10/29/2023 0 Comments Pyrosim 2019Members of professional institutions such as the Chartered Institution of Building Services Engineers (CIBSE), the Society of Façade Engineering and the Institution of Fire Engineers (IFE) will also benefit from the scientific and engineering numerical methods used in obtaining the fire performance data of this DSF building.ģ.1. Since the original article is to serve us a benchmark for other theoretical studies beneficial to fire fighters and engineers, access to the dataset behind this benchmark will be invaluable. Along with the detailed methodology and the source codes provided, the purpose of this dataset is to allow reproducibility and reuse in furtherance of future related studies in fire protection for green and sustainable buildings. The purpose is to provide transparency to the scientific work done by the authors and to provide opportunities for building services and fire engineering researchers to replicate the work done and to validate their own models. This dataset backs the results presented in Huang et al. Building Services Engineering Research and Technology. Numerical investigation of fire in the cavity of naturally ventilated double skin façade with Venetian blinds. Repository name: Digital Commons data (Mendeley Data)ĭata identification number: doi: 10.17632/cdc5wfmhs2.2 Institution: The University of Nottingham Ningbo ChinaĬity/Town/Region: Ningbo, Zhejiang Province The Input and Output Source Code Files showing the simulation process is also included. On each floor, three thermocouples were installed on the inner glazing and three on the outer glazing surfaces in the cavity of the DSF. The glazing surface temperatures were obtained from thermocouples installed on each floor. The computer used for the simulation was ASUS U4100 laptop with Windows 10 Operating System, 4G memory and Intel ® Core™ i5 - 7200U CPU 2.50GHz processor. Visualization of the simulation was achieved using Smokeview. Thermocouples on the inner and outer glazing of each floor measured DSF cavity temperatures. The model was created and simulated in PyroSim Version 20 and Fire Dynamics Simulator version 6.7.5. Data was acquired from the simulation of a 5-storey building with multi-storey type DSF incorporating Venetian blinds.
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