A New Experimental Evaluation Technology for Foaming Agent in High Temperature and High Pressure Formation

Article Preview

Abstract:

Foaming deliquification is one of the most widely used technologies in the development of water production gas field. The key of this technology is the experimental optimization or develop the foaming agent suitable for gas field. With the development of a large number of high temperature and high pressure gas field, foam experimental evaluation methods used at present can not satisfy the temperature range of high temperature and high pressure evaluation requirements, in this case, used the Ross-Miles foam evaluation method as the foundation, built a new experimental evaluation method for foaming agent. Through an example, analyzes the influence of temperature and pressure on the foaming agent performance.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 962-965)

Pages:

877-882

Citation:

Online since:

June 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Yu Shuming, Tian Jianfeng. Application of drainage gas Recovery technology in Sulige gas field and its development [J]. Drilling & production technology , 2012, 35 (3) : 40~43.

Google Scholar

[2] Chen yu, Wang xun. Application and study on gas production technology of foam drainage in Xin Chang gas field. Drilling & production technology [J], 2008, 31(4): 82~84.

Google Scholar

[3] Wen Changyu, Yu Jianhua, Yan Zifeng, etc. Application of technology of gas recovery by foam drainage to Tarim Oilfield. Oil drilling & production technology [J], 2007, 29(4): 100~101.

Google Scholar

[4] Zhao Xiaodong, Yin Zhong. Method for evaluation of Foaming Agent Removing Water from Gas Well[J]. Journal of Southwest Petroleum Institute, 1991, 13(4) : 96~100.

Google Scholar

[5] Li Qianding, Lu Yongbin, Li Shanjian, etc. Development and performance evaluation of a new efficient foam discharging agent LYB-1 [J]. Natural gas industry, 2011, 31(6): 49~51.

Google Scholar

[6] Liu jingcheng, Yang Min, Yuan Fufeng. Foam Properties of New Foaming Composition SP for Bottom Liquid Withdrawal from Gas Production Well [J]. Oilfield chemistry, 2008, 25(2): 111~114.

Google Scholar

[7] Zhao Xiaodong. Foam Properties of New Foaming Composition SP for Bottom Liquid Withdrawal from Gas Production Wells [J]. Oilfield chemistry, 1992, 9(2) : 140~144.

Google Scholar

[8] SY/T 6465-2000. Evaluation methods for foaming agent of drainaging gas recovery [S].

Google Scholar

[9] MALYSA K. Wet foams:formation, properties and mechanism of stability[J]. Adv Col Interf Sci, 1992, 40: 37~83.

Google Scholar

[10] PATIST A, HUIBERS P D, DENEKA T B, etal. Effect of tetraalkylammonium chlorides on foaming properties of sodium dodecyl sulfate solutions[J]. Langmuir, 1998, 14(16):4471~4474.

DOI: 10.1021/la980169e

Google Scholar

[11] GB/ T 7462 – 94, Surface active agents- Measurement of foaming power- Modified Ross-Miles method [S].

Google Scholar

[12] Peng Nianhui. Evaluation method of gas blowing agent in the foam drainage [J]. Chemical engineering of oil&gas, 1986, 18(1):27~32.

Google Scholar

[13] Chatterjee K, Dollimore D, Alexander K. A new application for the Antoine equation in formulation development[J]. International Journal of Pharmaceutics. 2001, 213 (1-2): 31-44.

DOI: 10.1016/s0378-5173(00)00644-x

Google Scholar