and conjugate heat transfer. Measurement of solar radiation was carried out to provide thermal boundary condition and temperature measurement was carried out to validate the simulation model. The simulation result confirms 9% energy efficiency by installation of roof shade during the day.
机译:本研究旨在通过在冷藏集装箱储存中安装屋顶遮阳篷来估算能效的效果。通过使用热仿真来模拟冷热型容器的横截面,以研究热性能并估计能效。屋顶色调用于减少由于白天太阳辐射的强大负载而导致的容器表面上的热渗透。由于热性能难以估计测量实验,因为效果并不总是如此多并且具有强大的偏差,因此热仿真提供了预测温度分布的有用工具。电流热仿真模型包括热辐射和缀合物传热。进行了太阳辐射的测量以提供热边界条件,进行温度测量以验证仿真模型。仿真结果通过在白天安装屋顶遮荫确认了9%的能效。

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