Study on Artificial Filter Cake Evaluation Method of Oleophilic Nano-Plugging Agent

Author:

Dai Feng12,Luo Pingya1,Wu Chunlin2,Wang Rui3,Liu Yingmin2,Huang Weian3

Affiliation:

1. School of Petroleum Engineering, Southwest Petroleum University, Chengdu 610500, China

2. Exploration and Development Department, Sichuan Changning Natural Gas Development Co., Ltd., Chengdu 610051, China

3. School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China

Abstract

Oil-based drilling fluid is currently widely utilized when drilling shale, in which the oleophilic nano-plugging agent is the major component for wellbore strengthening. However, there have been few effective and straightforward evaluation methods for the nano-plugging agent. In this study, an artificial filter cake was created to simulate the microfissure of shale formation, and the performance of the nano-plugging agent was assessed using the fluid-loss reduction rate as the index. The filter cake was made from compound crystal weights and a high molecular weight polymer, and a nano-plugging agent matching the formation pore structures was selected. The performance of three plugging agents with varying particle sizes (ultrafine CaCO3, emulsified modified rubber MORLF, ULIA nano-plugging agent) was compared. Moreover, the validity of the evaluation process was confirmed, and the underlying plugging mechanism was investigated. The proposed technique can produce an artificial filter cake with a constant thickness of 3 × 10−3 m and a permeability in the range of 10−18 to 10−19 m2, and the assessment approach is consistent, precise and easy to use. This work may provide a guideline for evaluating oleophilic nano-plugging agents in the laboratory and field applications.

Funder

Key Science and Technology Research Project of Sichuan Changning Natural Gas Development Co., Ltd.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

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3. A study on wellbore stability in fractured rock masses with impact of mud infiltration;Chen;J. Petrol. Sci. Eng.,2003

4. Huang, W., Qiu, Z., Xu, J., and Yu, L. (2007). Experimental study on wellbore instability mechanism in Western Tuha Oilfield. J. Pet., 28.

5. Research on hard and brittle shale in Weizhou 12-1N Oilfield and technical countermeasures for drilling fluid;Yue;China Offshore Oil Gas,2005

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