Large-Scale Pipe Flow Experiments for the Evaluation of Nonchemical Solutions for Calcium Carbonate Scaling Inhibition and Control DOI
Juliana Loureiro, A. L. Martins, Andrea Gonçalves

и другие.

SPE Journal, Год журнала: 2022, Номер 28(01), С. 201 - 214

Опубликована: Сен. 12, 2022

Summary Inorganic scaling is a phenomenon of common occurrence both in nature and industrial operations. In general, its effects can be highly detrimental for the oil industry, as fouling take place different stages production, from wellbore downhole production control valves to upstream primary processing separation equipment. The deposition precipitated crystals on pipe walls result severe decline. Despite high costs involved design operation separate lines additive injection, chemical inhibition typically solution adopted by companies mitigate scaling. purpose present work show results large-scale laboratory flow experiments evaluate performance nonchemical solutions calcium carbonate Magnetic, electromagnetic, ultrasound devices have been tested setup that simulates mixing two incompatible brine cause precipitation Reynolds number flow. evaluated pressure drop measurements along pipe, deposited mass wall, diameter reduction. Additional include evaluation particle-size distribution crystals, scanning electron microscopy, X-ray diffraction analysis identification crystalline structure, pH conductivity. Results magnetic field furnishes beneficial effect, it delays time observed onset restriction valve. use slows down scaling, thus delaying increase drop. scale associated with this delay four times required tests carried out without field. Ultrasound are also shown provide impact appearance effects. An influences phenomena, inducing particle sizes kept at very small values, an effect prevents crystal deposition. main contribution method antiscaling based representative real applications.

Язык: Английский

Synergistic Regulation of Drying Quality in Star Anise (Illicium Verum Hook. F.) By Structural Modification and Enzyme Influence: Mechanisms of Blanching Pretreatment DOI
Shao-ying Zhang, Xia Kuang, Chaofan Guo

и другие.

Опубликована: Янв. 1, 2025

Язык: Английский

Процитировано

0

Innovations in Oil Processing: Chemical Transformation of Oil Components through Ultrasound Assistance DOI Creative Commons
Aleksey V. Dengaev, Mohammed A. Khelkhal,

Andrey A. Getalov

и другие.

Fluids, Год журнала: 2023, Номер 8(4), С. 108 - 108

Опубликована: Март 24, 2023

The present review paper discusses the different aspects related to chemical transformation of oil components through ultrasound assistance. Ultrasound intensifies heat and mass transfer processes in production treatment, which is used separate water–oil emulsions, optimize pumping, clean bottomhole zone, more. main reason for positive effect cavitation phenomenon, forms vapor–gas bubbles that cause changes structure properties dispersed phases, intensifying such as dissolution, extraction, emulsification. inhomogeneities medium being processed also reduce resistance bubble formation increase intensity technological processes. It believed ultrasonic treatment heavy influences colloid oil. Such effects were observed several studies. Despite widespread use processing, hydrocarbons during remains an understudied area, particularly Furthermore, mechanism high-molecular-weight fragments under energy still poorly understood. Heavy can benefit greatly from both after pipeline transportation or plant processing reservoir. This due improved mobility rock high-molecular components, resins, asphaltenes, paraffins. These transformations contribute overall improvement making it a crucial area further research development. In this paper, we will explore latest innovations specifically focusing on include comprehensive analysis underlying mechanisms their impact composition discussion current state art future directions field, highlighting potential advancements processing.

Язык: Английский

Процитировано

7

Wettability control mode of oil flow in shale reservoirs DOI
Ying Yang, Meng Cai, Xiaofeng Zhou

и другие.

International Communications in Heat and Mass Transfer, Год журнала: 2024, Номер 157, С. 107830 - 107830

Опубликована: Июль 19, 2024

Язык: Английский

Процитировано

2

Influence of Surface Modification on the Oil Recovery of Iron Oxide Nanoparticles Under Reservoir Conditions DOI
Faruk Yakasai, Mohd Zaidi Jaafar, Akhmal Sidek

и другие.

SPE Nigeria Annual International Conference and Exhibition, Год журнала: 2024, Номер unknown

Опубликована: Авг. 5, 2024

Abstract Iron oxide nanoparticles (IONPs) show promise as advanced materials for enhanced oil recovery (EOR) due to their distinct physicochemical properties. However, tendency quickly clump together in reservoir brine, driven by the need reduce high surface energy, poses a significant challenge. This aggregation results reduced stability and loss of desirable properties, ultimately impeding effective recovery. study addresses these challenges examining how functionalizing IONPs with 3-aminopropyltriethyloxysilane (AIONPs), tetraethyl orthosilicate (SIONPs), combination both (ASIONPs) enhances characteristics facilitate conditions. The were synthesized modified laboratory, confirmation synthesis functionalization achieved through analyses using high-resolution transmission electron microscopy (HRTEM), energy dispersive X-ray analysis (EDX), diffraction (XRD) Thermogravimetric (TGA). To accurately simulate conditions, actual cores high-temperature, high-pressure (HTHP) core flooding equipment used evaluate resulting nanofluids (NFs). Visual sedimentation investigations NPs distilled water, low electrolyte concentrations revealed that APTES SIONPs reservoir, especially Under conditions (25,000 ppm, 2400Psi, 120°C), respective percentages ASIONFs, SIONFs, AIONFs, IONFs found be 14.6%, 13.8%, 18.3%, 4.8%. These comprehensive findings significantly contribute our understanding influences efficiency settings.

Язык: Английский

Процитировано

2

Large-Scale Pipe Flow Experiments for the Evaluation of Nonchemical Solutions for Calcium Carbonate Scaling Inhibition and Control DOI
Juliana Loureiro, A. L. Martins, Andrea Gonçalves

и другие.

SPE Journal, Год журнала: 2022, Номер 28(01), С. 201 - 214

Опубликована: Сен. 12, 2022

Summary Inorganic scaling is a phenomenon of common occurrence both in nature and industrial operations. In general, its effects can be highly detrimental for the oil industry, as fouling take place different stages production, from wellbore downhole production control valves to upstream primary processing separation equipment. The deposition precipitated crystals on pipe walls result severe decline. Despite high costs involved design operation separate lines additive injection, chemical inhibition typically solution adopted by companies mitigate scaling. purpose present work show results large-scale laboratory flow experiments evaluate performance nonchemical solutions calcium carbonate Magnetic, electromagnetic, ultrasound devices have been tested setup that simulates mixing two incompatible brine cause precipitation Reynolds number flow. evaluated pressure drop measurements along pipe, deposited mass wall, diameter reduction. Additional include evaluation particle-size distribution crystals, scanning electron microscopy, X-ray diffraction analysis identification crystalline structure, pH conductivity. Results magnetic field furnishes beneficial effect, it delays time observed onset restriction valve. use slows down scaling, thus delaying increase drop. scale associated with this delay four times required tests carried out without field. Ultrasound are also shown provide impact appearance effects. An influences phenomena, inducing particle sizes kept at very small values, an effect prevents crystal deposition. main contribution method antiscaling based representative real applications.

Язык: Английский

Процитировано

8