The green window view index: automated multi-source visibility analysis for a multi-scale assessment of green window views

IF 4 2区 环境科学与生态学 Q1 ECOLOGY
Anna-Maria Bolte, Benjamin Niedermann, Thomas Kistemann, Jan-Henrik Haunert, Youness Dehbi, Theo Kötter
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引用次数: 0

Abstract

Context

Providing accessible urban green spaces is crucial for planning and ensuring healthy, resilient, and sustainable cities. The importance of visually accessible urban green spaces increases due to inner urban development processes.

Objectives

This article proposes a new index, the Green Window View Index (GWVI) for analyzing and assessing visible vegetation, that promotes an integrated planning of urban green spaces and buildings at different scales and levels. It is defined as the proportion of visible vegetation area in a field of view when looking out of a specific window with a defined distance to the window.

Methods

The method for estimating GWVI consists of three steps: (a) the modeling of the three-dimensional environment, (b) the simulation of the two-dimensional window views using modern rendering engines for three-dimensional graphics, (c) the computation of the GWVI. The method is proposed and tested through a case study of the urban area of Bonn, Germany, using a Digital Terrain Model (DTM), CityGML-based semantic 3D City Model at level of detail (LoD) 2, airborne Light Detection and Ranging (LiDAR) data, and 2D land use data from the official German property cadaster information system (ALKIS).

Results

With an average processing time of 0.05 s per window view, an average GWVI of 26.00% could be calculated for the entire study area and visualized in both 2D and 3D.

Conclusion

The proposed engine generates multi-scale visibility values for various vegetation shapes. These values are intended for use in participatory citizenship and decision-making processes for analysis by architects, real-estate appraisers, investors, and urban as well as landscape planners.

Abstract Image

绿窗景观指数:用于绿窗景观多尺度评估的自动多源能见度分析
背景提供无障碍的城市绿地对于规划和确保城市的健康、弹性和可持续发展至关重要。本文提出了一个分析和评估可见植被的新指标--"绿窗视野指数"(GWVI),以促进不同规模和层次的城市绿地和建筑的综合规划。它被定义为从特定窗户向外看时,在与窗户的规定距离内,可见植被面积在视野中所占的比例:(a) 三维环境建模,(b) 使用现代三维图形渲染引擎模拟二维窗口视图,(c) 计算 GWVI。通过对德国波恩市区的案例研究,提出并测试了该方法,使用了数字地形模型 (DTM)、基于 CityGML 的语义三维城市模型(细节级别 (LoD) 2)、机载光探测和测距 (LiDAR) 数据以及来自德国官方房地产地籍信息系统 (ALKIS) 的二维土地使用数据。结果每个窗口视图的平均处理时间为 0.05 秒,可计算出整个研究区域的平均 GWVI 为 26.00%,并以二维和三维形式显示。这些数值可用于公民参与和决策过程,供建筑师、房地产评估师、投资者、城市和景观规划师进行分析。
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来源期刊
Landscape Ecology
Landscape Ecology 环境科学-地球科学综合
CiteScore
8.30
自引率
7.70%
发文量
164
审稿时长
8-16 weeks
期刊介绍: Landscape Ecology is the flagship journal of a well-established and rapidly developing interdisciplinary science that focuses explicitly on the ecological understanding of spatial heterogeneity. Landscape Ecology draws together expertise from both biophysical and socioeconomic sciences to explore basic and applied research questions concerning the ecology, conservation, management, design/planning, and sustainability of landscapes as coupled human-environment systems. Landscape ecology studies are characterized by spatially explicit methods in which spatial attributes and arrangements of landscape elements are directly analyzed and related to ecological processes.
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