|
|
| ||||
|
Home || Reservior Study || Geological Study || Surface Facilities || EOR || Project Economics || Training Programs || Contact Us | ||||
|
|
|
Enhanced Oil Recovery - EOR Engineering Design & Simulation Project Consulting Services
|
![]()
| |
|
Enhanced Oil Recovery (EOR) Services - We apply our expertise in enhanced oil recovery techniques to mature oil fields to recover additional reserves or prolong production after primary recovery methods have run their course. We have the knowledge and know-how to increase the economic life of older fields. We perform detailed analysis and compare benefits of different options including gas injection (carbon dioxide, natural gas or nitrogen) to stimulate oil and gas flow to produce remaining fluids that were not extracted during primary (using natural pressure of the well) or secondary recovery (by gas reinjection and water flooding - to produce residual oil and gas). The optimal application of each type depends on reservoir temperature, pressure, depth, net pay, permeability, residual oil and water saturations, porosity and fluid properties such as oil API gravity and viscosity.
| ||||
|
We perform detailed Economic costs and benefits analysis. We do this by comparing the cost of a given oil recovery methods versus the potential increase revenue from the oil extracted. | ||||
|
| ||||
|
SmartKoncept’s Consulting Services - Upstream Petroleum Oil & Gas Industry EOR Technquies: Gas injection is the most commonly used EOR technique. Here, gas such as carbon dioxide (CO2), natural gas, or nitrogen is injected into the reservoir whereupon it expands and thereby pushes additional oil to a production wellbore, and moreover dissolves in the oil to lower its viscosity and improves the flow rate of the oil. Oil displacement by CO2 injection relies on the phase behaviour of CO2 and crude oil mixtures that are strongly dependent on reservoir temperature, pressure and crude oil composition. These mechanisms range from oil swelling and viscosity reduction for injection of immiscible fluids (at low pressures) to completely miscible displacement in high-pressure applications. In these applications, more than half and up to two-thirds of the injected CO2 returns with the produced oil and is usually re-injected into the reservoir to minimize operating costs. The remainder is trapped in the oil reservoir by various means. |
||||
|
Production Decline Analysis: SmartKoncept can undertake detailed production decline analysis. We can use existing trends in the production rate data from oil and gas wells to accurately forecast future production and the cumulative reserve recovery. |
||||
|
Production Optimization: SmartKoncept undertakes production optimization study for clients. Our seasoned expert team with several years of experience can investigate and identify upside oildfield reserve and the production potential which can be developed. The additional new upside reserve can be added to existing reserve to increase the overall booked reserves for clients.
|
||||
|
Our clients save time, reduce cost and to minimize the risk of failure, through SmartKoncept’s direct consulting services, for the upstream and downstream petroleum oil and gas industry. With SmartKoncept’s expert services, clients maximize production, minimize operational upsets and downtime, enhanced and maintained production flow assurance of oil & gas from reservoir to surface reception and treating facilities, reduced production cost, increased economic life of older fields by recovery additional reserves, ensure safety and process integrity.
|
||||
|
Reservior Study à Geological Studies à Production Optimization à Surface Facilitiesà EORà Project Economic Analysis |
||||
|
| ||||
|
(c) Copyright 2008 SmartKoncept Technology |
||||
|
| ||||
|