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Dive into the research topics where Larisa A. Strelets is active.

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Featured researches published by Larisa A. Strelets.


Journal of Thermal Analysis and Calorimetry | 2015

DSC and thermal imaging studies of methane hydrate formation and dissociation in water emulsions in crude oils

M. E. Semenov; A.Yu. Manakov; E. Yu. Shitz; Andrey S. Stoporev; L. K. Altunina; Larisa A. Strelets; S. Ya. Misyura; Vladimir E. Nakoryakov

The processes of methane hydrate formation from 50 mass% water-in-oil emulsion from the Mamontovskoe, Sovetskoe, Van-Eganskoe, and Vakhskoe oil deposits (East Siberia) were studied using differential scanning calorimetry. It was shown that different types of thermal effects may be observed in curves corresponding to the formation of hydrate (and/or ice) in different emulsions. In particular on the curves, we observed the appearance of a single asymmetric thermal effect or a set of a large number of separate small thermal effects. The analysis of the results allowed us to conclude that hydrate formation (ice freezing) in the studied emulsions occurs as a collective process, which involves a lot of water droplets in the emulsions. This process occurs in some space inside the emulsion sample. The volume of this space determines the type of curve recorded in experiment. Secondary nucleation (nucleation of the solid phase due to the contact of a drop of water with the neighboring hydrate or ice particle) enables fast formation of gas hydrate in all droplets inside this space.


Petroleum Chemistry | 2014

Dependence of the rate of formation and the P-T stability field of methane hydrate suspensions in crude oils upon oil composition

Andrey S. Stoporev; A. Yu. Manakov; L. K. Altunina; A. V. Bogoslovskii; Larisa A. Strelets; E. Ya. Aladko

Equilibrium conditions for hydrates obtained from water emulsions in crude oils of the Yurubcheno-Tokhomskoe, Verkhnechonskoe, Gerasimovskoe, and Usinskoe fields have been studied, as well as the relative rates of hydrate formation in these systems. It has been concluded that the presence of oil does not alter the equilibrium conditions of hydrate formation. An increase in the concentration of resin-asphaltene substances and paraffins in crude oil leads to a decrease in the hydrate formation rate.


Energy & Fuels | 2014

Unusual Self-Preservation of Methane Hydrate in Oil Suspensions

Andrey S. Stoporev; Andrey Yu. Manakov; L. K. Altunina; Andrey V. Bogoslovsky; Larisa A. Strelets; Eugeny Ya. Aladko


Energy & Fuels | 2016

Nucleation of Methane Hydrate in Water-In-Oil Emulsions: Role of the Phase Boundary

Andrey S. Stoporev; Andrey Yu. Manakov; V. I. Kosyakov; Vladimir A. Shestakov; L. K. Altunina; Larisa A. Strelets


Energy & Fuels | 2018

Basic Fundamentals of Petroleum Rheology and Their Application for the Investigation of Crude Oils of Different Natures

Sergey O. Ilyin; Larisa A. Strelets


Energy & Fuels | 2016

Self-Preservation of Gas Hydrate Particles Suspended in Crude Oils and Liquid Hydrocarbons: Role of Preparation Method, Dispersion Media, and Hydrate Former

Andrey S. Stoporev; Andrey Yu. Manakov; L. K. Altunina; Larisa A. Strelets


Mendeleev Communications | 2018

Effect of reactor wall material on the nucleation of methane hydrate in water-in-oil emulsions

Andrey S. Stoporev; L. I. Svarovskaya; Larisa A. Strelets; L. K. Altunina; Andrey Yu. Manakov


Chinese Journal of Chemical Engineering | 2018

Nucleation of methane hydrate and ice in emulsions of water in crude oils and decane under non-isothermal conditions

Andrey S. Stoporev; L. I. Svarovskaya; Larisa A. Strelets; L. K. Altunina; Galina V. Villevald; Tamara D. Karpova; Tatyana V. Rodionova; Andrey Yu. Manakov


PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS WITH HIERARCHICAL STRUCTURE FOR NEW TECHNOLOGIES AND RELIABLE STRUCTURES 2017 (AMHS’17) | 2017

Infrared spectra and physochemical properties of oils

Larisa A. Strelets; L. I. Svarovskaya; A. Yu. Manakov


Actual Problems of Oil and Gas | 2017

GAS HYDRATES FORMATION AND FREEZING OF THE ICE IN THE WATER EMULSIONS IN THE OIL SAMPLES WITH A VARIOUS DEGREE OF BIODEGRADATION

Andrey S. Stoporev; L. I. Svarovskaya; Anton P. Semenov; Larisa A. Strelets; L. K. Altunina; A.Yu. Manakov

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Andrey S. Stoporev

Russian Academy of Sciences

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L. K. Altunina

Russian Academy of Sciences

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Andrey Yu. Manakov

Russian Academy of Sciences

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L. I. Svarovskaya

Russian Academy of Sciences

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V. I. Kosyakov

Russian Academy of Sciences

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A. V. Bogoslovskii

Russian Academy of Sciences

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A. Yu. Manakov

Russian Academy of Sciences

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A.Yu. Manakov

Novosibirsk State University

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Anton P. Semenov

Gubkin Russian State University of Oil and Gas

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