首页> 外文会议>International Mechanical Engineering Congress and Exposition >(V08AT09A039) AN AUTOMATED APPROACH TO DEVELOPING COMPACT AND ACCURATE BUILDING MODELS UTILISING AN INVERSE HEAT TRANSFER APPROACH
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(V08AT09A039) AN AUTOMATED APPROACH TO DEVELOPING COMPACT AND ACCURATE BUILDING MODELS UTILISING AN INVERSE HEAT TRANSFER APPROACH

机译:(v08at09a039)一种自动化的方法,可以利用反热传递方法开发紧凑型和准确的建筑模型

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This paper is focused on developing numerical modeling techniques aimed at automating and simplifying the process of generating detailed models for simulating building thermal physics. However, the methodology described can be applied in numerous application areas across the thermals sector. Automated approaches to developing energy models for buildings are of particular importance to alleviate current labor intensive practices of manual generation so that large real-estate portfolios can be analyzed within a reasonable time frame, hence providing a decision making tool that can lead to smarter renovation plans for implementation across the fleet. This process is achieved by developing custom built software code in MathWorks MATLAB? with all aspects discussed herein. The starting point in this analysis is a series of individual CAD drawings for each building in the fleet with spatial coordinates for all lines and nodes loaded into matrices within MATLAB?. A constrained Delaunay triangulation technique is then applied to automatically differentiate building fabric components such as walls, columns, windows, etc., their physical scale, and all interior zones within the building. Multiple floor plans are also automatically linked by layer information, and a series of logical steps are then followed to identify zone-to-zone interactions and exterior building fabrics. A number of generic thermal resistance/capacitance models capable of modeling the anticipated thermal responses of all building elements are defined. These are assigned to the appropriate elements of the building fabric and linked based on the aforementioned zone identification process.
机译:本文专注于开发旨在自动化和简化生成模拟建筑物热物理模型的过程的数值建模技术。然而,所描述的方法可以应用于热线扇区的许多应用区域。自动化建筑物能源模型的方法是特别重要的,以缓解手册生成的当前劳动密集型做法,以便在合理的时间范围内分析大型房地产投资组合,因此提供了一个可以导致更智能的改造计划的决策工具在船队中实施。通过在Mathworks Matlab中开发定制构建软件代码来实现此过程?本文讨论的所有方面。该分析中的起点是一系列单独的CAD图纸,用于舰队中的每个建筑物,用于所有线条和节点的空间坐标,加​​载到Matlab内的矩阵中?然后应用受约束的Delaunay三角测量技术以自动区分建筑物织物部件,例如墙壁,柱,窗口等,其物理秤和建筑物内的所有内部区域。多层计划也通过图层信息自动链接,然后遵循一系列逻辑步骤以识别区域到区域交互和外部建筑面料。定义了许多能够建模所有建筑元件的预期热响应的通用热阻/电容模型。这些被分配给建筑物面料的适当元素,并基于上述区域识别过程连接。

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