中国民航大学学报 ›› 2026, Vol. 44 ›› Issue (1): 53-59.

• 未来机场及智能装备 • 上一篇    下一篇

漠河机场跑道地基温度时空变化规律研究

  

  1. 1. 民航机场规划设计研究总院有限公司东北分公司,沈阳 110043;2. 航科院(北京)科技发展有限公司,北京 100028
  • 收稿日期:2025-04-07 修回日期:2025-07-14 出版日期:2026-02-28 发布日期:2026-03-07
  • 作者简介:吴丹泽(1985— ),男,辽宁铁岭人,高级工程师,硕士,研究方向为机场场道及岩土工程.
  • 基金资助:
    交通运输部交通运输行业重点科技项目(2021-MS1-045)

Research on the temporal and spatial variation characteristics of runway foundation temperature at Mohe Airport

  1. 1. The Northeast Branch of China A viation Airport Planning & Design Institute Co., Ltd., Shenyang 110043, China; 2. HangKe Technology Development Co., Ltd., Beijing 100028, China
  • Received:2025-04-07 Revised:2025-07-14 Online:2026-02-28 Published:2026-03-07

摘要: 多年冻土区机场建设属世界性技术难题,缺乏成熟经验且工程风险显著,亟须揭示冻土地温演化规律以指导寒区机场工程实践。本文以漠河古莲机场(简称漠河机场)17年间3次间断性地温监测数据为基础,结合地表植被剥离、施工扰动及气候变暖等多重因素,分析场地地温时空变化特征及其空间离散性。研究发现:原有多年冻土显著退化,高温冻土与深季节冻土范围扩大,地温变化呈现深度分层异质性,且同点位数据具有明显空间离散性。研究成果可为全球多年冻土及季节冻土区机场设计施工提供关键科学依据,对推动寒区重大基础设施建设具有重要理论和实践价值。

关键词: 机场工程, 地基温度, 多年冻土, 飞机跑道, 漠河机场

Abstract: Airport construction in permafrost regions is a worldwide technical challenge, lacking mature experience and in-volving significant engineering risks, thus urgently requiring the identification of the evolution characteristics ofpermafrost ground temperature to guide airport engineering practices in cold regions. This paper is based on threeintermittent ground temperature monitoring datasets collected over 17 years at Mohe Gulian Airport (referred to asMohe Airport), and analyzes the temporal and spatial variation characteristics and spatial dispersion of siteground temperatures by integrating muliple factors such as surface vegetation removal, construction disturbance,and climate warming. The study found that the original permafrost has significantly degraded, with the extents ofwam permafrost and deep seasonally frozen ground expanding; ground temperature variations exhibit depth-de-pendent stratified heterogeneity, and measurements at identical monitoring points show pronounced spatial dis-persion. The research findings provide key scientific support for airport design and construction in global per-mafrost and seasonally frozen ground regions, and hold important theoretical and practical value for advancingmajor infrastructure development in cold regions.

Key words: airport engineering, foundation temperature, permafrost, aircraft runway, Mohe Airport

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