首页> 外文期刊>Urban ecosystems >Exploring structural habitat heterogeneity in sustainable urban drainage systems (SUDS) for urban biodiversity support
【24h】

Exploring structural habitat heterogeneity in sustainable urban drainage systems (SUDS) for urban biodiversity support

机译:探索可持续城市排水系统(SUDS)中结构栖息地的异质性,以支持城市生物多样性

获取原文
获取原文并翻译 | 示例
           

摘要

Implementation of sustainable urban drainage systems (SUDS) as part of cities' transition towards climate resilience encompasses unique opportunities to enhance urban nature qualities. SUDS include individual elements integrated in the urban landscape, e.g. rain gardens or wet basins, which are usually constructed with low structural heterogeneity. Structural heterogeneity of habitats is, however, associated with a high degree of biodiversity. This study explored potentials of habitat heterogeneity enhancement in SUDS using structural heterogeneity as a proxy for biodiversity potential. In an interdisciplinary workshop, landscape architects and urban ecologists designed individual SUDS elements with enhanced structural habitat heterogeneity, hereafter bio-SUDS. The redesigned SUDS elements were infiltration trench, curb extension, rain garden, swale, wet basin, and dry basin. To evaluate the bio-SUDS designs, we developed an index of habitat heterogeneity in SUDS based on registration of 45 structurally important components. The conversion from standard SUDS to bio-SUDS entailed substantial increases in structural heterogeneity ranging from 4 to 18 additional components within elements. Larger bio-SUDS elements returned higher index scores, but the relative score increases were substantial for all bio-SUDS and in the range of a factor of 2-5.5. Increased terrain differences, meandering edges, stones, gravel, boulders, deadwood, and brown roof-like vegetation were the components most often employed in the bio-SUDS designs. In conclusion, implementation of bio-SUDS has potential to increase structural habitat heterogeneity thereby providing habitat for biodiversity in urban green areas. The developed bio-SUDS index can assist in future assessments of ecological qualities in designs and real-world SUDS elements.
机译:作为城市向气候适应力过渡的一部分,实施可持续城市排水系统(SUDS)包含提高城市自然素质的独特机会。 SUDS包含整合到城市景观中的各个元素,例如雨花园或湿盆地,通常其结构异质性较低。但是,生境的结构异质性与高度生物多样性有关。本研究利用结构异质性作为生物多样性潜力的替代品,探索了SUDS中栖息地异质性增强的潜力。在一个跨学科的研讨会中,景观设计师和城市生态学家设计了具有增强的结构栖息地异质性的个体SUDS元素,此后称为bio-SUDS。重新设计的SUDS要素是渗透沟,路缘延伸,雨水花园,沼泽,湿盆和干盆。为了评估生物SUDS设计,我们基于45种重要结构组分的注册,开发了SUDS生境异质性指数。从标准SUDS到生物SUDS的转换导致结构异质性的实质性增加,范围从元素内的4到18个其他组件不等。较大的bio-SUDS元素返回较高的指数得分,但所有bio-SUDS的相对得分增加幅度都很大,且在2-5.5的范围内。不断增加的地形差异,曲折的边缘,石头,砾石,巨石,枯木和褐色的屋顶状植被是生物SUDS设计中最常使用的组件。总之,实施生物SUDS可能会增加结构性生境的异质性,从而为城市绿地中的生物多样性提供生境。已开发的bio-SUDS指数可以帮助将来评估设计和实际SUDS要素中的生态质量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号