Studying the growth characteristics of urban trees using an example from Szeged, Hungary

Csenge Kacsova, M. Kiss, Á. Gulyás
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Abstract

The spatial expansion of urbanised areas and the steady increase in the urban population, as well as climate change trends, are increasing the need for the development of adequate urban green infrastructure. The social demand for combating climate change is accompanied by the revaluation of green spaces, and in this context woody vegetation plays a key role. In a changing climatic context and under intense anthropogenic stress, the challenge of developing a tree population that is climate-friendly and resistant to disturbance is a major one. In our research, we investigate all growth parameters of the newly planted trees from the start of a street reconstruction involving a complete tree replacement (Gutenberg Street, Szeged). The structural analysis of the revealed not only the growth rate over the 8 years since planting, but also the significant differences between the two sides of the street. In order to find a possible reason for this, we examined (using SAGA GIS software) potential incoming solar radiation of the street, which could explain the significant difference in growth rate. The data collected also provided an opportunity to analyse the allometric relationships. This will partly allow the prediction of the growth rate and can provide baseline data for planning and decision-making processes in the dilemma of whether to retain older trees or plant new stocks.
以匈牙利塞格德为例研究城市树木的生长特征
城市化地区的空间扩张和城市人口的稳步增长,以及气候变化的趋势,都增加了发展适当的城市绿色基础设施的需求。应对气候变化的社会需求伴随着对绿色空间的重新评估,在这种情况下,木本植被起着关键作用。在不断变化的气候背景下,在强烈的人为压力下,发展气候友好和抵抗干扰的树木种群是一个重大挑战。在我们的研究中,我们调查了新种植树木的所有生长参数,从街道重建开始,包括完全更换树木(古腾堡街,塞格德)。结构分析不仅揭示了种植8年来的生长速度,而且还揭示了街道两侧的显着差异。为了找到可能的原因,我们检查了(使用SAGA GIS软件)街道的潜在入射太阳辐射,这可以解释增长率的显着差异。收集的数据也为分析异速生长关系提供了机会。这将在一定程度上使我们能够预测生长速度,并可为面临是保留老树还是种植新树的困境的规划和决策过程提供基线数据。
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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