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Spatial-temporal analysis of building surface temperatures in Hung Hom

机译:红Ho建筑物表面温度的时空分析

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This thesis presents a study on spatial-temporal analysis of building surface temperatures in Hung Hom. Observations were collected from Aug 2013 to Oct 2013 at a 30-min interval, using iButton sensors (N=20) covering twelve locations in Hung Hom. And thermal images were captured in PolyU from 05 Aug 2013 to 06 Aug 2013. A linear regression model of iButton and thermal records is established to calibrate temperature data. A 3D modeling system is developed based on Visual Studio 2010 development platform, using ArcEngine10.0 component, Microsoft Access 2010 database and C# programming language. The system realizes processing data, spatial analysis, compound query and 3D face temperature rendering and so on. Building materials are found to have a significant effect on building surface temperatures. Buildings with lower albedo materials tend to have higher temperatures and larger thermal conductivity material have significant diurnal variations. For the geographical locations, buildings located at the southeast are cooler than the western. Furthermore, human activity is found to have a strong relationship with building surface temperatures through weekday and weekend comparison.
机译:本文提出了红Ho建筑表面温度的时空分析研究。从2013年8月至2013年10月以30分钟的间隔收集观测数据,使用iButton传感器(N = 20)覆盖红Ho的十二个位置。在2013年8月5日至2013年8月6日之间,在PolyU中捕获了热图像。建立了iButton和热记录的线性回归模型来校准温度数据。基于Visual Studio 2010开发平台,使用ArcEngine10.0组件,Microsoft Access 2010数据库和C#编程语言开发了一个3D建模系统。该系统实现了处理数据,空间分析,复合查询和3D面部温度渲染等功能。发现建筑材料对建筑表面温度有显着影响。具有较低反照率材料的建筑物往往具有较高的温度,较大的导热率材料具有明显的昼夜变化。就地理位置而言,东南方的建筑物要比西部的建筑物凉爽。此外,通过比较工作日和周末,发现人类活动与建筑物表面温度有很强的关系。

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