Possibility of Using Surface Gravity Survey to Localize Erosional Truncation on Verkhnekamsk Potassium-Magnesium Salt Deposit

Author(s):  
V.A. Voroshilov ◽  
A.A. Zhukov
2021 ◽  
pp. 304-311
Author(s):  
Vladislav Voroshilov ◽  
Alexander Zhukov ◽  
Vladimir Kostitsyn ◽  
Andey Prigara ◽  
Tsarev Roman ◽  
...  

2018 ◽  
Vol 56 (7) ◽  
pp. 719-734
Author(s):  
S. N. Shanina ◽  
A. R. Galamay ◽  
O. O. Ignatovich ◽  
N. S. Burdelnaya ◽  
O. V. Valyaeva

2018 ◽  
Vol 56 ◽  
pp. 02002
Author(s):  
Igor Sanfirov ◽  
Yuri Stepanov ◽  
Tatiana Baybakova ◽  
Alexander Taynitskiy

This article deals with a comprehensive geophysical approach intended to ensure safety of mining operations at the Verkhnekamskoe field of potassium and magnesium salts. As an example, the article presents the results of additional detailed seismic and electrical studies performed on one of the mine fields of the Upper Kama potash-magnesium salt deposit (UKPMSD) within the site designed for mining operations. Based on the obtained results the structure in the form of a “dome” was identified. According to the data of the complex interpretation, the area of an indefinite lithology (most likely, associated with the replacement of salt deposits) was identified in the upstructure part.


2018 ◽  
Author(s):  
Yang Zhanjun ◽  
Li Dechun ◽  
Li keyi ◽  
Li Zhao

2002 ◽  
Author(s):  
Jerry L. Brady ◽  
John F. Ferguson ◽  
Carlos V.L. Aiken ◽  
John E. Seibert ◽  
Tianyou Chen ◽  
...  

Author(s):  
Mikhail S. Ozornin ◽  

Introduction. Heading and winning machine system operation has been considered in the conditions of the Upper Kama (Verkhnekamskoe) potassium and magnesium salt deposit. Excavation of producing formations with the thickness of more than 4 m is carried out in two moves. The lower layer is excavated by the second move, while the area of the stope back is usually less than the cross-sectional area of the machine’s executive body. In this case, the heading and winning machine does not have a full face. Typical calculation methods contain no information for determining the operating parameters of machine systems at potash mines when tunneling with stope back partial section. Research methodology. The methodological foundations of a machine system capacity determination in the conditions of the Upper Kama potassium and magnesium salt deposit are described. The calculation of the main parameters characterizing the operation of the machine system when tunneling with stope back partial section. Results. Based on the identified dependencies, it is possible to determine the rational type of machine system equipment, the rate of hauling the machine to the face, and rational delivery distances based on equipment type and geological conditions. Summary. The proposed method of a machine system’s operating parameters determination in potash mine when tunneling with stope back partial section can be adapted and used in potash mines with various mining and geological and mining conditions to determine the capacity of machine systems.


2021 ◽  
Vol 250 ◽  
pp. 501-511
Author(s):  
Natalia Danileva ◽  
Sergei Danilev ◽  
Natalia Bolshakova

Advancement in the production of potassium fertilizers is an important strategic task of Russian agricultural industry. Given annually growing production rates, the reserves of discovered potassium-magnesium salt deposits are noticeably decreasing, which creates the need to ensure stable replenishment of the resource base through both the discovery of new deposits and the exploitation of deep-lying production horizons of the deposits that are already under development. In most cases, deposits of potassium-magnesium salts are developed by underground mining. The main problem for any salt deposit is water. Dry salt workings do not require any additional reinforcement and can easily withstand rock pressure, but with an inflow of water they begin to collapse intensively – hence, special attention is paid to mine waterproofing. Determination of spatial location, physical and mechanical properties of the aquifer and water-blocking stratum in the geological section represent an important stage in the exploration of a salt deposit. The results of these studies allow to validate an optimal system of deposit development that will minimize environmental and economic risks. On the territory of Russia, there is a deposit of potassium-magnesium salts with a unique geological structure – its production horizon lies at a considerable depth and is capped by a regional aquifer, which imposes significant limitations on the development process. To estimate parameters of the studied object, we analyzed the data from CDP seismic reflection survey and a suite of methods of radioactive and acoustic well logging, supplemented with high-frequency induction logging isoparametric sounding (VIKIZ) data. As a result of performed analysis, we identified location of the water-bearing stratum, estimated average thickness of the aquifers and possible water-blocking strata. Based on research results, we proposed methods for increasing operational reliability of the main shaft in the designed mine that will minimize the risks of water breakthrough into the mine shaft.


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