Characterizing the local climate of large-scale archaeological parks in the tropics

IF 1.1 Q4 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
F. Binarti, P. Pranowo, Chandra Aditya, Andreas Matzarakis
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引用次数: 0

Abstract

PurposeThis study aims to compare the local climate characteristics of Angkor Wat, Borobudur and Prambanan parks and determine effective strategies for mitigating thermal conditions that could suit Borobudur and Angkor Wat.Design/methodology/approachThe study employed local climate zone (LCZ) indicators and ten-year historical climate data to identify similarities and differences in local climate characteristics. Satellite imagery processing was used to create maps of LCZ indicators. Meanwhile, microclimate models were used to analyze sky view factors and wind permeability.FindingsThe study found that the three tropical large-scale archaeological parks have low albedo, a medium vegetation index and high impervious surface index. However, various morphological characteristics, aerodynamic properties and differences in temple stone area and altitude enlarge the air temperature range.Practical implicationsBased on the similarities and differences in local climate, the study formulated mitigation strategies to preserve the sustainability of ancient temples and reduce visitors' heat stress.Originality/valueThe local climate characterization of tropical archaeological parks adds to the number of LCZs. Knowledge of the local climate characteristics of tropical archaeological parks can be the basis for improving thermal conditions.
确定热带地区大型考古公园的当地气候特征
目的本研究旨在比较吴哥窟、婆罗浮屠和普兰巴南公园的当地气候特征,并确定适合婆罗浮屠和吴哥窟的缓解热状况的有效策略。卫星图像处理用于绘制 LCZ 指标图。研究发现,三个热带大型考古公园的反照率较低,植被指数中等,不透水表面指数较高。实践意义根据当地气候的异同,该研究制定了缓解策略,以保护古寺的可持续性,并减少游客的热压力。 原创性/价值热带考古公园的当地气候特征增加了低纬度地区的数量。对热带考古公园当地气候特征的了解可作为改善热条件的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.90
自引率
10.00%
发文量
63
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