Title of article :
Study on Rheological Property Control Method of “Three High” Water Based Drilling Fluid
Author/Authors :
Lijuan, P Research Institute of Petroleum Engineering - Northwest Oil Company of SINOPEC, Urumqi, Xinjiang, China , Xiaoping, L School of Petroleum Engineering - China University of Petroleum (East China), Qingdao, Shandong, China , Wu, L School of Petroleum Engineering - China University of Petroleum (East China), Qingdao, Shandong, China , Fuhao, Z School of Petroleum Engineering - China University of Petroleum (East China), Qingdao, Shandong, China , Tongliang, W School of Petroleum Engineering - China University of Petroleum (East China), Qingdao, Shandong, China , Huang, W School of Petroleum Engineering - China University of Petroleum (East China), Qingdao, Shandong, China , Fuwei, W Xinchun Oilfield - SINOPEC Shengli Oil Field Company, Dongying, China
Pages :
9
From page :
1687
To page :
1695
Abstract :
The rheological regulation of the “three high” (high temperature, high density and high salinity) water-based drilling fluid is a worldwide problem due to the combined influence of temperature, solid content and salinity. This paper investigates the factors and regulation methods about rheological property of “three high” water based drilling fluid, and the effects of clay, salinity and weighting materials on the drilling fluid rheology. The experimental results show that base mud compound bentonite with attapulgite had good salt resistance and temperature resistance. The clay content should be kept close to 2% in high density mud (ρ=2.0g/cm3), to control drilling fluid rheology. The sequence of rheological parameters of the “three high” water-based drilling fluid with same density was: manganese oxide> micronized barite> barite> ilmenite powder. When barite compounded with ilmenite powder or micronized barite in the ratio of 1:1 to weight drilling fluid respectively, the rheology and filtration of the “three high” water-based drilling fluid performed well. Based on the optimization of a series of mud additives including fluid loss additive, thinner, anti-collapse filtration reducing agent, lubricant with salt and calcium resistance, a formula of the “three high”water-based drilling fluid system was prepared which had excellent rheology, filtration and sedimentation stability property with the density of 2.2g/cm3 (180℃). The expansion rate of the drilling fluid was 1.84%, shale recovery rate was 85.73%, lubrication coefficient was 0.122, and resistanced to pollution of 1% CaCl2 and 10% poor clay. It also had excellent reservoir protection and plugging performance.
Farsi abstract :
تنظيم رئولوژيكي سيال حفاري مبتني بر آب "سه حد بالا (درجه حرارت بالا ، چگالي بالا و شوري زياد) يك مشكل جهاني است كه به دليل تركيبي دما ، محتواي مواد جامد و شوري است. در اين مقاله به بررسي فاكتورها و روشهاي تنظيم در مورد خاصيت رئولوژيكي سيال حفاري مبتني بر آب "سه حد بالا و تأثير رس ، شوري و وزن مواد در رئولوژي مايعات حفاري مي پردازيم. نتايج تجربي نشان مي دهد كه بنتونيت تركيب گل و لاي پايه با آتويلوليت مقاومت خوبي در برابر نمك و دما دارد. محتواي گل رس را بايد نزديك 2% در گلهاي با چگالي بالا g/m 2.0=P نگه داشت تا بتوانيد رئولوژي گل حفاري را كنترل كنيد. توالي پارامترهاي رئولوژيكي "سيال حفاري مبتني بر آب " سه حد بالا" با چگالي يكسان بود، اكسيد منگنز >باريت ميكرونيزه> باريت> پور ايلمنيت. هنگامي كه باريت به ترتيب با پودر ايلمنيت يا باريت ميكرونيزه در نسبت مايع حفاري وزني 1: 1 به وزن تركيب مي شود ، رئولوژي و تصفيه مايعات حفاري مبتني بر آب "سه حد بالا" به خوبي انجام مي شود. بر اساس بهينه سازي يك سري مواد افزودني گلي از جمله افزودني براي از بين رفتن مايعات ، نازك تر و ضد ريزش تصفيه كننده ضد آب ، روان كننده با نمك و مقاوم به كلسيم ، فرمول سيستم سيال حفاري مبتني بر آب "سه حد بالا " تهيه شده است. خصوصيات رئولوژي ، فيلتراسيون و رسوب گذاري با چگالي 2.2 g/cm^3^ (180C) ميزان انبساط مايع حفاري 1.84% سرعت بازيابي شيل 85.73% ضريب روانكاري 0/122 و مقاومت در برابر آلودگي 1٪CaCl2 و 10٪ خاك رس ضعيف بود. همچنين از حفاظت و مخزن بسيار عالي از مخزن برخوردار بود.
Keywords :
High Salinity , High Density , Water-based Drilling Fluid , Rheology , Control Method
Journal title :
International Journal of Engineering
Serial Year :
2020
Record number :
2568297
Link To Document :
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