Abbaspour, S., Daavi, H., & Feli, J. (2008). Operational method of constructed canals of irrigation and dranage network in gypsum soils. In 1 Th National Seminar of Geotechnical Problems of Irrigation and Drainage Networks. (In Persian)
Ahmad, S. M., Wang, T., Khan, S., Azeem, M. W., & Fu, L. (2025). Rapid karstification process with evaporite-driven sinkholes in Southern Kohat Basin, NW Pakistan. Npj Natural Hazards, 2 (1), 11.
Ahmadi, R., & Fathianpoor, N. (2016). Geotechnical investigation of 33 pole bridge structure in Isfahan using Ground- Penetrating Radar method. Scientific Quarterly Journal of Iranian Association of Engineering Geology. 9 (1 & 2), 85-102. (In Persian)
Al-Khersan, E. H., Hijab, B. R., & Al-Khazali, I. A. (2021). Integrated ground penetrating radar and electrical resistivity study to explore such Basrah low resistivity soils for engineering purposes, Southern Iraq. The Iraqi Geological Journal, 54(2E), 104-121.
Al-Saoudi, N. K., Al-Khafaji, A. N., & Al-Mosawi, M. J. (2013). Challenging problems of gypseous soils in Iraq. In Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering. Pp, 479-482. Paris: Presses des Ponts.
Amanatidou, E., Vargemezis, G., & Tsourlos, P. (2022). Combined application of seismic and electrical geophysical methods for karst cavities detection: A case study at the campus of the new University of Western Macedonia, Kozani, Greece. Journal of Applied Geophysics, 196, 104499.
Amin, P., Akhavan Ghalibaf, M., Ruhi Mermut, A., & Delavarkhalafi, A. (2023). Investigating and processing of ground penetrating radar (GPR) sections in order to identify high-risk areas of subsidence and sinkholes in the alluvial sedimentary plain of Abarkooh, Yazd. Iranian Journal of Geophysics. 17(2), 127-138. (In Persian)
Amiri Bakhtiar, H., & Noorani Nejad, K. (2014). Revision of Zagros Stratigraphy: Gachsaran Formations, journal of Exploration & Production Oil & Gas. 111, 40-45. (In Persian)
Annan, A. P., & Cosway, S. W. (1994). GPR frequency selection. In Fifth International Conferention on Ground Penetrating Radar (pp. cp-300). European Association of Geoscientists & Engineers.
ASTM D1067-16. (2025). Standard Test Methods for Acidity or Alkalinity of Water, American Society for Testing and Materials
ASTM D1126-17. (2025). Standard Test Method for Hardness in Water, American Society for Testing and Materials
ASTM D1426-15. (2021)., Standard Test Methods for Ammonia Nitrogen in Water, American Society for Testing and Materials
ASTM D3561-16. (2021). Standard Test Method for Lithium, Potassium, and Sodium Ions in Brackish Water, Seawater, and Brines by Atomic Absorption Spectrophotometry, American Society for Testing and Materials
ASTM D511-14. (2021). Standard Test Methods for Calcium and Magnesium in Water, American Society for Testing and Materials
ASTM D512-23. (2023). Standard Test Methods for Chloride Ion in Water, American Society for Testing and Materials.
ASTM D516-16. (2016). Standard Test Method for Sulfate Ion in Water, American Society for Testing and Materials
Baghdardokht, Z. (2005). Study of the solubility of karst formations at the construction site of Tang Shemiran Dam, Ilam, Master's thesis in Engineering Geology, Bo Ali Sina University, Hamadan. (In Persian)
Barba, L., Blancas, J., Ortiz, A., & Ligorred, J. (2009). GPR detection of karst and archaeological targets below the historical centre of Merida, Yucatán, Mexico. Studia Universitatis Babeş-Bolyai, Geologia, 54 (2), 27-31
Bazargan, J., & Moazzami, A. (2021). Comparison of constant dissolution coefficient of gypsum and anhydrite materials in surface flows using the results of laboratory models. Journal of Structural and Construction Engineering, 8(8). 144-154. (In Persian)
Brune, G. (1965). Anhydrite and gypsum problems in engineering geology. Engineering Geology, 2(1), 26-38.
Cailleux, J., & Toulemont, M. (1982). La reconnaissance des cavites souterraines par methodes diagraphiques. Bulletin of Engineering Geology & the Environment, 26 (1), 33-42.
Caselle, C., Bonetto, S., Comina, C., & Stocco, S. (2020). GPR surveys for the prevention of karst risk in underground gypsum quarries. Tunnelling and Underground Space Technology, 95, 103-137.
Cist, D., & Schutz, A. (2005). A Low-Cost GPR Gas Pipe & Leak Detector. Geophysical Survey Systems, Inc. (US).
Cooper, A. H., & Gutiérrez, F. (2013). Dealing with gypsum karst problems: hazards, environmental issues, and planning, In book: Treatise on Geomorphology Volume 6: Karst Geomorphology,Pp, 451-462. Elsevier.
Dafalla, M., & Alfouzan, F. (2023). Electrical resistivity tomography of a gypsiferous subsurface soil: Geotechnical detection of a geoenvironmental phenomenon. Journal of King Saud University-Science, 35(4), 102-595.
Descloitres, M., Guérin, R., Ramirez, E., Gallairet, R., Ribstein, P., & Valla, F. (1999). Détermination de l'épaisseur des glaciers de Sarenne (Alpes) et de Chacaltaya (Bolivie) par prospection radar au sol à 50 MHz. La Houille Blanche, 85(5), 29-33.
Dreybrodt, W. (2004). Erosion Rates: Theoretical Models. In: Gunn J (ed.) Encyclopedia of Caves and Karst Science. Pp, 323-325. New York: Fitzroy.
Entezari, M., Gholamhaydari, H. & Karimi, H. (2022). Evaluation of growth in gypsum sinkholes and resulting hazards. Journal of Geography and Planning. 26(80), 43-27. (In Persian)
Estrada-Medina, H., Tuttle, W., Graham, R. C., Allen, M. F., & Jiménez-Osornio, J. J. (2010). Identification of underground karst features using ground-penetrating radar in Northern Yucatán, México. Vadose Zone Journal, 9(3), 653-661.
Eyuboglu, S., Mahdi, H., Al-Shukri, H., & Rock, L. (2003). Detection of water leaks using ground penetrating radar. In Proceedings of the Third International Conference on Applied Geophysics, Pp, 8-12. Orlando-FL.
Fakhri, B., Sadr Karimi, J., & Kiyani, M. (2008). Gypsum dissolution effects on the performance of a large dam. International Journal of Engineering, 21(2), 143-150.
Fenning, P. J., & Hasan, S. (1995). Pipeline route investigations using geophysical techniques. Geological Society, London, Engineering Geology Special Publications, 10(1), 229-235.
Ford, D., Williams, P. D. (2007). Karst hydrogeology and geomorphology. John Wiley & Sons.
Galve, J. P., Gutiérrez, F., Lucha, P., Bonachea, J., Remondo, J., Cendrero, A., & Sánchez, J. A. (2009). Sinkholes in the salt-bearing evaporite karst of the Ebro River valley upstream of Zaragoza city (NE Spain): geomorphological mapping and analysis as a basis for risk management. Geomorphology, 108(3-4), 145-158.
Ghazali, R., Rasam, A. R. A., Razali, M. H., Razali, R., & Latif, Z. A. (2019). Estimation of different subsurface materials depth using Ground Penetrating Radar. International Journal of Advanced Trends in Computer Science and Engineering, 8(1.3), 363-370.
Ghobadi, M. H., & Mousavi, S. (2007). Gypsum solubility and its role in dam sealing operations, 3rd Iranian Rock Mechanics Conference. (In Persian)
Giannopoulos, A. (2005). Modelling ground penetrating radar by GprMax. Construction and building materials, 19(10), 755-762.
Gołębiowski, T., & Jarosińska, E. (2019). Application of GPR and ERT methods for recognizing of gypsum deposits in urban areas. Acta Geophysica, 67(6), 2015-2030.
Gracia, A., Torrijo, F. J., Garzón-Roca, J., & Pérez-Picallo, M. (2024). Identification and Mitigation of Subsidence in Karstic Areas with Sustainable Geotechnical Structures: A Case Study in Gallur (Spain). Sustainability, 16(9), 36-43.
Guo, S., Yan, C., Yu, L., Liu, Y., Zhou, Y., & Shi, X. (2020). Characteristics, controlling factors, and formation of shallow buried karst in Eastern China: A case study in the Wuxi metro areas, Jiangsu Province. Environmental & Engineering Geoscience, 26(2), 257-269.
Gutierrez, F., & Cooper, A. H. (2013). Surface morphology of gypsum karst, Treatise on Geomorphology, Academic Press, SanDiego, CA, Karst, Geomorphology, 6, 425-437.
Gutierrez, F., Calaforra, J.M., Cardona, F., Ortı, F., Duran, J.J., & Garay, P. (2008b). Geological and environmental implications of evaporite karst in Spain, Environmental Geology, 53, 951–965.
Gutierrez, F., Cooper, A. h., & Johnson, K. S. (2008-a). Identification, prediction, and mitigation of sinkhole hazards in evaporate karst areas. Environmental Geology 53, 1007-1022.
Gutiérrez, F., Galve, J. P., Guerrero, J., Lucha, P., Cendrero, A., Remondo, J., & Sánchez, J. A. (2007). The origin, typology, spatial distribution and detrimental effects of the sinkholes developed in the alluvial evaporite karst of the Ebro River valley downstream of Zaragoza city (NE Spain). Earth Surface Processes and Landforms: The Journal of the British Geomorphological Research Group, 32(6), 912-928.
Gutierrez, F., Guerrero, J., & Lucha, P. (2008c). A genetic classification of sinkholes illustrated from evaporite paleokarst exposures in Spain, Environmental Geology, 53, 993–1006.
Hager, J., & Carnevale, M. (2006). The Application of Low Frequency GPR to Stratigraphic In-vestigations. In Proceedings of the 11th International Conference on Ground Penetrating Radar. HagerGeoScience, Inc.
Hashemifard, A, Kordvani, P, & Asadian, F. (2018). Study of the change in the form of the Gachsaran Formation in the area of the Upper Gotvand Dam using radar remote sensing data, Quarterly Journal of Physical Geography. 11(40), 49-62. (In Persian)
Hendrickx, J. M., Hong, S. H., Miller, T., Borchers, B., & Rhebergen, J. B. (2003). Soil effects on GPR detection of buried non-metallic mines. In Ground Penetrating Radar in sediments, 211, 191-198. Geological Society, London.
Herman, H. (1997). Robotic Subsurface Mapping Using Ground Penetrating Radar.PhD dissertation. Carnegie Mellon University.
James, A. N. (1992). Soluble material in civil engineering. Ellis Horwood Ltd, England, 433p.
Jassim, S. Z., Jibril, A. S., & Numan, N. M. (1997). Gypsum karstification in the middle Miocene Fatha Formation, Mosul area, northern Iraq. Geomorphology, 18(2), 137-149.
Jeannin, M., Garambois, S., Grégoire, C., & Jongmans, D. (2006). Multiconfiguration GPR measurements for geometric fracture characterization in limestone cliffs (Alps). Geophysics, 71(3), B85-B92.
Johnson, K. S. (1996). Gypsum karst in the United States. International Journal of Speleology, 25(3-4), 183-193.
Johnson, K. S. (2008). Gypsum-karst problems in constructing dams in the USA. Environmental geology, 53, 945-950.
Jol, H. M. (1995). Ground penetrating radar antennae frequencies and transmitter powers compared for penetration depth, resolution and reflection continuity1. Geophysical prospecting, 43(5), 693-709.
Jol, H. M. (2009). Ground Penetrating Radar: Theory and Applications, Oxford, Elsevier Science, 508p.
Jowkar, M. H., khamechian, M. A., & Nikudel, M. (2019). Evaluating Erodibility of gupsiferous soils of Masjed Soleyman petrochemical plant site with emphasiss on dispersive and solubility. Scientific Quarterly Journal of Iranian Association of Engineering Geology, 12(1), 75-92. (In Persian)
Kalenda, P., & Tengler, R. (2022). A principal breakthrough in georadar technology – ROTEG. Geodynamics, 2, 75–90
Kalenda, P., Tengler, R., & Geršl, M. (2020). Test of the maximum penetration depth of the Roteg GPR above the Hranice Abyss and in the Moravian Karst. Geological research (in Moravia and Silesia), 27(1-2), 98-105.
Kamkar Rouhani, A., Eshaghi, E., & Arab Amiri, A. (2013). Processing and interpretation of ground-penetrating radar (GPR) data for detection of cavities, investigation of bedding and grain sizes and also estimation of clay content in shallow subsurface sediments. Journal of the Earth and Space Physics. 38(4), 155-173. (In Persian)
Kareem, H. A., & Abd, N. A. (2024). Detection of subsurface archaeological features using the GPR method with a 250 MHz antenna in Borsippa site, Babylon, Iraq. Iraqi Journal of Science, 3788-3795.
Karimi, H. (2011). Formation mechanism of Jaber plain's dolines, south east of Ilam province. Advanced Applied Geology. 1(2), 125-139. (In Persian)
Kiani, M., Sadrekarimi, J., & Fakhri, B. (2008). Gypsum dissolution effects on the performance of a large dam”, International Journal of Engineering, 21(2), 143-150.
Kifae, A. A. (2010). Chemical and physical effects on engineering properties of gypseous subgrade soil. Al-Qadisia Journal for Engineering Sciences, 3 (3), 1-18.
Kim, Y. T., Kim, B., Kim, J. W., Park, H. M., & Yoon, J. S. (2016). Determining the optimal frequency of ground penetrating radar for detecting voids in pavements. International journal of highway engineering, 18(2), 37-42.
Klimchouk, A. (1996). The dissolution and conversion of gypsum and anhydrite. International Journal of Speleology, 25 (3), 21-36.
Klimchouk, A., Forti, P., & Cooper, A. (1996). Gypsum karst of the world: a brief overview. International Journal of Speleology, 25 (3-4), 159-181.
Knödel, K., Lange, G., & Voigt, H. J. (2007). Environmental Geology. handbook of field methods and case studies. Berlin: Springer.
Koh, G., & Wakeley, L. D. (2011). Impact of gypsum on electromagnetic properties of desert soils. IEEE Geoscience and Remote Sensing Letters, 8(6), 1051-1054.
Koutepov, V. M., Mironov, O. K., & Tolmachev, V. V. (2008). Assessment of suffosion-related hazards in karst areas using GIS technology. Environmental Geology, 54(5), 957-962.
Li, S., Ma, C., Liu, R., Chen, M., Yan, J., Wang, Z., Duan, S., & Zhang, H. (2021). Super-absorbent swellable polymer as grouting material for treatment of karst water inrush. International Journal of Mining Science and Technology, 31(5), 753-763.
Liu, D., Zhou, M., Wang, X., Shi, Z., Sacchi, M. D., Chen, W., Liu, Z., & Wang, X. (2024). Enhancing ground-penetrating radar (GPR) data resolution through weakly supervised learning. IEEE Transactions on Geoscience and Remote Sensing, 62, 1-13.
Łój, M., Gołębiowski, T., & Porzucek, S. (2014). Geophysical surveys and modelling for recognizing of gypsum karst. Geoinformatica Polonica, 13 (1), 83-97.
Lualdi, M., & Zanzi, L. (2004). 2D and 3D experiments to explore the potential benefit of GPR investigations in planning the mining activity of a limestone quarry. In Proceedings of the Tenth International Conference on Grounds Penetrating Radar. Pp, 613-616.
Madhoushi, M., & Hatefnia, H. (2022). Evaluation of the internal defaults and decay in old timber in building using non-destructive ground penetration radar (GPR) method. Iranian Journal of Wood and Paper Science Research. 37(3), 217-228. (In Persian)
Makvendi, A., & Etezadi, P. (2011). Application of geosynthetic insulation (HDPE geomembranes for covering irrigation and drainage canals (Shahid Chamran Canal). 1st International and 3rd National Conference on Dams and hydropower. (In Persian)
Maleki, A., & Ovaisy, M. (2012). Recognizing Fault Structures and Studying the Evolution of Karst Sources Using Ground Penetrating Radar (Case Study: Kermanshah Province). Geography and Environmental Sustainability. 2(2), 1-10. (In Persian).
Matthews, M. C., Clayton, C. R. I., & Rigby-Jones, J. (2000). Locating dissolution features in the Chalk. Quarterly Journal of Engineering Geology and Hydrogeology, 33(2), 125-140.
Maximovitch, G. A. (1962). Karst of gypsum and anhydrite of the globe (geotectonical relations, distribution, and major peculiarities). Obshchiye voprosi karstovedemiya: Moscow, Pp,108-113.
Milanovic, P. T. (1981). Karst hydrology. In Karst hydrology. Water Resources Publications.
Ministry of Roads and Urban Development of Iran. (2013). National Building Regulations of Iran, Topic 9, Design and Construction of Reinforced Concrete Buildings, National Building Regulations Office, Fourth Edition, 373 pp. (In Persian)
Ministry of Roads and Urban Development of Iran. (2019). National Building Regulations of Iran, Topic 9, Design and Construction of Reinforced Concrete Buildings, National Building Regulations Office, Fifth Edition, 650 pp. (In Persian)
Mohamadi Vizheh, M., & Kamkar Rouhani, A. (2011). Investigation of Near Surface Buried Structures Using GPR and Resistivity Methods: A Case Study. Scientific Quarterly Journal of Geosciences. 20(80), 163-170. (In Persian)
Mohammadian, M. (2012). Study of engineering geological properties of Gachsaran Formation with emphasis on solubility and swelling in Ramhormoz region, Master's thesis in Engineering Geology, Bu-Ali Sina University, Hamadan (In Persian).
Mohammadian, M., Ghafori, M., & Ghobadi, M. H. (2015). A Study of the Gypsum Solubility of the Gachsaran Formation in East of Khuzestan Province and its Environmental Impacts. Advanced Environmental Sciences. 13(3), 11-24. (In Persian).
Mousavi, S. S. (2006). Study of rock durability and gypsum solubility for sealing the Khairabad Dam site in eastern Behbahan, Master's thesis in Engineering Geology, Bo Ali Sina University, Hamadan (In Persian).
Naseri, H. R., & Nikghojagh, Y. (2012). The role of gypsum karst in contaminant transportation from Agh Darreh tailing dam in Iran. Journal of environment studies, 38(1),41-48.
Nobes, D. C., & Deng, J. (2018). Ground penetrating radar resolution in archaeological geophysics. In Archaeogeophysics: State of the Art and Case Studies (Pp. 183-204). Cham: Springer International Publishing.
Özel, S., & Darıcı, N. (2020). Environmental hazard analysis of a gypsum karst depression area with geophysical methods: a case study in Sivas (Turkey). Environmental Earth Sciences, 79(5), 1-14.
Parhizkar, M. R. (2007). Investigation of engineering geological hazards in the area of Tang Sorkh Dam, Shiraz (with a special focus on gypsum solubility), Master's thesis in Engineering Geology, Tarbiat Modares University. (In Persian)
Patterson, D., Davey, J. C., Cooper, A. H., & Ferris, J. K. (1995). The application of microgravity geophysics in a phased investigation of dissolution subsidence at Ripon, Yorkshire. Quarterly Journal of Engineering Geology, 28(1), 83-94.
Pipan, M. I. C. H. E. L. E., Forte, E., Guangyou, F., & Finetti, I. (2003). High resolution GPR imaging and joint characterization in limestone. Near Surface Geophysics, 1(1), 39-55.
Pourmehr, B., & Dargahi, J. (2002). Channel Dredging to Deal with Problematic Soil, Case Study: Khodaafrin Canal. 2nd Irrigation and Drainage Network Management National Conference, Ahvaz. (In Persian)
Prokhorenko, V., Ivashchuk, V., Stefanyshyn, I., Musiyachenko, S., Korsun, S., & Dykovska, O. (2009). Ground Penetrating Radar Exploration of Recently Discovered “Mushkarova Yama” Gypsum Cave (Western Ukraine), Speleology and Karstology, 3, 70–75.
Rahimi, H., & Yoosefi, A. (1995). Failure of underground water storage at Hengam Island due to being founded on salt Dome. Technical Report, Hormozgan Regional Water Board, Iran. (In Persian)
Ransome, F. L. (1928). Geology of the St. Francis Dam Site: Economic Geology, 23(3), 245–278
Rashydian, P., Keymanesh, R. K., & Ayoubinejad, J. (2023). Evaluation ability Ground Penetration Radar (GPR) in Determining Tensile Strength of The Applied Asphalt Layer. Journal of Transportation Research. 20(4), 143-154. (In Persian)
Reuter, F., & Tolmačëv, V. V. (1990). Bauen und bergbau in senkungs-und erdfallgebieten: eine ingenieurgeologie des karstes (Vol. 28). Walter de Gruyter GmbH & Co KG.
Safari, A., Ghanavati, E. Z., Alijani, F., & Mohamadi, Z. (2018). Overview of karst landforms characteristics in the gypsum layers. Quantitative Geomorphological Research, 4(4), 17-39
Sari, M. S., & Bektaş, Ö. B. (2015). Investigating the geophysical characteristics of gypsum through GPR. In 8th Congress of the Balkan Geophysical Society, European Association of Geoscientists & Engineers.
Smith, D. G., & Jol, H. M. (1992). Ground-penetrating radar investigation of a Lake Bonneville deita, Provo level, Brigham City, Utah. Geology, 20(12), 1083-1086.
Smith, D. G., & Jol, H. M. (1995). Ground penetrating radar: antenna frequencies and maximum probable depths of penetration in Quaternary sediments. Journal of Applied Geophysics, 33(1-3), 93-100.
Soldovieri, F., Crocco, L., Brancaccio, A., Solimene, R., & Persico, R. (2011). Applications of ground penetrating radar and microwave tomography in water monitoring and management. International Water Technology Journal, IWTJ, 1(1), 1-9.
Solis, R., & Zhang, J. (2008). Gypsiferous Soils: An Engineering Problem." Sinkholes and the engineering and the invironmental impacts of karst, Pp, 742-748.
STN EN 206-1 (Slovak Institute for Technical Normalization). (2002), Concrete. Part 1: specification, performance, production and conformity. Slovak Institute for Technical Normalization, Bratislava, Publication No. 85349:72
Sucre, E. B., Tuttle, J. W., & Fox, T. R. (2011). The use of ground-penetrating radar to accurately estimate soil depth in rocky forest soils. Forest Science, 57(1), 59-66.
Tavosi, N., Farrokhnia, A., & Hoshyaripour, F. (2018). Investigation of the effect of Gachsaran soluble formation on the amount of dissolved salts in the Parsian Dam, Eighth International Conference on Sustainable Development, Urban Development and Reconstruction papers. (In Persian)
Tolmachev, V., Ilyin, A., Gantov, B., Leonenko, M., Khomenko, V., & Savarensky, I. (2003). The main results of engineering karstology research conducted in Dzerzhinsk, Russia (1952–2002). In Sinkholes and the Engineering and Environmental Impacts of Karst (pp, 502-518).
Torabi, K, M. (2010). Study of the solubility of gypsum in the Gachsaran Formation at the Chamshir Dam site, Master's thesis in Engineering Geology, Bu-Ali Sina University, Hamadan. (In Persian)
Williams, P. (2004). Dolines. In: Gunn, J. (Ed.), Encyclopedia of Caves and Karst Science, Fitzroy Dearborn, New York, NY, Pp, 304–310.
Wu, Y., Han, C., Huang, Y., Zhang, W., Luo, M., Xu, P., & Liu, Q. (2024). Study on the Behavior and State of Viscous Fractured Leakage Bridging and Plugging Slurry during the Pump-In and Pressurization Process. Processes, 12(203), 1-18.
Wunderlich, T., & Rabbel, W. (2013). Absorption and frequency shift of GPR signals in sandy and silty soils: empirical relations between quality factor Q, complex permittivity and clay and water contents. Near Surface Geophysics, 11(2), 117-128.
Yilmaz, I. (2001). Gypsum/Anhydrite: Some Engineering Problems. Bulletion of Engineering Geology and the Environment, 59, 227-230
Zamin Physic Pooya Company. (2015). Soil Investigation of MIS Fertilizer Project. Final Soil Investigation Report. 145 page
Zhai, M., & Bai, H. (2022). Precise application of grouting technology in underground coal mining: water inrush risk of floor elimination. Environmental Science and Pollution Research, 30(9), 24361-24376.
Zhai, M., Ma, D., & Bai, H. (2022). Diffusion mechanism of slurry during grouting in a fractured aquifer: a case study in Chensilou Coal Mine, China. Mathematics, 10(1345), 1-13.
Zhang, W., Wu, F., Han, C., Li, X., Peng, Z., Ren, Q., Yang, F., & Zhang, D. (2022). Criterion of grouting pressure in regional advance grouting treatment to prevent water disaster from karst aquifers in coal seam floors. ACS omega, 7(33), 29274-29286.
Zhang, Y., Wang, S., Zhang, B., Hou, D., Li, H., Li, L., Wang, J., & Lin, C. (2020). A preliminary investigation of the properties of potassium magnesium phosphate cement-based grouts mixed with fly ash, water glass and bentonite. Construction and Building Materials, 237(2), 117501.
Zhou, H., & Sato, M. (2001). Archaeological investigation in Sendai Castle using ground‐penetrating radar. Archaeological Prospection, 8(1), 1-11.