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Discharge aiding complex agent for gas well

A composite agent and gas well technology, applied in the direction of drilling compositions, chemical instruments and methods, etc., can solve problems such as large flow resistance, difficulty in determining when foam starts and ends, inaccurate data, etc., and achieve thermodynamic properties Stabilize, improve physical properties near wellbore, and prevent freezing plugging

Active Publication Date: 2018-06-01
DAQING JINJUN PETROLEUM TECH DEV CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Conventional foam drainage gas recovery mainly uses surfactants to foam when they meet water, thereby reducing the wellbore fluid density to achieve drainage gas recovery, but there are the following problems in the actual operation process: 1. When there is serious fluid accumulation in the gas well or the concentration of foaming agent is added When it is unreasonable, the foaming agent added from the oil casing annulus cannot form foam with the bottom hole fluid in time and is taken out of the wellbore. The foaming agent that stays in the wellbore for a long time will deteriorate and block the formation or wellbore
2. After the foaming agent is added to the gas well, a large amount of stable foam will be formed on the ground. It is necessary to add a defoamer to defoam in time. Once it is not timely, it will cause triethylene glycol to cause pan tower
3. Due to the low winter temperature in the north, after adding the foam drainage agent in winter, the gas well is very prone to freezing and blocking of the wellbore and the surface pipeline, which affects the operating time of the gas well
4. When there is a lot of foam in the ground gas production pipeline, the flow resistance increases, and the gas collection station is medium and high pressure, so it is very easy to have no transient phenomenon in the station
5. After adding the foam defoamer, it is difficult to determine when the foam will start and stop, so it is necessary to add the defoamer in advance or later, which increases the cost
6. If the defoaming is not complete, after a large amount of foam enters the pressure vessel, due to the inconsistent pressure inside and outside the foam, once the foam is broken, it will produce "bursting force", which poses a safety hazard
7. Some well stations have no defoaming process, but the gas wells have serious liquid accumulation, and drainage is urgently needed
10. Once the foam enters the ground meter, it will easily lead to inaccurate data and damage to the meter

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0007] The gas well drainage aid compound used in the following experiments includes the following components, which are calculated by mass percentages: ethylene glycol 30%, dispersant sodium sulfonate 3%, triethylene glycol 5%, anti-swelling agent quaternary ammonium salt 5%, corrosion inhibitor imidazoline 6%, methanol 7%, emulsifier monoglyceride 2%, water 42%.

[0008] Taking Well Xs6-8 as an example, when the oil jacket pressure difference of the gas well is greater than 3mpa, 200 kg of the drainage aid of the application is pumped into the annular space of the oil jacket. After more than 2 hours, the incoming pressure increases, and the natural gas increases instantaneously. From 800m 3 Increase to 1700m 3 , The water production is increased, which serves the purpose of drainage and gas increase. The effective time lasts for 45 hours, and the cumulative gas increase for a single assisted drainage is 40500m 3 , The effect of drainage and aeration is obvious.

[0009] Taking we...

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PUM

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Abstract

The invention relates to a discharge aiding complex agent for a gas well. The discharge aiding complex agent for the gas well is prepared from components in percentage by mass as follows: 30% of ethylene glycol, 3% of dispersant sodium sulfonate, 5% of triethylene glycol, 5% of anti-swelling agent quaternary ammonium salt, 6% of corrosion inhibitor imidazoline, 7% of methyl alcohol, 2% of emulsifier monoglyceride ester and the balance of water. A certain quantity of the discharge aiding complex agent for the gas well is added regularly to promote multiple times of contact, dissolution and phase mixing of natural gas and accumulated liquid in a bottom hole, so that density and flowability of shaft fluid are improved, and the purposes of water drainage and gas increase are achieved.

Description

Technical field: [0001] The invention belongs to the technical field of drainage gas production, and specifically relates to a gas well drainage aid composite agent. Background technique: [0002] Conventional foam drainage gas recovery mainly uses surfactants to foam with water, thereby reducing the density of the wellbore fluid to achieve drainage and gas recovery. However, the following problems exist in the actual operation process: 1. When the gas well has serious fluid accumulation or the concentration of foaming agent is added When it is unreasonable, the foaming agent added from the annulus of the oil jacket cannot form foam with the bottom hole in time and is taken out of the wellbore. The foaming agent that stays in the wellbore for a long time will deteriorate and block the formation or the wellbore. 2. After the foaming agent is added to the gas well, a large amount of stable foam will be formed on the ground. It is necessary to add a defoaming agent to defoam in time...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K8/68
CPCC09K8/602C09K8/68C09K2208/12
Inventor 赵金树
Owner DAQING JINJUN PETROLEUM TECH DEV CO LTD
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