American Oil and Gas Reporter - May 2016 - 25

TECHCONNECTIONS
IOR Conference
Highlights Methodologies
To Produce More Oil
A tradition that spans more than 40 years continued in April
in Tulsa as the Society of Petroleum Engineers held its 20th biennial Improved Oil Recovery Conference. The theme of the 2016
event was "New Challenges, New Solutions," reflecting the uncertain market that industry has been navigating.
Traditional improved oil recovery methods can be costly upfront,
however, they generally have a track record of long-term success
and payout. Even with this established track record, organizers of
the 20th IOR conference say many operators are re-examining proposed projects. To respond to this concern, research continues to
advance technology in ways that improve traditional IOR techniques,
including applying them in unconventional reservoirs.
Additionally, organizers state that even though IOR sometimes
can be perceived as an expensive process, it has been gaining
ground over the past 40 years, including being embraced by an
increasingly global industry audience that participated in and presented at this year's event.
Among more than 150 papers presented, two that stood out for
me represented the work that continues everyday to make innovations in IOR. The first paper was titled, "Toward 70 Percent Recovery Factor: Knowledge of Reservoir Characteristics and
IOR/EOR Methods from Global Analogs (SPE 179586)," by Lu
Xiaoguang, Sun Shaoqing and Rich Dodds at C&C Reservoirs.
It highlights the basic reservoir characteristics and IOR methods
used in a sandstone reservoir to achieve almost 70 percent recovery.
In this study, researchers created an analog knowledge base
for fields that had achieved recovery factors around 70 percent.
Using both static (primary recovery, well spacing, drive mechanism, etc.) and dynamic (oil rate, water cut, etc.) data for more
than 700 sandstone reservoirs, researchers divided cases into heavyand conventional-oil reservoir groups. Looking at key factors such
as reservoir and fluid properties, wettability, development strategies and IOR methods, researchers identified trends in the wells
with the highest recoveries.
For heavy oil, researchers found that excellent reservoir
properties, horizontal well technology, high-efficiency steamflooding, and tight well spacing all contributed to recovering more
than 50 percent of the oil in place. Additionally, researchers found
that in homogeneous sandstone reservoirs with good lateral correlation, waterflooding and closer well spacing could increase recovery to as high as 79 percent.
Researchers hope industry can use this global knowledge base
to identify better opportunities in mature fields, and with the help
of solid reservoir management and IOR technology, recover up
to 70 percent of the oil in place.
In another paper, titled "Laboratory Study on Using Produced
Water in Cross-Linked Gel-Based Hydraulic Fracturing (SPE
179553)," by Ahmed Elsarawy and Hisham Nasr-El-Din at
Texas A&M University, and Kay Cawiezel with BP America Production Co., researchers investigated using produced water to formulate cross-linked, gel-based fracturing fluid. Specifically, researchers looked at the compatibility of the produced water with
the fluid system, as well as the effect of salts on fluid flow.

"Research continues to improve traditional
IOR techniques, including applying them in

"

unconventional reservoirs.

One of the major challenges with using produced water for frac
fluid is the amount of total dissolved solids in the water, which
can damage the formation and impact how the fluid flows.
Produced water samples were examined, then synthetic water
samples were developed using different salt concentrations to develop the fracturing fluid. The fluid consisted of natural guar polymer, a borate-based cross-linker, biocide, surfactant, clay controller,
scale inhibitor, and pH buffer. The formulas were tested using a
high-temperature/high-pressure rheometer, followed by a fluid
breaking test to ensure high propped-fracture conductivity.
The analysis indicated that using produced water with
125,000 parts per million total dissolved solids could cause formation damage. Researchers diluted the produced water with freshwater to formulate the fracturing fluid, and different concentrations of ions were measured. Key findings include that using produced water by itself can cause formation damage. Precipitation
can be avoided by diluting with freshwater, and reducing the
amount of calcium improves the fluid rheology. Finally, among
other results, researchers found that high salt content had no effect on the fracturing fluid breaking.
After 40 years, the SPE-IOR conference continues to showcase innovations in improved and enhanced oil recovery. More
than 600 papers were submitted this year, and more than 150 were
selected from presenters representing more than 35 countries.
The 2016 event also recognized five Pioneer Award recipients
for their contributions to IOR. This year's winners were:
* Richard Hutchins for his work in water shut-off and conformance;
* Sada Joshi in horizontal well drilling and production;
* Jenn-Tai Liang for his contributions to pioneering work in
EOR and IOR;
* Lanny Schoeling for EOR field application; and
* Ali Yousef for his work in developing the "smart waterflood."
These awards show that innovation is alive and that technology development will continue to be the hallmark of IOR's success.❒

JEREMY VISCOMI is the di-

rector of technology transfer
for the University of Kansas
Tertiary Oil Recovery Program and the PTTC Midcontinent Region office. He has
more than a decade of experience in developing and organizing technical conferences
and special events.
MAY 2016 25



American Oil and Gas Reporter - May 2016

Table of Contents for the Digital Edition of American Oil and Gas Reporter - May 2016

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