High-temperature high-density oil-based drilling fluid

文档序号:1553442 发布日期:2020-01-21 浏览:23次 中文

阅读说明:本技术 一种高温高密度油基钻井液 (High-temperature high-density oil-based drilling fluid ) 是由 王怡迪 罗春芝 赵世贵 秦波波 叶礼园 丁磊 候珊珊 王越支 于 2019-09-10 设计创作,主要内容包括:本发明提供了一种高温高密度油基钻井液,一种高温高密度油基钻井液,其特征在于,油相:水相=75~95:25~5,以水相和油相总体积为基础,其他组成体积比为:主乳化剂:2.0~3.5%;辅乳化剂:0.5~1.5%%;石灰:1.0~4.0%;降滤失剂:1~2%;亲油胶体:0.5~1.5%;成膜封堵剂:1~2%;润湿剂:0~1.0%;加重剂根据钻井液密度来确定。本发明制备的高温高密度钻井液体系携砂性和悬砂性好,滤失量小,破乳电压高,稳定性好,配制和施工简单,可以替代国外同类型钻井液,节约了原料和生产成本。(The invention provides a high-temperature high-density oil-based drilling fluid, which is characterized in that the oil phase is as follows: the water phase accounts for 75-95: 25-5, and based on the total volume of the water phase and the oil phase, the volume ratio of other components is as follows: a main emulsifier: 2.0-3.5%; auxiliary emulsifier: 0.5-1.5%%; lime: 1.0-4.0%; fluid loss additive: 1-2%; oleophylic colloid: 0.5-1.5%; film forming plugging agent: 1-2%; wetting agent: 0 to 1.0 percent; weighting agents are determined based on drilling fluid density. The high-temperature high-density drilling fluid prepared by the invention has the advantages of good sand carrying property and sand suspension property, small filtration loss, high demulsification voltage, good stability and simple preparation and construction, can replace the same type of drilling fluid abroad, and saves raw materials and production cost.)

1. A high-temperature high-density oil-based drilling fluid is characterized in that the oil phase: the water phase accounts for 75-95: 25-5, and based on the total volume of the water phase and the oil phase, the volume ratio of other components is as follows:

a main emulsifier: 2.0-3.5%;

auxiliary emulsifier: 0.5-1.5%%;

lime: 1.0-4.0%;

fluid loss additive: 1.0-2.0%;

oleophylic colloid: 0.5-1.5%;

film forming plugging agent: 1.0-2.0%;

wetting agent: 0 to 1.0%.

2. The high-temperature high-density oil-based drilling fluid according to claim 1, wherein the primary emulsifier is a long-carbon-chain polyamide nonionic surfactant, the secondary emulsifier is a long-carbon-chain fatty amide nonionic surfactant, the lime is calcium oxide, the fluid loss additive is modified asphalt, the oleophilic colloid is organic soil, the film-forming plugging agent is high-molecular polyamide resin, the wetting agent is a mixture of nonionic surfactants such as fatty acid, fatty alcohol amide and small-molecular polyamide, the weighting agent is heavy gilding stone, the oil phase is one of mineral white oil, synthetic oil and synthetic fat, and the water phase is an aqueous CaCL2 solution with the content of 28-30%.

3. The high-temperature high-density oil-based drilling fluid according to claim 1, wherein the addition amount of the primary emulsifier is 2.5-3.0%, the addition amount of the auxiliary emulsifier is 0.8-1.0%, the addition amount of the lime is 2.0-3.0%, the addition amount of the fluid loss additive is 1.0-1.5%, the addition amount of the oleophilic colloid is 0.6-1.0%, the addition amount of the film-forming plugging agent is 1.0-1.5%, and the addition amount of the wetting agent is 0.4-0.6% based on the total volume of the water phase and the oil phase.

4. The preparation method of the high-temperature high-density oil-based drilling fluid is characterized by comprising the following preparation processes:

(1) adding the oil phase, the main emulsifier and the auxiliary emulsifier into a reactor, and stirring at a high speed;

(2) sequentially adding oleophylic colloid, lime, filtrate reducer and film-forming plugging agent into the reactor, and fully and uniformly stirring;

(3) adding the water phase into the reactor, and continuously stirring to fully emulsify the system;

(4) and then adding a weighting agent and a wetting agent according to the requirement, and fully stirring to obtain the high-temperature high-density oil-based drilling fluid.

Technical Field

The invention relates to the technical field of petroleum drilling engineering chemistry, in particular to a high-temperature high-density oil-based drilling fluid.

Background

In the oil drilling process, mud shale around a shaft often absorbs water to swell, peel and even collapse when being drilled by water-based drilling fluid, so that complex conditions such as drill string burying, drill sticking, difficult reaming and the like are caused. This phenomenon is particularly prominent in drilling shale gas wells. To address this problem, oil-based drilling fluid systems are often used in the field. Compared with water-based drilling fluid, the oil-based drilling fluid has good well wall stability, lubricity and reservoir protection; the temperature resistance, sand carrying property, sand suspending property and water loss wall building property have great relationship with an emulsifier, a filtrate reducer and the like used in the oil-based drilling fluid, and the oil phase in the currently used oil-based drilling fluid is generally diesel oil. With the increase of drilling depth and the higher and higher environmental protection requirements, the traditional low-temperature low-density diesel-oil based drilling fluid cannot meet the actual production requirements. In recent years, when the shale gas of deep large-displacement horizontal wells such as Sichuan, Chongqing and Yunnan is developed in China, the oil-based drilling fluid system mainly adopts the drilling fluid of foreign companies, or the emulsifier and the filtrate reducer adopt the drilling fluid of foreign companies, so that the oil-based drilling fluid system is very expensive and is influenced by factors such as untimely raw material supply. Therefore, a high-temperature-resistant high-density oil-based drilling fluid is urgently needed to overcome the defects in the prior art.

Disclosure of Invention

In order to solve the problems, the invention provides the high-temperature high-density oil-based drilling fluid which has the advantages of small addition amount of the emulsifier and other treating agents, simple field preparation and construction, good sand carrying property and sand suspending property of the drilling fluid, low filtration loss, good mud cake quality, high demulsification voltage and the like, and the drilling fluid can completely replace the similar drilling fluid abroad, so that the drilling cost is saved. The specific technical scheme of the invention is as follows: a high-temperature high-density oil-based drilling fluid is characterized in that the oil phase: the water phase accounts for 75-95: 25-5, and based on the total volume of the water phase and the oil phase, the volume ratio of other components is as follows:

a main emulsifier: 2.0-3.5%;

auxiliary emulsifier: 0.5-1.5%%;

lime: 1.0-4.0%;

fluid loss additive: 1.0-2.0%;

oleophylic colloid: 0.5-1.5%;

film forming plugging agent: 1.0-2.0%;

wetting agent: 0 to 1.0 percent;

weighting agents are determined based on drilling fluid density.

Preferably, the main emulsifier is a long-carbon-chain polyamide nonionic surfactant, the auxiliary emulsifier is a long-carbon-chain fatty amide nonionic surfactant, the lime is calcium oxide, the fluid loss additive is modified asphalt, the oleophilic colloid is organic soil, the film-forming blocking agent is high-molecular polyamide resin, the wetting agent is a mixture of fatty acid, fatty alcohol amide, small-molecular polyamide and other nonionic surfactants, the weighting agent is heavy gold stone, the oil phase is one of mineral white oil, synthetic oil and synthetic fat, and the water phase is a CaCL2 aqueous solution with the content of 28-30%.

Preferably, based on the total volume of the water phase and the oil phase, the addition amount of the main emulsifier is 2.5-3.0%, the addition amount of the auxiliary emulsifier is 0.8-1.0%, the addition amount of the lime is 2-3%, the addition amount of the fluid loss additive is 1-1.5%, the addition amount of the oleophilic colloid is 0.6-1.0%, the addition amount of the film-forming plugging agent is 1-1.5%, and the addition amount of the wetting agent is 0.4-0.6%.

Preferably, the preparation process of the high-temperature high-density oil-based drilling fluid is as follows:

(1) adding the oil phase, the main emulsifier and the auxiliary emulsifier into a reactor, and stirring at a high speed;

(2) sequentially adding oleophylic colloid, lime, filtrate reducer and film-forming plugging agent into the reactor, and fully and uniformly stirring;

(3) adding the water phase into the reactor, and continuously stirring to fully emulsify the system;

(4) and then adding a weighting agent and a wetting agent according to the requirement, and fully stirring to obtain the high-temperature high-density oil-based drilling fluid.

Compared with the prior art, the invention has the following beneficial effects:

a. the oil phase used in the preparation process of the drilling fluid is one of mineral white oil, synthetic oil or synthetic grease, replaces the common diesel oil, and greatly improves the environmental protection property.

b. The temperature resistance of the main emulsifier, the auxiliary emulsifier, the wetting agent, the filtrate reducer and the film forming plugging agent used in the preparation process of the drilling fluid is higher than 170 ℃, and the temperature resistance of the prepared drilling fluid system is higher than 170 ℃.

c. The combined action of the fluid loss additive and the film-forming plugging agent used in the preparation process of the drilling fluid ensures that the high-density oil-based drilling fluid has the high-temperature high-pressure fluid loss of less than 2.0ml at 170 ℃.

d. The demulsification voltage of the drilling fluid prepared by the method reaches more than 800V, the drilling fluid has good fluidity under high density, good sand carrying property and sand suspension property, strong pollution resistance, the drill cuttings recovery rate is more than 95%, and the drilling fluid has good inhibitability.

Detailed Description

The present invention is further described in detail below with reference to examples so that those skilled in the art can practice the invention with reference to the description.

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