Measurement of water content at bare soil surface with infrared thermal imaging technology

被引:6
|
作者
Cheng, Qing [1 ]
Tang, Chao-Sheng [1 ]
Lin, Zong-Ze [1 ]
Tian, Ben-Gang [1 ]
Shi, Bin [1 ]
机构
[1] Nanjing Univ, Sch Earth Sci & Engn, 163 Xianlin Ave, Nanjing, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Evaporation; Temperature; Water content; Thermal infrared imaging; TIME-DOMAIN REFLECTOMETRY; ELECTRICAL-RESISTIVITY TOMOGRAPHY; MOISTURE MEASUREMENT; EVAPORATION; CALIBRATION; BEHAVIOR; FLUXES; SENSOR; COVER; AREA;
D O I
10.1016/j.jhydrol.2022.128715
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In this study, infrared thermal imaging technology is adopted to measure water content at soil surface by cali-brating the linear relationship between water content at soil surface and interfacial temperature difference of a given soil type. The method is suitable for the soil surface which is unsaturated. First of all, the theoretical considerations of the new method are introduced. Infrared thermal imaging technology can directly measure soil surface temperature and the difference between the soil surface temperature and the ambient temperature is named as the interfacial temperature difference. For over-saturated soils, at a certain environmental condition, the interfacial temperature difference of a given soil type is a constant value. For unsaturated soils, there is a linear relationship between water content at soil surface and interfacial temperature difference. For the tested four types of soils with different textures, all the values of R2 for the linear fitting are greater than 0.9. Then, the water content at soil surface can be calculated based on the surface temperature measured by the infrared camera. Moreover, in this study, a cracked soil sample with an uneven surface water content field is tested for validating the feasibility of the proposed method. There is a good match between the data measured by the proposed method and traditional oven drying. It indicates that the proposed method can be used to obtain the distribution of water content on the soil surface and may provide a new idea for the future research on the spatio-temporal evolution characteristics of in-situ soil under climate change and provide a new choice for leakage detection of structures like dams, tunnels, etc.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] Method to make use of thermal infrared temperature and NDVI measurements to infer surface soil water content and fractional vegetation cover
    Carlson, Toby N.
    Gillies, Robert R.
    Perry, Eileen M.
    Remote Sensing Reviews, 1994, 9 (1-2):
  • [22] Surface soil water content estimation based on Thermal Inertia and Bayesian smoothing
    Addesso, Paolo
    Maltese, Antonino
    Garella, Riccardo
    Capodici, Fulvio
    D'Urso, Guido
    Longo, Maurizio
    Restaino, Rocco
    Vivone, Gemine
    REMOTE SENSING FOR AGRICULTURE, ECOSYSTEMS, AND HYDROLOGY XVI, 2014, 9239
  • [23] Critical analysis of thermal inertia approaches for surface soil water content retrieval
    Maltese, A.
    Bates, P. D.
    Capodici, F.
    Cannarozzo, M.
    Ciraolo, G.
    La Loggia, G.
    HYDROLOGICAL SCIENCES JOURNAL-JOURNAL DES SCIENCES HYDROLOGIQUES, 2013, 58 (05): : 1144 - 1161
  • [24] Thermal Inertia Modeling for Soil Surface Water Content Estimation: A Laboratory Experiment
    Minacapilli, M.
    Cammalleri, C.
    Ciraolo, G.
    D'Asaro, F.
    Iovino, M.
    Maltese, A.
    SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 2012, 76 (01) : 92 - 100
  • [25] Infrared Thermal Imaging for Diabetes Detection and Measurement
    Selvarani, A.
    Suresh, G. R.
    JOURNAL OF MEDICAL SYSTEMS, 2019, 43 (02)
  • [26] COMPARISON OF ACTIVE MICROWAVE SOIL-WATER CONTENT WITH INFRARED SURFACE TEMPERATURES AND SURFACE MOISTURE AVAILABILITY
    PERRY, EM
    CARLSON, TN
    WATER RESOURCES RESEARCH, 1988, 24 (10) : 1818 - 1824
  • [27] Infrared Thermal Imaging for Diabetes Detection and Measurement
    A. Selvarani
    G. R. Suresh
    Journal of Medical Systems, 2019, 43
  • [28] Determination of thermal diffusivity of soil using infrared thermal imaging
    Kodikara, Jayantha
    Rajeev, Pathmanathan
    Rhoden, Nicholas. J.
    CANADIAN GEOTECHNICAL JOURNAL, 2011, 48 (08) : 1295 - 1302
  • [29] Three-Band Infrared Thermal Imaging Temperature Measurement Method for Sea Surface
    Wang Ping
    Yang Li
    Kou Wei
    Jin Fangyuan
    Du Yongcheng
    LASER & OPTOELECTRONICS PROGRESS, 2018, 55 (06)
  • [30] Measurement of evaporation from bare soil and a new approach to surface resistance
    Aluwihare, S
    Watanabe, K
    DEVELOPMENT, PLANNING AND MANAGEMENT OF SURFACE AND GROUND WATER RESOURCES, THEME A, PROCEEDINGS, 2001, : 457 - 464