评估尼泊尔桤木在稳定滑坡及其潜在分布中的作用:以西喜马拉雅北阿坎德邦为例。

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Sanjay Kumar Dwivedi, Naveen Chandra, Arun Pratap Mishra, Sonam Bahuguna, Aman Srivastava, Dhani Arya, Gajendra Singh, Bojan Đurin, Nikola Kranjčić, Raj Singh
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引用次数: 0

摘要

在印度脆弱的喜马拉雅地区,山体滑坡的频率和严重程度不断上升,威胁着人类住区和关键的基础设施。这一日益严重的问题需要采取紧急行动和创新战略,以减轻风险,加强这一脆弱地区受影响社区和基础设施的复原力。本研究以印度北阿坎德邦Ukhimath附近为例,探讨了尼泊尔桤木在边坡稳定中的作用,并利用分布良好的物种发生记录和环境,阐明了北阿坎德邦温带桤木的潜在生态位。该研究使用Sentinel-2(2021)数据进行土地利用和土地覆盖(LULC)制图,并使用1998年、2004年、2015年、2019年和2020年的Landsat 4-5、Sentinel-2和谷歌地球图像进行滑坡边坡恢复评估。1998年8月,Ukhimath滑坡面积达54.61 ha,恢复明显,到2020年,桤木的覆盖率达到98.20%,显示了该物种在没有人为干预的情况下稳定边坡的功效。研究预测,北阿坎德邦温带地区(海拔1000 ~ 2500 m·asl)桤木潜在分布面积约为7833 km2,其中高度适宜区782.30 km2,中等适宜区2104.33 km2,其余为低适宜区。这些分布洞察为原位规划提供了基础,利用桤木为基础的生物工程进行早期边坡稳定,这在北阿坎德邦等滑坡易发地区尤其重要。该研究提供了一个全面和科学严谨的战略,以实现滑坡易发地区的可持续成果,特别是在喜马拉雅山脉的温带地区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the role of Alnus nepalensis D. Don in stabilizing landslide and its potential distribution: a case study from Uttarakhand, Western Himalaya.

The rising frequency and severity of landslides in the vulnerable Himalayan region of India threaten human settlements and critical infrastructure. This growing issue demands urgent action and innovative strategies to mitigate risks and bolster the resilience of affected communities and infrastructure in this fragile area. The research explores the use of Alnus nepalensis for slope stabilization, illustrated by a case study near Ukhimath, Uttarakhand, India, and elucidates the potential ecological niche of Alnus in the temperate region of Uttarakhand using well-dispersed species occurrence records along with environment. The study used Sentinel-2 (2021) data for land use and land cover (LULC) mapping and Landsat 4-5, Sentinel-2, and Google Earth imagery from 1998, 2004, 2015, 2019, and 2020 for landslide slope recovery assessment. The Ukhimath landslide, spanning 54.61 ha in August 1998, demonstrated a remarkable recovery, with 98.20% coverage of Alnus by 2020, showcasing the species efficacy in stabilizing slopes without human intervention. The research forecasts a total potential distribution area of Alnus in the temperate region (1,000-2,500 m·asl [above mean sea level]) of Uttarakhand as ∼7,833 km2, with 782.30  km2 highly suitable, 2,104.33  km2 moderately suitable, and the rest showing low suitability. These distribution insights provide a foundation for in situ planning to leverage Alnus-based bioengineering for early slope stabilization, which is especially relevant in landslide-prone areas like Uttarakhand. The study provides a comprehensive and scientifically rigorous strategy for achieving sustainable outcomes in landslide-prone areas, particularly in the lower temperate region of the Himalaya.

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来源期刊
Integrated Environmental Assessment and Management
Integrated Environmental Assessment and Management ENVIRONMENTAL SCIENCESTOXICOLOGY&nbs-TOXICOLOGY
CiteScore
5.90
自引率
6.50%
发文量
156
期刊介绍: Integrated Environmental Assessment and Management (IEAM) publishes the science underpinning environmental decision making and problem solving. Papers submitted to IEAM must link science and technical innovations to vexing regional or global environmental issues in one or more of the following core areas: Science-informed regulation, policy, and decision making Health and ecological risk and impact assessment Restoration and management of damaged ecosystems Sustaining ecosystems Managing large-scale environmental change Papers published in these broad fields of study are connected by an array of interdisciplinary engineering, management, and scientific themes, which collectively reflect the interconnectedness of the scientific, social, and environmental challenges facing our modern global society: Methods for environmental quality assessment; forecasting across a number of ecosystem uses and challenges (systems-based, cost-benefit, ecosystem services, etc.); measuring or predicting ecosystem change and adaptation Approaches that connect policy and management tools; harmonize national and international environmental regulation; merge human well-being with ecological management; develop and sustain the function of ecosystems; conceptualize, model and apply concepts of spatial and regional sustainability Assessment and management frameworks that incorporate conservation, life cycle, restoration, and sustainability; considerations for climate-induced adaptation, change and consequences, and vulnerability Environmental management applications using risk-based approaches; considerations for protecting and fostering biodiversity, as well as enhancement or protection of ecosystem services and resiliency.
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