山体滑坡的社会经济影响和应用缓解技术:以尼泊尔巴纳斯卡利为例

Anushka Shakya, Pawan Sigdel, Saroj Pokhrel
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引用次数: 0

摘要

本研究旨在估计滑坡的社会经济影响,并确定在帕尔帕巴纳斯卡利农村市用于滑坡控制的缓解技术。采用有目的的抽样方法,重点对滑坡多发地块进行研究。在确定的20个滑坡易发地点中,采用随机抽样方法,以40%的抽样强度确保代表性数据的收集。通过直接观察、横断面步行和在滑坡易发地区进行的住户调查收集数据。此外,还与关键线人、技术团队和该领域的专家进行讨论,以验证收集到的数据。2020年,在巴纳斯卡利农村市,有6户家庭报告受到破坏,发生了两起死亡事件,记录了24头牲畜死亡,由于山体滑坡,文化遗产遭到破坏,造成社会损失。由于水资源的破坏、道路的堵塞和农业用地的破坏,受影响的社区还遭受了100万至500万卢比的补偿性损失。作为缓解滑坡的措施,市政府采用了格宾墙、砌体、涵洞、堤坝、钢筋混凝土(RCC)等土木工程技术,以及种植、树篱和灌木分层等生物工程技术。土木工程技术优先用于缓解滑坡,生物工程作为支持基础。同时采用土木和生物工程技术的地块表现出更大的边坡稳定性和更低的脆弱性。因此,建议采用稳定边坡和加固土壤的减灾技术,有效地控制滑坡危害。为了成功地减少山体滑坡并保护脆弱社区,需要全面的政策、法律和投资。政府和非政府部门提供的技术和财政援助对于尽量减少滑坡的影响和实施最有效的滑坡控制缓解技术至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Socio-Economic Impacts of Landslides and Applied Mitigation Techniques: A Case Study in Bagnaskali, Nepal
This study aimed to estimate the socio-economic impacts of landslides and identify mitigation techniques being applied for landslide control in Bagnaskali rural municipality, Palpa. Purposive sampling was conducted to focus the research on plots with frequent landslide occurrences. Out of the 20 identified landslide-prone sites, a random sampling method was used to ensure representative data collection with a 40% sampling intensity. Data were collected through direct observation, transect walks, and household surveys conducted in areas prone to landslides. Additionally, discussions were held with key informants, the technical team, and experts in the field to validate the collected data. In Bagnaskali rural municipality in the year 2020, six households reported damage, two cases of death occurred, 24 livestock fatalities were recorded, and there was damage to cultural heritage due to landslides, resulting in social losses. Affected communities also incurred compensatory losses ranging from NRs 10 to 50 lakhs due to the destruction of water resources, road blockages, and agricultural land damage. As mitigation measures for landslides, the municipality applied civil engineering techniques such as gabion walls, masonry, culverts, check dams, and reinforced concrete (RCC), as well as bioengineering techniques including plantation, wattling, and brush-layering. Civil engineering techniques were prioritized for mitigating landslides, with bioengineering serving as a supporting base. Plots where both civil and bioengineering techniques were employed together exhibited greater slope stability and reduced vulnerability. Therefore, it is recommended to use mitigation techniques that stabilize slopes and reinforce the soil to control landslide hazards effectively. To successfully reduce landslides and protect vulnerable communities, comprehensive policies, laws, and investments are required. Technical and financial assistance from governmental and non-governmental sectors is essential to minimize the impacts of landslides and implement the most effective mitigation techniques for landslide control.
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