Department of Civil and Environmental Engineering, The Hong Kong University of Science and Technology, Hong Kong Special Administrative Region.
Sci Total Environ. 2020 Aug 10;729:138760. doi: 10.1016/j.scitotenv.2020.138760. Epub 2020 Apr 20.
The formation and propagation of surface desiccation cracks in vegetated infrastructures involve coupled factors including unsaturated soil mechanics, atmospheric conditions and vegetation parameters. Vegetation induces a "Love-hate" relationship in the development of desiccation cracks due to plant induced suction as well as root reinforcement. The objective of the paper is to provide a state-of-the-art that comprehensively reviews the desiccation process in context of the soil-water-plant interaction together. At first, basic theories of crack initiation and propagation in literature are discussed in the context of unsaturated soil mechanics. Thereafter, influence of vegetation on soil cracking is discussed systematically based on transpiration induced suction, root reinforcement, plantation strategy, root exudate and basic plant traits. Intrusive and non-intrusive measurement approaches of desiccation cracks including lab and field studies are put forward. Various schools of desiccation models have been briefly touched upon. More than 150 studies on desiccation cracks have been tabulated in this review, considering soil types, vegetation cover, drying-wetting cycles, approaches of characterizing cracks, sample size, crack pattern, hydraulic conductivity and water retention. Future scopes involving measurement considerations, usage of geotechnical centrifuge modelling, bio-amendments and plant effects on desiccation cracking have been put forward.
植被型基础设施表面干燥裂缝的形成和扩展涉及多个耦合因素,包括非饱和土力学、大气条件和植被参数。由于植物诱导吸力和根系加固,植被在干燥裂缝的发展中产生了一种“爱恨交加”的关系。本文的目的是提供一个最新的综述,全面地回顾了土壤-水-植物相互作用中的干燥过程。首先,在非饱和土力学的背景下讨论了裂缝起始和扩展的基本理论。此后,根据蒸腾诱导吸力、根系加固、种植策略、根分泌物和基本植物特性,系统地讨论了植被对土壤开裂的影响。提出了包括实验室和现场研究在内的干燥裂缝侵入性和非侵入性测量方法。简要介绍了各种干燥模型学派。在本综述中,考虑了土壤类型、植被覆盖、干湿循环、裂缝特征化方法、样本大小、裂缝模式、水力传导率和水分保持,列出了 150 多项关于干燥裂缝的研究。提出了涉及测量考虑、岩土离心机模型使用、生物改良和植物对干燥裂缝影响的未来研究方向。