上海大学学报(自然科学版) ›› 2024, Vol. 30 ›› Issue (6): 1018-1030.doi: 10.12066/j.issn.1007-2861.2597

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云冈石窟风化砂岩内部水气扩散和凝结规律

黄继忠1, 2, 3,张红芳1, 2, 3,程 远2, 3,郑 伊2,胡金帅1, 2, 3,张 悦2, 3   

  1. 1. 上海大学 力学与工程科学学院, 上海 200444; 2. 上海大学 文化遗产保护基础科学研究院, 上海 200444; 3. 硅酸盐质文物保护教育部重点实验室 (上海大学), 上海 200444
  • 收稿日期:2024-03-15 出版日期:2024-12-28 发布日期:2025-01-02
  • 通讯作者: 程 远 (1994—), 女, 博士, 研究方向为多源传感器数据处理与石质文物风化机理. E-mail:chengyuan@shu.edu.cn
  • 基金资助:
    山西省科技重大专项计划 “揭榜挂帅” 资助项目 (202201150501024); 山西省文物科研课题重点资助项目 (2024KT19); 硅酸盐质文物保护教育部重点实验室 (上海大学) 课题资助项目 (SCRC2024ZZ02ZD)

Diffusion and condensation of water vapor in sandstone of varying weathering degrees in Yungang Grottoes

HUANG Jizhong1, 2, 3 , ZHANG Hongfang1, 2, 3 , CHENG Yuan2, 3 , ZHENG Yi2 , HU Jinshuai1, 2, 3 , ZHANG Yue2, 3   

  1. (1. School of Mechanics and Engineering Science, Shanghai University, Shanghai 200444, China; 2. Institute for the Conservation of Cultural Heritage, Shanghai University, Shanghai 200444, China; 3. Key Laboratory of Silicate Cultural Relics Conservation (Shanghai University), Ministry of Education, Shanghai 200444, China
  • Received:2024-03-15 Online:2024-12-28 Published:2025-01-02

摘要: 以云冈石窟砂岩为研究对象, 采用自主设计的试验装置, 基于修正的露点温度计算公 式和实测的温湿度及电阻变化数据, 构建了不同风化程度砂岩内部水气扩散和凝结过程的定 量评价方法. 结果表明: 风化砂岩具有更高的孔隙率和渗透率, 更有利于水气扩散和凝结; 在 水气扩散阶段, 风化程度越高, 水气向内部扩散速度越快, 内部相对湿度越大; 在水气凝结阶 段, 风化程度越高, 内部凝结水形成位置越深, 凝结时间越短; 水气在砂岩内部的凝结深度与其 暴露在高湿环境中的时长呈正相关. 研究成果有助于揭示风化砂岩内部的水气扩散和凝结规 律, 为凝结水的治理提供科学依据.

关键词: 风化砂岩, 石质文物, 水气扩散, 水气凝结, 露点温度

Abstract: This study focused on sandstones from the Yungang Grottoes under different degrees of weathering and employed a specially designed experimental setup. Using a modified dew point temperature calculation formula, combined with measured temperature, humidity and electrical resistance data, a quantitative evaluation method was developed for water vapor diffusion and condensation processes in sandstone under varying degrees of weathering. Results showed that weathered sandstone had higher porosity and permeability, facilitating water vapor diffusion and condensation. During the water vapor diffusion stage, higher degrees of weathering were correlated with faster inward diffusion rates and greater internal relative humidity. During the condensation stage, as the degree of sandstone weathering increased, the location where condensation water formed became deeper and occurred earlier. In addition, the condensation depth in the rock was positively correlated with the duration of exposure to high-humidity environments. These findings can help in identifying the patterns of water vapor diffusion and condensation in weathered sandstone, thus providing a scientific basis for dealing with condensation issues at stone cultural heritage sites.

Key words: weathered sandstone, stone culture heritage, water vapor diffusion, water vapor condensation, dew point temperature

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