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BUILDING INTEGRATED PHOTOVOLTAICS IN A THERMAL BUILDING SIMULATION TOOL

机译:在热建筑仿真工具中建立集成光伏

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A simple approach for calculation of the electrical yield from building integrated PV (photovoltaic) systems has been implemented in BSim2002 - a program package for thermal simulation of energy and indoor climate conditions in buildings. The module – SimPv - takes advantage of the building model geometry and solar distribution routines of Bsim to simulate solar irradiation on a face fitted with PV. The routines also handle shades from local and distant obstacles. The electric yield is calculated in SimPv from a very limited number of data on the PV system. Output is summarised from each individual face containing areas with PV. SimPv is intended as a simple tool to help the engineer or architect at the early stage of the building design to evaluate the potential for implementing PV in the building envelope, allowing detailed analyses of the shading problem at any time of the year. The influence from shadings can be visualised dynamically and the impact on the electrical yield calculated for any period of the year. Thus, SimPv is not a detailed PV design tool, but a decision making design phase tool. Results from simulations with SimPv have been compared with results from the PvSyst program. This paper discusses the calculation approach used in SimPv and results from an inter- model comparison exercise.
机译:在BSIM2002中已经实施了从建筑集成PV(光伏)系统的电源的简单方法 - 一种用于热模拟建筑物中的能量和室内气候条件的程序包。该模块 - SIMPV - 利用BSIM的建筑模型几何和太阳能分配例程来模拟配有光伏的面孔的太阳照射。常规还处理来自局部和远处障碍物的阴影。在SIMPV中从PV系统上的数据数量的数据计算,在SIMPV中计算电率。输出总结了包含PV的区域的每个脸部。 SIMPV旨在作为一种简单的工具,帮助工程师或建筑师在建筑物设计的早期阶段,以评估在建筑信封中实现PV的可能性,允许在一年中的任何时候详细分析阴影问题。遮光的影响可以动态地看出,并对每年内任何一段时间计算的电源的影响。因此,SIMPV不是详细的光伏设计工具,而是一个决策设计阶段工具。将SIMPV的模拟结果与PVSyst程序的结果进行了比较。本文讨论了SIMPV中使用的计算方法和跨模型比较运动的结果。

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