研究了采用两种不同控制器计算建筑室内温度瞬态和能耗负荷的解析方法

K. Han
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摘要

分析了四种不同墙体结构的建筑,分析了墙体质量对建筑热工性能和建筑内空气和墙体温度瞬态的影响,并计算了能耗负荷。本分析性研究的动机来自Burch等人的实验工作。利用拉普拉斯变换法、Bromwich法和改进的Bromwich轮廓法,得到了一维线性偏微分方程的解析解。采用稳态分析作为简化方法建立了一个简单的动力模型,并将能耗负荷计算结果与解析解计算结果进行了比较。典型气象年的资料经处理后,可得到每小时的月平均值。这项研究使用了韩国两个不同地区的天气数据:夏季和冬季天气恶劣的大邱和几乎全年天气温和的济州岛。在温和气候条件下,墙体质量对建筑的热工性能有显著影响。在温和的气候条件下,带有保温材料的重型建筑的舒适度最高。与使用开关控制器的建筑物相比,比例控制器提供了更高的舒适度。稳态分析对各类建筑的能量负荷给出了准确的估计。最后,认为质量和墙体保温都是影响建筑热工性能的重要因素,但应通过对建筑布局、天气条件和场地条件的严格分析,在每个建筑中决定它们的相对优点。
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A study on the analytical method for calculating the inside air temperature transient and energy consumption load of the building using two different controllers
Four different buildings having various wall construction are analyzed for the effect of wall mass on the thermal performance and inside building air and wall temperature transient and also for calculating the energy consumption load . This analytical study was motivated by the experimental work of Burch et al . An analytical solution of one -dimensional , linear , partial differential equations is obtained using the Laplace transform method , Bromwich and modified Bromwich contour method . A simple dynamic model using steady state analysis as simplified methods is developed and results of energy consumption loads are compared with results obtained using the analytical solution . Typical Meteorological Year data are processed to yield hourly average monthly values . This study is conducted using weather data from two different locations in Korea : Daegu having severe weather in summer and winter and Jeju having mild weather almost all year round . There is a significant wall mass effect on the thermal performance of a building in mild weather condition . Buildings of heavyweight construction with insulation show the highest comfort level in mild weather condition . A proportional controller provides the higher comfort level in comparison with buildings using on -off controller . The steady state analysis gives an accurate estimate of energy load for all types of construction . Finally , it appears that both mass and wall insulation are important factors in the thermal performance of buildings , but their relative merits should be decided in each building by a strict analysis of the building layout , weather conditions and site condition .
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