Cordilleran Section - 106th Annual Meeting, and Pacific Section, American Association of Petroleum Geologists (27-29 May 2010)

Paper No. 2
Presentation Time: 2:00 PM

RESEARCH PROGRESS OF MODELLING ON COLD HEAVY OIL PRODUCTION WITH SAND


PAN, Yi1, ZHANGXIN, John Chen1, XIAO, Lizhi2, SUN, Jian3 and BAO, Xia1, (1)U of Calgary, Calgary, AB T6G 2R3, Canada, (2)China Univ of Petroleum, (3)U of Calgary, ershaghi@usc.edu

Heavy oil has been playing a critical energy that accounts for todayB!B/s world oil supply. The total amount of heavy oil in place is five to ten times greater than the current proven conventional crude. One of the recovery methods, which oil comes with unconsolidated sands, is known as Cold Heavy Oil Production with Sand. The advantages of CHOPS lie in its commercial success as an inexpensive start up application for CHOPS reservoirs as well as its considerable recovery. The general reservoir characteristic associated with successful applications of CHOPS has been established, particularly highlighted in the thin reservoirs with non‑active edge and bottom water. Heavy oil researchers have accumulated local knowledge for the CHOPS fields, particularly research groups in Alberta have taken integrated approaches to the questions posed by the field success of cold production. CHOPS gives high early production rates and become very efficient in reservoirs less than 15 m thick, whereas some thermal methods have been economically unsuccessful in such cases. Aggressive sand production was encountered in California prior to the First World War. Two key mechanisms lead to the success of cold production in laboratory and field studies, foamy oil flow and wormhole network growth. A variety of numerical models are presented and compared in this paper. Such models can be mainly divided into two broad categories: preliminary model and comprehensive model. For a large number of variables still in limited recognition for the complex mechanisms, several models lack capability in fully simulating CHOPS processes. While progress was achieved in modeling the reservoir heterogeneity with the integration of seismic attributes at specific fields. A detailed discussion of the strengths and weaknesses of cold production models is proposed. The paper ends with the future work of modeling proposed on cold production.