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BIM-CFD-based Thermal Analysis for Northern Buildings on Permafrost

机译:基于BIM-CFD的永久冻土北部建筑热分析

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摘要

Abstract In austere environments, such as northern regions, remote communities face many challenges such as permafrost warming and significant infrastructure deficit. With the increasing demand for soil stabilization methods beneath structures, adapting building designs has become a vital requirement for a sustainable and resilient future in the northern climate. This study proposes a novel improved framework integrated building information modeling (BIM), computational fluid dynamics (CFD), and heat transfer analysis to quantify the effects of infrastructure development on permafrost ground. Results reveal that buildings have altered the ground thermal regime, causing permafrost thawing at a variable rate depending on different factors. Building clearance height above the ground, soil physical property, building floor thermal conductivity, and wind speed and direction are vital factors in this scenario. The study also found that raising buildings by one meter above the ground is recommended for the northern climatic regions as it reduces the thermal stresses on the permafrost. Further, the thermal load due to buildings generated in the present study can also be used in the structural analysis for permafrost buildings.
机译:摘要 在北方地区等严酷环境中,偏远社区面临多年冻土变暖、基础设施严重不足等诸多挑战。随着对结构下土壤稳定方法的需求不断增加,调整建筑设计已成为北方气候可持续和有弹性的未来的重要要求。本研究提出了一种新型的改进框架,即综合建筑信息模型(BIM)、计算流体力学(CFD)和传热分析,以量化基础设施建设对多年冻土地的影响。结果表明,建筑物改变了地面热状态,导致永久冻土融化,根据不同的因素以不同的速度融化。在这种情况下,建筑物离地净空高度、土壤物理特性、建筑物地板导热系数以及风速和风向是至关重要的因素。该研究还发现,建议在北部气候地区将建筑物抬高一米,因为它可以减少永久冻土的热应力。此外,本研究中产生的建筑物产生的热负荷也可用于多年冻土建筑物的结构分析。

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