THE USE OF ONLINE WEB-BASED SOFTWARE I-TREE CANOPY AS AN ALTERNATIVE IN SUPPORTING COMMUNITY BASED ZERO DELTA Q PLANNING

Akhmadi Puguh Raharjo
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Abstract

Zero Delta Q is a policy to ensure that any additional surface runoff due to development does not further burden the drainage or river system. In case of Zero Delta Q application planning at the community level, a software is needed that can help classify and quantify the existing land cover class in area where the community is located. The purpose of this study is to look at the time needed and reliability of the i-Tree Canopy web-based software online in classifying and quantifying land cover classes on one of the sub-catchments in the Pesanggrahan River Basin. The land cover class is divided into six: trees, grasses / undergrowth plants, open area, water bodies, pavement / road and roof of the building. For comparison, an RBI map is used from the same area to see the extent of each class of land cover. Observation of each point requires an average time of 5.2 ± 1.0 seconds. The difference between direct sub-basin measurements using i-Tree Canopy and detailed analysis results from the RBI map is within the range of 0.41% or 0.36 Ha for each individual class of land cover. For a relatively small study area (under 100 ha) and when supported with reliable internet access, this web-based online software is sufficiently reliable in assisting the application planning process to support Zero Delta Q policy.
使用基于网络的在线软件i-tree canopy作为支持基于社区的零δ q规划的替代方案
零δ Q是一项政策,旨在确保由于开发而产生的任何额外地表径流不会进一步增加排水或河流系统的负担。如果在社区层面进行零增量Q应用规划,则需要一个软件来帮助对社区所在地区的现有土地覆盖等级进行分类和量化。本研究的目的是研究i-Tree Canopy在线软件对白桑格拉汗河流域的一个子集水区进行土地覆盖分类和量化所需的时间和可靠性。土地覆盖类别分为六类:树木、草地/灌木植物、开阔区域、水体、路面/道路和建筑物屋顶。为了进行比较,我们使用了同一地区的RBI地图来查看每一类土地覆盖的范围。每个点的观测平均时间为5.2±1.0秒。使用i-Tree Canopy的直接子流域测量结果与RBI地图的详细分析结果之间的差异在每一类土地覆盖的0.41%或0.36 Ha范围内。对于一个相对较小的研究区域(100公顷以下),如果有可靠的互联网接入,这个基于网络的在线软件在协助应用程序规划过程以支持零Q政策方面是足够可靠的。
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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