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祁连山国家公园交通线路路域生态质量差异性研究

王花兰 沈铚诚 王卓雅 沈志源

干旱区资源与环境2026,Vol.40Issue(4):142-154,13.
干旱区资源与环境2026,Vol.40Issue(4):142-154,13.DOI:10.13448/j.cnki.jalre.2026.068

祁连山国家公园交通线路路域生态质量差异性研究

Differences in ecological quality along road corridors in Qilian Mountain National Park:Case study of G227 highway and Lanzhou-Xinjiang high-speed railway

王花兰 1沈铚诚 1王卓雅 1沈志源1

作者信息

  • 1. 兰州交通大学交通运输学院,兰州 730070
  • 折叠

摘要

Abstract

Quantifying disturbances from transportation infrastructure in ecologically sensitive areas remains necessary.This study targets the G227 highway and the Lanzhou-Xinjiang high-speed railway(Lan-Xin HSR)within Qilian Mountain National Park.An autoencoder-based remote sensing ecological index(AE-RSEI)was constructed by integrating multi-source imagery from 2015-2024,and ecological quality dynamics were compared within 2,000m buffers along both corridors.GeoDetector was employed to identify drivers of inter-corridor differences.Results indicate a clear distance-decay pattern of disturbance,with 1,250m identified as a significant spatial threshold.Ecological responses differ between the two corridor types:along the G227 highway,ecological quality is improved overall but AE-RSEI values remain lower than those along the Lan-Xin HSR.The highway exhibits a broader and more persistent disturbance footprint,whereas the ecological impacts from HSR are spatially concentrated and less variable.These findings reveal contrasted impact intensity and evolutionary pathways between highways and railways in sensitive landscapes,and provide an evidence base for ecological assessment and regulation of similar projects.Priority should be given to closed,access-controlled rail corridors when planning infrastructure in such areas to reduce ecological disturbance.

关键词

交通工程/遥感生态指数/交通线路路域/自编码器/地理探测器

Key words

transportation engineering/remote sensing ecological index(RSEI)/transportation corridor/auto encoder/GeoDetector

分类

管理科学

引用本文复制引用

王花兰,沈铚诚,王卓雅,沈志源..祁连山国家公园交通线路路域生态质量差异性研究[J].干旱区资源与环境,2026,40(4):142-154,13.

基金项目

甘肃省重点研发计划(23YFFA0058) (23YFFA0058)

甘肃省科技重大专项(25ZDFA010)资助. (25ZDFA010)

干旱区资源与环境

OACHSSCD

1003-7578

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