Coupled building simulation and CFD for real-time window and HVAC control in sports space

IF 6.7 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Journal of building engineering Pub Date : 2024-09-14 DOI:10.1016/j.jobe.2024.110731
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Abstract

Accurately predicting players’ thermal comfort in large sports spaces for real-time window and HVAC operations presents significant challenges due to non-uniform thermal distributions. Standalone building energy simulation (BES) typically assumes the entire targeted space as a uniform thermal zone, which fails to capture these variances. Conversely, Computational Fluid Dynamics (CFD) simulation can predict indoor thermal environments with precision but often struggles with determining accurate boundary conditions. This study introduces a coupled BES and CFD simulation method tailored for real-time window and HVAC control in sports spaces. A case study was conducted in a prototypical national fitness hall to evaluate the effectiveness of the proposed method. The thermal comfort and cooling energy results from the co-simulation-based control were compared with those from standalone EnergyPlus simulation-based control and fixed-schedule window and HVAC operations, which served as baselines. The results indicate that the proposed method enhanced thermal comfort by 68.5 % compared to constantly-scheduled window operations and achieved daily energy savings of up to 43.5 % versus constantly-scheduled HVAC operations. Furthermore, significant discrepancies in Average Predicted Mean Vote (PMV) or Average Adaptive Predicted Mean Vote (aPMV) as well as daily cooling energy consumption between the BES-CFD co-simulation and standalone EnergyPlus simulation were identified, ranging from -0.53 to 1.83 for PMV (aPMV) and -2444.6 to 1266.5 kWh for cooling energy. This study contributes novel methods for real-time window and HVAC control in sports buildings towards thermally comfortable and energy-efficient sports environments.

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用于体育空间窗户和暖通空调实时控制的耦合建筑模拟和 CFD
由于热分布不均匀,要准确预测大型运动空间内运动员的热舒适度,以实现窗户和暖通空调的实时运行,面临着巨大的挑战。独立的建筑能耗模拟 (BES) 通常将整个目标空间假定为一个均匀的热区,这就无法捕捉到这些差异。相反,计算流体动力学(CFD)模拟可以精确预测室内热环境,但往往难以确定准确的边界条件。本研究介绍了一种 BES 和 CFD 仿真耦合方法,专为运动空间的实时窗户和暖通空调控制而量身定制。在一个原型全民健身馆中进行了案例研究,以评估所建议方法的有效性。将基于联合仿真的控制所产生的热舒适度和制冷能耗结果与独立的基于 EnergyPlus 仿真的控制和固定时间表的窗户和暖通空调操作所产生的结果进行了比较。结果表明,与固定计划的窗户运行相比,建议的方法提高了 68.5% 的热舒适度,与固定计划的暖通空调运行相比,每天可节约高达 43.5% 的能源。此外,在平均预测平均值(PMV‾)或平均自适应预测平均值(aPMV‾)以及每日制冷能耗方面,BES-CFD 协同模拟与独立的 EnergyPlus 模拟之间存在明显差异,PMV‾(aPMV‾)从-0.53 到 1.83 不等,制冷能耗从-2444.6 到 1266.5 千瓦时不等。这项研究为体育建筑中窗户和暖通空调的实时控制提供了新方法,从而实现热舒适和节能的体育环境。
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来源期刊
Journal of building engineering
Journal of building engineering Engineering-Civil and Structural Engineering
CiteScore
10.00
自引率
12.50%
发文量
1901
审稿时长
35 days
期刊介绍: The Journal of Building Engineering is an interdisciplinary journal that covers all aspects of science and technology concerned with the whole life cycle of the built environment; from the design phase through to construction, operation, performance, maintenance and its deterioration.
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