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Co-simulation of innovative integrated HVAC systems in buildings

机译:共同模拟建筑物中创新的集成式HVAC系统

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Integrated performance simulation of buildings' heating, ventilation and air-conditioning (HVAC) systems can help in reducing energy consumption and increasing occupant comfort. However, no single building performance simulation (BPS) tool offers sufficient capabilities and flexibilities to analyse integrated building systems and to enable rapid prototyping of innovative building and system technologies. One way to alleviate this problem is to use co-simulation, as an integrated approach to simulation.rnThis article elaborates on issues important for co-simulation realization and discusses multiple possibilities to justify the particular approach implemented in the here described co-simulation prototype. The prototype is validated with the results obtained from the traditional simulation approach. It is further used in a proof-of-concept case study to demonstrate the applicability of the method and to highlight its benefits. Stability and accuracy of different coupling strategies are analysed to give a guideline for the required coupling time step.
机译:建筑物供暖,通风和空调(HVAC)系统的集成性能模拟可以帮助减少能耗并提高乘员舒适度。但是,没有单一的建筑性能模拟(BPS)工具提供足够的功能和灵活性来分析集成建筑系统并实现创新建筑和系统技术的快速原型制作。缓解此问题的一种方法是使用协同仿真作为一种集成的仿真方法。本文详细介绍了对于协同仿真实现非常重要的问题,并讨论了多种可能性以证明在此描述的协同仿真原型中实现的特定方法的合理性。使用从传统仿真方法获得的结果验证了原型。在概念验证案例研究中进一步使用了它,以证明该方法的适用性并突出其好处。分析了不同耦合策略的稳定性和准确性,为所需的耦合时间步长提供了指导。

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