Research of the interaction between a Portland cement slurry and a stone with the model of highly mineralized reservoir water from oil and gas fields in Eastern Siberia

Author(s):  
I.I. Beley ◽  
◽  
E.B. Tsypkin ◽  
A.S. Korostelev ◽  
D.V. Antonenko ◽  
...  
2021 ◽  
Vol 881 ◽  
pp. 33-37
Author(s):  
Wei Na Di

The application of nanomaterials in oil and gas fields development has solved many problems and pushed forward the development of petroleum engineering technology. Nanomaterials have also been used in wellbore fluids. Nanomaterials with special properties can play an important role in improving the strength and flexibility of mud cake, reducing friction between the drill string and wellbore and maintaining wellbore stability. Adding nanomaterials into the cement slurry can eliminate gas channeling through excellent zonal isolation and improve the cementing strength of cement stone, thereby facilitating the protection and discovery of reservoirs and enhancing the oil and gas recovery. This paper tracks the application progress of nanomaterials in wellbore fluids in oil and gas fields in recent years, including drilling fluids, cement slurries. Through the tracking and analysis of this paper, it is concluded that the applications of nanomaterials in wellbore fluids in oil and gas fields show a huge potential and can improve the performance of wellbore fluids.


Author(s):  
N.M. Itemen ◽  
◽  
E.M. Dutova ◽  

Based on the analysis of the published data is shown, economic efficiency of the processing of hydromineral raw materials in various countries of the world. In the course of research for 2017–2019 an experimental implementation of a technological solution for the complex processing of reservoir brines in specific areas (Asar, Bekturly, South Zhetybai deposits) was carried out, a technological scheme has been developed for the extraction of lithium and magnesium from associated brine taking into account their integrated and environmentally safe processing. The main characteristics of reservoir water are established, selected as promising for the extraction of compounds of Li and Mg.


2020 ◽  
Vol 2020 ◽  
pp. 1-10 ◽  
Author(s):  
Jiaping Yue ◽  
Zhaonian Liu ◽  
Jie Wang ◽  
Ting Sun ◽  
Zhiqiang Wu ◽  
...  

The shallow unconsolidated stratum in the offshore oilfield is characterized by large porosity, low temperature, and weak formation and often faces problems such as low density and poor compressive strength of a cement slurry, among others, which pose serious challenges to construction. A high-performance low-density cement slurry system must be used for cementing to ensure the safety of subsequent drilling and mining on-site and to reduce the cost of cement slurry for the efficient development of oil and gas fields. Based on these problems, according to the principle of particle gradation, a mixture with a high accumulation rate and low density composed of five types of mineral materials, i.e., artificial microbeads, floating beads, microsilicon, fly ash, and slag, has been developed through a large number of indoor experiments, and a set of low-cost and low-density cement slurry systems has been developed; these systems are suitable for the shallow loose formations of offshore oil fields. The cement slurry system meets the requirements of the cementing operation conducted under different temperatures and pressures. The density range is 1.4–1.7 g/cm3, which can be adjusted. The cement slurry is stable and exhibits good fluidity. The thickening time meets the requirements of cementing construction. Moreover, the compressive strength of the cement paste is high, and the compressive strength of cement paste is greater than 12 MPa for 24 h and 14 MPa for 48 h of curing at 50°C, which maximizes the economic benefits. The research results provide technical support for the safe and efficient development of offshore oil and gas fields.


CIM Journal ◽  
2018 ◽  
Vol 9 (4) ◽  
pp. 195-214
Author(s):  
G. J. Simandl ◽  
C. Akam ◽  
M. Yakimoski ◽  
D. Richardson ◽  
A. Teucher ◽  
...  

Author(s):  
A.V. Antonov ◽  
◽  
Yu.V. Maksimov ◽  
A.N. Korkishko ◽  
◽  
...  

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