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Information Journal Paper

Title

THE ROLE OF FRACTURE INTERSECTIONS IN WATER ESCAPING UNDER KHALIFAN DAM FOUNDATION AND MEASURES TO STOP IT

Pages

  303-315

Abstract

 The future site of KHALIFAN DAM is suggested to be located in the southern part of Naghadeh on Cretaceous karstic limestone. Analysis of 512 fracture plains resulted in one bedding surface, two sets of FRACTURE INTERSECTIONs, one set of shear fractures and one set of fault controlled fractures existing in the massive rocks. The two sets of FRACTURE INTERSECTIONs with coordinates, Dr. 160/60, Dr. 330/60 are not tectonic controlled, but are the result of the weight of upper layers. These fractures are created by tensional forces and have the largest openings. Having the most karstic activities, they indicate themselves as best water ways. 3D modeling of geotechnical parameters, like lougen & RQD, together with study of weathering effects and filling materials of the FRACTURE INTERSECTIONs illustrate that theconnection of these fractures with bedding surfaces create good ways for water flow. In this way the reservoir's water will be infiltrated in bedding surfaces, which have an east-west direction, and from there flow to the intersection fractures and finally appear as springs along the downstream of the river.

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  • Cite

    APA: Copy

    KANGI, A., RAHNAMA RAD, J., & DORZADEH, H.. (2011). THE ROLE OF FRACTURE INTERSECTIONS IN WATER ESCAPING UNDER KHALIFAN DAM FOUNDATION AND MEASURES TO STOP IT. JOURNAL OF GEOTECHNICAL GEOLOGY (APPLIED GEOLOGY), 6(4), 303-315. SID. https://sid.ir/paper/127020/en

    Vancouver: Copy

    KANGI A., RAHNAMA RAD J., DORZADEH H.. THE ROLE OF FRACTURE INTERSECTIONS IN WATER ESCAPING UNDER KHALIFAN DAM FOUNDATION AND MEASURES TO STOP IT. JOURNAL OF GEOTECHNICAL GEOLOGY (APPLIED GEOLOGY)[Internet]. 2011;6(4):303-315. Available from: https://sid.ir/paper/127020/en

    IEEE: Copy

    A. KANGI, J. RAHNAMA RAD, and H. DORZADEH, “THE ROLE OF FRACTURE INTERSECTIONS IN WATER ESCAPING UNDER KHALIFAN DAM FOUNDATION AND MEASURES TO STOP IT,” JOURNAL OF GEOTECHNICAL GEOLOGY (APPLIED GEOLOGY), vol. 6, no. 4, pp. 303–315, 2011, [Online]. Available: https://sid.ir/paper/127020/en

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