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首页> 外文期刊>Journal of Cleaner Production >Interactive urban building energy modelling with functional mockup interface of a local residential building stock
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Interactive urban building energy modelling with functional mockup interface of a local residential building stock

机译:互动城市建筑能源建模与当地住宅楼的功能模型界面

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The transformation towards a low carbon energy system requires municipalities to improve their local building stock. Urban building energy modelling (UBEM) is an emerging tool to support municipalities in shaping the necessary strategies by estimating energy demand with high spatial and temporal resolution. This study proposes a Functional Mockup Interface (FMI)-based UBEM that enables interactive capacities to simulate diverse environmental conditions without reinitialisation. The FMI-based approach allows to couple the building energy simulation EnergyPlus with external models. These capacities were tested on a real-world example in the German city of Wuppertal with urban microclimate data. The results are estimates of sub-hourly energy demand based on the adjacent environmental conditions of each building. In order to ameliorate the applicability, the FMI-based UBEM is further enriched by incorporating an automatic procedure to derive 3D building models, displaying high geometrical fidelity, from city-wide point clouds through the screened Poisson surface reconstruction algorithm. The study area contains 5736 residential buildings. A diverse residential building stock was modelled on the basis of the EU project TABULA. To demonstrate the functionality of the proposed UBEM, a demand response scenario was constructed with microclimate data and heat pumps instead of other heating and hot water systems. The capacity of UBE-FMI to dynamically change parameters (e.g. thermostat setpoint) in the building models can benefit the evaluation of demand response strategies and its potential to shed peak loads. In comparison with reference studies, UBE-FMI produced reasonable estimates of energy demand. The 3D building models and simulation results using "live" weather are visualized by a web-interface, which is implemented with the geospatial 3D framework NASA WorldWind.(c) 2021 Elsevier Ltd. All rights reserved.
机译:朝向低碳能源系统的转变需要市政当局改善其当地建筑股票。城市建筑能源建模(UBEM)是一种新兴工具,支持市政当局通过估计具有高空间和时间分辨率的能源需求来塑造必要的策略。本研究提出了基于ubem的功能模型界面(FMI),使得能够在没有重新幂化的情况下模拟不同的环境条件。基于FMI的方法允许将建筑能量模拟能量支放与外部模型耦合。这些能力在德国市伍珀塔尔的真实情况下进行了测试,与城市微气候数据。结果是基于每个建筑物的邻近环境条件的亚小时能源需求估算。为了改善适用性,通过纳入3D建筑模型,通过筛选的泊松表面重建算法从城市宽点云纳入3D建筑模型,进一步丰富了基于FMI的UBEM。研究区包含5736个住宅建筑。在欧盟项目Tabula的基础上建模了各种住宅楼库存。为了展示所提出的UBEM的功能,需要使用微气候数据和热泵而不是其他加热和热水系统构建需求响应场景。 UBE-FMI在建筑模型中动态改变参数(例如恒温器设定值)的能力可以使需求响应策略的评估及其对棚屋负荷的潜力有益。与参考研究相比,UBE-FMI产生了合理的能源需求估算。使用“Live”天气的3D建筑模型和仿真结果由Web-interfy可视化,该界面是用地​​理空间3D框架NASA Worldwind实现的。(c)2021 Elsevier Ltd.保留所有权利。

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