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GIS-Based and computer simulation evaluation on . campus master plan

机译:基于GIS和计算机仿真评估。校园大师计划

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In the previous study, it was found that urban heat island intensity in National University of Singapore (NUS) campus as high as 4°C at around 13:00. It is also concluded that the presence of dense greenery in NUS environment is very important in keeping low ambient temperature. National University of Singapore has announced its new master plan in 2005, entitled NUS Master Plan 2005. Many new buildings will be built and in some areas existing greenery will be removed. Geographical Information System (GIS) was use to evaluate the greenery condition. It was found that the greenery rate of NUS Master Plan 2005 will drop by about 3% from 55.10% of NUS current condition to 52.31%. In order to have a sustainable environment, the greenery condition should be at least maintain at the same rate or even make it better. For this purpose, potential of increasing greenery area by rooftop greenery application was also done. The target is to maintain the green rate of different zones at the same rate with current condition. In total, there will be more than 56% new buildings in NUS Master Plan 2005. Therefore, there is a good opportunity to plan and introduce the rooftop greenery or vertical greenery since in the early design stage The ENVI-Met simulation predicts that the ambient temperature in NUS environment will increase about 1°C when NUS Master Plan 2005 is completed. It is due to the reduction of greenery rate.
机译:在前一项研究中,发现新加坡国立大学(NUS)校园城市热岛强度高达4°C左右13:00。还得出结论,Nus环境中致密绿叶的存在对于保持低环境温度非常重要。新加坡国立大学曾宣布2005年题为NUS总体规划2005年的新硕士计划。许多新建筑物将在一些地区建造,在某些地区将被删除。地理信息系统(GIS)用于评估绿化状况。结果发现,2005年NUS总体计划的绿化率将从55.10%的NUS Current条件下降约3%至52.31%。为了具有可持续的环境,绿化状况应至少以相同的速度维持,甚至更好地保持。为此,还完成了屋顶绿化应用增加绿化面积的潜力。目标是以与当前条件相同的速率保持不同区域的绿色速率。总的来说,2005年的Nus总体计划中将有超过56%的新建筑物。因此,有一个良好的机会计划和介绍屋顶的绿色植物或垂直绿叶,因为在早期设计阶段,Envi-Met模拟预测了环境的仿真NUS环境中的温度在2005年完成NUS主计划时将增加约1°C。它是由于降低了绿化率。

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