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BUILDING ENERGY SIMULATION WITH EASE

机译:轻松建立能量模拟

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This paper describes a relatively simple software tool that has been developed to perform annual hour-byhour energy simulation of a building. It extends earlier work performed for one-zone buildings (Bernier and Randriamiarinjatovo, 2001) to buildings that can be represented by five thermally similar zones. The simulation program has been built using a general equation solver (Klein and Alvarado, 2002). As implied by the title of this paper, the solver is easy to use both for the software developer and the user. It provides all the necessary tools (solver, plotting, graphics …) within the same package. The program can accommodate up to five thermal zones: four peripheral zones and an inner zone. The following phenomena are modeled: transient heat transfer through walls (using finite-difference), solar heat gains through windows, internal heat gains, and longwave radiation exchange between inside surfaces. The implementation of these phenomena into the software is discussed. Finally, validation tests performed using ASHRAE’s analytical test suite (Rees et al. , 2002) and the BESTEST diagnostic method (Judkoff and Neymark, 1995) are presented. These results show good agreement with other software tools.
机译:本文介绍了一个相对简单的软件工具,该工具已经开发出来,以执行建筑物的年度逐个能量模拟。它延伸到一个域建筑物(Bernier和Randriamiarinjatovo,2001)对建筑物执行的早期工作,这些建筑物可以由五个热相似的区域代表。仿真程序已经使用通用等式求解器(Klein和Alvarado,2002)构建。正如本文标题所暗示的,求解器易于使用软件开发人员和用户。它提供了同一包内的所有必要工具(求解器,绘图,图形......)。该程序最多可容纳五个热带:四个外围区域和内部区域。采用以下现象模拟:通过墙壁(使用有限差),通过窗户,内部热量收益和内表面之间的长波辐射交换的瞬态传热。讨论了这些现象进入软件。最后,使用Ashrae分析测试套件(Rees等,2002)和最佳诊断方法(Judkoff和Neymark,1995)进行了验证测试。这些结果与其他软件工具吻合良好。

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