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Set-up and evaluation of a virtual test bed for simulating and comparing single- and mixed-mode ventilation strategies

机译:虚拟测试台的设置和评估,以模拟和比较单模式和混合模式的通风策略

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Designing, optimizing and testing ventilation systems and their control strategies calls for dedicated simulation tools. Because building occupants are important influence factors for thermal comfort and indoor air quality (IAQ) and active actors by opening doors and windows, these tools must allow both an adequate modelling of air flows and of occupant behaviour. While the state of the art in software applications offers sufficient possibilities to model everyday ventilation systems, several authors indicate a need for dedicated simulation tools that enable modelling of complex mixed-mode (MMV) systems. These systems are characterised by their ability to switch between natural and (partly) mechanical operating modes according to demand and opportunity. In addition, deterministic occupant models that are often used in IAQ simulations offer room for improvement. VCVTB (Ventilation Controls Virtual Test Bed) is a new opensource EnergyPlus based test bed for single- and mixed-mode ventilation simulations, which provides a streamlined workflow for accelerated modelling, optimizing and testing of ventilation strategies and their control systems using an airflow network approach. It includes an integrated semi-probabilistic occupant model for IAQ simulation and facilitates a quick and effective comparison between systems by means of standard report sheets, comparative tables and 3D airflow output. To showcase some of the possibilities of VCVTB and to demonstrate the potential of MMV, VCVTB is used to implement a generic MMV system in a case study building. The performance of this setup is compared to several reference systems. First and foremost, the case study demonstrates the potential of VCVTB in designing and comparing ventilation strategies and their controller, facilitating further application-oriented research. Second, it shows that MMV can be a promising residential ventilation solution in regions with mild winters and cool summer. In these regions MMV can exploit the freely available natural ventilation potential to balance IAQ and adaptive user comfort with energy efficiency.
机译:设计,优化和测试通风系统及其控制策略需要专用的仿真工具。由于建筑居民是通过打开门和窗户来影响热舒适性和室内空气质量(IAQ)和主动角色的重要影响因素,因此这些工具必须既可以对空气流动和乘员行为进行适当的建模。尽管软件应用程序中的最新技术为日常通风系统的建模提供了足够的可能性,但一些作者表示需要专用的仿真工具,以对复杂的混合模式(MMV)系统进行建模。这些系统的特点是能够根据需求和机会在自然和(部分)机械操作模式之间切换。此外,IAQ模拟中经常使用的确定性乘员模型提供了改进的空间。 VCVTB(通风控制虚拟测试台)是一种基于开源,基于EnergyPlus的新测试台,用于单模式和混合模式的通风模拟,它提供了简化的工作流程,可通过气流网络方法加快通风策略及其控制系统的建模,优化和测试。它包括一个用于IAQ模拟的集成半概率乘员模型,并通过标准报告表,比较表和3D气流输出,促进了系统之间的快速有效比较。为了展示VCVTB的一些可能性并展示MMV的潜力,在案例研究大楼中使用VCVTB来实现通用MMV系统。将该设置的性能与几个参考系统进行了比较。首先,案例研究证明了VCVTB在设计和比较通风策略及其控制器方面的潜力,从而促进了进一步的面向应用的研究。其次,它表明,在冬季温和,夏季凉爽的地区,MMV可以成为有希望的住宅通风解决方案。在这些地区,MMV可以利用免费提供的自然通风潜力来平衡室内空气质量和适应性用户舒适度以及能源效率。

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