Completion string for shale oil and gas well and use method thereof
By finely controlling the completion column of the shale oil and gas well, adjusting the opening parameters and circulation frequency of the gas lift valve, the problem of insufficient gas lifting process parameters in the existing technology is solved, and more efficient gas lifting effect and yield analysis is achieved.
Patent Information
- Application Number
- CN202411480512.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2044-10-23
AI Technical Summary
The prior art does not consider the impact of gas lifting process parameters on gas lifting effect, resulting in gas lifting process parameters that may not meet the actual production needs of shale oil and gas wells.
By continuously injecting oil and production gas, the single-channel rotary valve opening is controlled, the oil production and flow parameters are analyzed, the opening parameters and cycle opening frequency of the gas lift valve are adjusted, and the adjustment method of the gas lift valve is adjusted according to the state of the oil and gravel, so as to achieve refined control.
It improves the degree of refined gas lift control, enhances the accuracy of gas lift efficiency and yield analysis, reduces the impact of sand and gravel on gas lift valves, and improves the stability and efficiency of gas lift system.
Smart Images

Figure CN119266779B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of gas lift oil production, and in particular to a completion string for a shale oil and gas well and a method of using the same. Background Art
[0002] Gas lift production is a method of lifting crude oil from the well to the surface by injecting high-pressure gas from the ground. The flow properties and coordination principles of this method are basically the same as those of self-flowing wells. Among them, the gas lift process parameters need to be targeted at the actual operating conditions of shale oil and gas wells. Combined with the production fluctuations and long-term production stability requirements during the gas lift process, the application of fine pressure-controlled gas lift completion production strings in shale oil and gas production is crucial.
[0003] Chinese Patent Publication No. CN108386163A discloses a gas lift induced blowout process and a gas lift induced blowout system, wherein the gas lift induced blowout system includes a casing, an oil pipe, an injection valve, and an air inlet pipe. The casing is located in the well body, the oil pipe is sleeved in the casing, and the injection valve is arranged on the oil pipe and can be connected to the oil pipe. One end of the air inlet pipe is connected to the injection valve, and the other end extends out of the wellhead and is connected to the gas source. The gas lift induced blowout system and gas lift induced blowout method provided by the invention pressurizes gas lift gas into the oil pipe through a sealed pipeline composed of the air inlet pipe and the injection valve, thereby isolating the annulus between the oil pipe and the casing. The annular space protection fluid in the annulus will not leak into the oil pipe. After the gas lift is completed, there is no need to re-inject annular space protection fluid into the annulus, thereby saving resources and reducing costs. It can be seen that the above technical solution has the following problems: it does not take into account the influence of gas lift process parameters on the gas lift effect, resulting in the gas lift process parameters possibly not meeting the needs of actual production. Summary of the Invention
[0004] To this end, the present invention provides a completion string for shale oil and gas wells and a method for using the same, so as to overcome the problem that the prior art does not consider the influence of gas lift process parameters on the gas lift effect, resulting in the gas lift process parameters possibly not meeting the actual production needs.
[0005] To achieve the above object, the present invention provides a method for using a completion string for a shale oil and gas well, comprising:
[0006] The oil production gas is continuously injected into the annular space between the tubing and the casing, and is continuously injected into the tubing through the gas lift valves in the open state;
[0007] When the bottom hole pressure reaches the preset pressure value, the single-channel rotary valve is controlled to rotate forward at a constant pressure to open, allowing the oil to flow into the oil pipe;
[0008] Determine the oil production status according to the oil production reference value and the oil fluctuation reference value, and determine the production analysis method according to the oil production status;
[0009] In the analysis of oil flow parameters, threshold analysis is performed on each oil flow parameter, and oil flow parameters that are not within the preset threshold range are recorded as dangerous flow parameters. The response method is determined according to the number of dangerous flow parameters;
[0010] In the analysis of oil gravel parameters, the oil gravel state is determined based on the gravel particle size characterization value and the gravel particle size uniform value, and the gas lift valve adjustment method is determined based on the oil gravel state;
[0011] In adjusting the opening parameters of the gas lift valves, the opening parameters of each gas lift valve are adjusted according to the growth parameters;
[0012] In adjusting the cycle opening frequency of the gas lift valve, the cycle opening frequency of the gas lift valve is adjusted according to the particle size difference.
[0013] Furthermore, the production analysis method is determined according to the oil production status, including analyzing the oil gravel parameters or analyzing the oil flow parameters.
[0014] Furthermore, the oil production status is determined based on the oil production reference value and the oil fluctuation reference value. The oil production status is a first oil production status in which the oil production reference value is less than a preset oil production reference value, or a second oil production status in which the oil production reference value is greater than or equal to the preset oil production reference value and the oil fluctuation reference value is greater than the preset oil fluctuation reference value.
[0015] Furthermore, under the first analysis condition, threshold analysis is performed on each oil flow parameter, and oil flow parameters that are not within the preset threshold range are recorded as dangerous flow parameters, and a response method is determined according to the number of dangerous flow parameters;
[0016] The treatment method is to adjust the gas injection volume, or conduct manual inspection;
[0017] Oil flow parameters include oil temperature, oil viscosity, and oil impurity content. Each type of oil flow parameter has a corresponding preset threshold range.
[0018] The first analysis condition is that the oil production state is the first oil production state.
[0019] Furthermore, if the number of dangerous flow parameters is the standard number, the gas injection amount is increased and adjusted;
[0020] If the number of dangerous flow parameters is greater than the standard number, manual investigation is performed.
[0021] Furthermore, under the second analysis condition, the gravel state of the oil is determined according to the gravel particle size characterization value and the unified gravel particle size value, and the gas lift valve adjustment mode is determined according to the gravel state of the oil, namely, adjusting the opening parameter of the gas lift valve or adjusting the cyclic opening frequency of the gas lift valve;
[0022] The second analysis condition is that the oil production state is a second oil production state.
[0023] Furthermore, the oil grit state includes a first oil grit state in which the grit particle size characterization value is greater than a preset grit particle size characterization value and the grit particle size uniform value is greater than the preset grit particle size uniform value, and a second oil grit state in which the grit particle size characterization value is greater than the preset grit particle size characterization value and the grit particle size uniform value is less than the preset grit particle size uniform value;
[0024] Oil grit parameters include grit particle size characterization value and grit particle size uniform value.
[0025] Furthermore, in adjusting the opening parameters of the gas lift valves, the growth parameters of the gravel particle size characterization values are detected, and the opening parameters of the gas lift valves are increased and adjusted according to the growth parameters;
[0026] The increase in the opening parameter is positively correlated with the growth parameter;
[0027] The growth parameter is the difference between the gravel particle size characterization value corresponding to the current monitoring period and the gravel particle size characterization value corresponding to the most recent monitoring period.
[0028] Furthermore, in adjusting the cyclic opening frequency of the gas lift valve, the difference between the uniform value of the sand and gravel particle size and the preset uniform value of the sand and gravel particle size is detected and recorded as the particle size difference, and the cyclic opening frequency of the gas lift valve is increased according to the particle size difference;
[0029] The increase adjustment amount of the cycle opening frequency is positively correlated with the particle size difference.
[0030] Furthermore, the oil production gas is natural gas.
[0031] Further, oil pipeline;
[0032] The packer is mounted on the side wall of the oil pipe to isolate the oil layer and the formation between the oil pipe and the casing;
[0033] A plurality of gas lift valves, each of which is arranged on the outer wall of the oil pipe and is used to inject oil production gas into the oil pipe;
[0034] a vibration detection device, which is installed on the side wall of the oil pipe and above the packer to detect the vibration frequency of the oil pipe;
[0035] A single-channel rotary valve is arranged at the bottom of the oil pipe and is used to allow oil to enter the oil pipe through an open state.
[0036] Furthermore, each gas lift valve is set at a different height and can be controlled individually.
[0037] Furthermore, the packer is made of stainless steel, and the outer surface of the packer is treated with plasma ions.
[0038] Compared with the prior art, the beneficial effect of the present invention lies in that, in the technical solution of the present invention, the oil production status is determined based on the oil production reference value and the oil fluctuation reference value, the current gas lift effect is effectively reflected through the oil production status, and the production analysis method is effectively selected based on the oil production status, so that the selection of the production analysis method can be more in line with the actual working scenario, further improving the analysis efficiency of the production analysis method for the current gas lift status, thereby improving the refinement of the gas lift control of the present invention.
[0039] Furthermore, the oil flow parameters in the present invention include oil temperature, oil viscosity and oil impurity content. Through the analysis of oil flow parameters, the current oil flow performance can be effectively characterized, avoiding the problem of poor accuracy in determining flow performance due to the characterization of a single parameter, thereby improving the gas injection volume regulation efficiency of the present invention and further improving the gas lift efficiency.
[0040] Furthermore, in the present invention, the oil gravel state is determined based on the gravel particle size characterization value and the unified gravel particle size value. The oil gravel state effectively reflects the gravel situation in the oil, and the reflected gravel situation is not the detection result of a single moment. Therefore, the detection accuracy is improved, and the gas lift valve adjustment mode is determined based on the oil gravel state, so that the selection of the gas lift valve adjustment mode is more in line with the actual production process, thereby improving the effectiveness of the gas lift valve adjustment mode and further improving the refinement of the gas lift control of the present invention.
[0041] Furthermore, in the present invention, in adjusting the cyclic opening frequency of the gas lift valve, the difference between the uniform value of the gravel particle size and the preset uniform value of the gravel particle size is detected, and the cyclic opening frequency of the gas lift valve is increased and adjusted according to the particle size difference. The particle size difference reflects the uniformity of the gravel particle size in the oil, and different amplitudes of increasing the cyclic opening frequency are selected according to different uniformities. By changing the cyclic opening frequency to adjust the open gas lift valve, the influence of gravel on the working efficiency of the gas lift valve is reduced, thereby further improving the gas lift efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] Figure 1 Schematic diagram of a method for using a completion string for a shale oil and gas well according to the present invention;
[0043] Figure 2This is a flow chart of the present invention for determining a production analysis method based on oil production status;
[0044] Figure 3 This is a flow chart of the present invention for determining the gas lift valve adjustment method according to the oil gravel state;
[0045] Figure 4 Schematic diagram of the structure of the completion string of the present invention;
[0046] In the figure: tubing 1, gas lift valve 2, packer 3, casing 4, single-channel rotary valve 5. DETAILED DESCRIPTION
[0047] In order to make the objects and advantages of the present invention more clearly understood, the present invention is further described below in conjunction with embodiments; it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0048] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.
[0049] It should be noted that, in the description of the present invention, terms such as "up", "down", "left", "right", "inside", and "outside" indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on the present invention.
[0050] Furthermore, it should be noted that, in the description of the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0051] See also Figures 1 to 3 As shown, the present invention provides a method for using a completion string for a shale oil and gas well, comprising:
[0052] The oil production gas is continuously injected into the annular space between the tubing and the casing, and is continuously injected into the tubing through the gas lift valves in the open state;
[0053] When the bottom hole pressure reaches the preset pressure value, the single-channel rotary valve is controlled to rotate forward at a constant pressure to open, allowing the oil to flow into the oil pipe;
[0054] Determine the oil production status according to the oil production reference value and the oil fluctuation reference value, and determine the production analysis method according to the oil production status;
[0055] In the analysis of oil flow parameters, threshold analysis is performed on each oil flow parameter, and oil flow parameters that are not within the preset threshold range are recorded as dangerous flow parameters. The response method is determined according to the number of dangerous flow parameters;
[0056] In the analysis of oil gravel parameters, the oil gravel state is determined based on the gravel particle size characterization value and the gravel particle size uniform value, and the gas lift valve adjustment method is determined based on the oil gravel state;
[0057] In adjusting the opening parameters of the gas lift valves, the opening parameters of each gas lift valve are adjusted according to the growth parameters;
[0058] In adjusting the cycle opening frequency of the gas lift valve, the cycle opening frequency of the gas lift valve is adjusted according to the particle size difference.
[0059] Specifically, the production analysis method is determined according to the oil production status, including analysis of oil gravel parameters or analysis of oil flow parameters.
[0060] Specifically, the oil production status is determined based on the oil production reference value and the oil fluctuation reference value. The oil production status is the first oil production status in which the oil production reference value is less than the preset oil production reference value, or the second oil production status in which the oil production reference value is greater than or equal to the preset oil production reference value and the oil fluctuation reference value is greater than the preset oil fluctuation reference value.
[0061] The present invention applies a cyclic monitoring cycle, and the duration of the monitoring cycle can be determined by the user. A monitoring cycle duration is provided, which is 1 hour. Each monitoring cycle corresponds to an oil production reference value and an oil fluctuation reference value. At the end of each monitoring cycle, a production analysis method is determined. The method for confirming the oil production reference value is to detect the oil production every 10 minutes within a single monitoring cycle. The oil production is the oil production of the shale oil and gas well per unit time. The average value of all oil productions monitored within the monitoring cycle is recorded as the oil production reference value. The method for confirming the oil fluctuation reference value is to record the oil fluctuation reference value as S. The calculation formula of S is:
[0062]
[0063] Among them, hi is the oil yield monitored for the i-th time in a single monitoring cycle, h0 is the oil production reference value, and n is the total number of oil yields monitored in a single monitoring cycle; the values of the preset oil production reference value and the preset oil fluctuation reference value can be set by the user according to the actual application scenario. The greater the user's demand for oil production and oil production stability, the larger the value of the preset oil production reference value and the smaller the value of the preset oil fluctuation reference value. A preset oil production reference value and a preset oil fluctuation reference value are provided. The value of the preset oil production reference value can be determined by the user based on the historical mining process. The average value of the oil production reference value that meets the user's mining needs during the mining process is recorded as the preset oil production reference value. It is understandable that the user can filter some records of the historical mining process based on his or her own experience to obtain the historical mining process of the oil well that is most similar to the geological conditions and mining conditions of the current shale oil and gas well. This is content that is easy for technical personnel in this field to understand and will not be elaborated here. The value of the preset oil fluctuation reference value is 20% of h0.
[0064] Specifically, under the first analysis condition, threshold analysis is performed on each oil flow parameter, and oil flow parameters that are not within the preset threshold range are recorded as dangerous flow parameters. The response method is determined according to the number of dangerous flow parameters;
[0065] The treatment method is to adjust the gas injection volume, or conduct manual inspection;
[0066] The manual troubleshooting is performed by the user on the completion string and related oil production equipment. This is already known to those skilled in the art and will not be elaborated on here.
[0067] Oil flow parameters include oil temperature, oil viscosity, and oil impurity content. Each type of oil flow parameter corresponds to a preset threshold range. It is understandable that setting a preset threshold range that meets user needs for different oil flow parameters is something that can be understood by those skilled in the art and will not be elaborated here. Users can determine the preset threshold range that meets the actual application scenario based on historical completion string usage records and operating experience, and there is no need to elaborate on it here.
[0068] The first analysis condition is that the oil production state is the first oil production state.
[0069] Specifically, if the number of dangerous flow parameters is the standard number, the gas injection volume is increased and adjusted;
[0070] If the number of dangerous flow parameters is greater than the standard number, manual investigation is performed.
[0071] Among them, the increase in gas injection volume is negatively correlated with the reference value of oil production, and the standard number is 1. If the number of dangerous flow parameters is 0, there is no need to select a response treatment method.
[0072] Specifically, under the second analysis condition, the oil gravel state is determined according to the gravel particle size characterization value and the gravel particle size uniform value, and the gas lift valve adjustment method is determined according to the oil gravel state, namely, adjusting the opening parameter of the gas lift valve or adjusting the cyclic opening frequency of the gas lift valve;
[0073] The second analysis condition is that the oil production state is a second oil production state.
[0074] Specifically, the oil grit state includes a first oil grit state in which the grit particle size characterization value is greater than a preset grit particle size characterization value and the grit particle size uniform value is greater than the preset grit particle size uniform value, and a second oil grit state in which the grit particle size characterization value is greater than the preset grit particle size characterization value and the grit particle size uniform value is less than the preset grit particle size uniform value;
[0075] Oil grit parameters include grit particle size characterization value and grit particle size uniform value.
[0076] In the first oil gravel state, the gas lift valve adjustment method is to increase the opening parameter of the gas lift valve;
[0077] In the second oil gravel state, the gas lift valve adjustment method is to increase the cycle opening frequency of the gas lift valve;
[0078] Among them, a preset weight of gravel in the produced oil is obtained once. The acquisition method can be to separate the gravel in the produced oil through oil separation and sand removal equipment or to use the gravel particle size characterization value of the cyclone desander. The value of the preset weight can be set by the user according to the actual scenario. The greater the user's demand for the accuracy of the oil gravel state, the larger the value of the preset weight. A certain amount of gravel is taken for particle size detection. The method of particle size detection is easy to understand for those skilled in the art and is not limited here. The uniform value of gravel particle size is recorded as P, P = (H1 / H0) × 0.5 + (H2 / H0) × 0.5, wherein H1 is the maximum particle size obtained by detection minus the particle size The difference between the average value and the average value, H2 is the absolute value of the difference between the minimum particle size detected and the average particle size, H0 is the average particle size, the average particle size is set as the gravel particle size characterization value, the preset gravel particle size characterization value and the preset gravel particle size uniform value can be set by the user according to the actual application scenario. The greater the user's demand for oil collection efficiency, the smaller the value of the preset gravel particle size characterization value. This is content that is easy for technicians in this field to understand. A method for setting the preset gravel particle size uniform value is provided, and the average value of the gravel particle size uniform value corresponding to the mining records that meet the user's mining efficiency requirements in the historical mining records is recorded as the preset gravel particle size uniform value.
[0079] Specifically, in adjusting the opening parameters of the gas lift valves, the growth parameters of the gravel particle size characterization values are detected, and the opening parameters of each gas lift valve are increased and adjusted according to the growth parameters;
[0080] The increase in the opening parameter is positively correlated with the growth parameter;
[0081] The growth parameter is the difference between the gravel particle size characterization value corresponding to the current monitoring period and the gravel particle size characterization value corresponding to the most recent monitoring period.
[0082] Specifically, in adjusting the cyclic opening frequency of the gas lift valve, the difference between the uniform value of the sand and gravel particle size and the preset uniform value of the sand and gravel particle size is detected and recorded as the particle size difference, and the cyclic opening frequency of the gas lift valve is increased according to the particle size difference;
[0083] The increase adjustment amount of the cycle opening frequency is positively correlated with the particle size difference.
[0084] The difference between the uniform gravel particle size value and the preset uniform gravel particle size value is the difference obtained by subtracting the uniform gravel particle size value from the preset uniform gravel particle size value.
[0085] The opening parameter is the injection pressure of the gas lift valve. In the present invention, the gas lift valve adopts a cyclic opening mode, wherein the gas lift valves are sorted in order of installation height from high to low. For example, the gas lift valve closest to the surface is numbered 1, and the gas lift valve closest to the gas lift valve with number 1 is numbered 2, and so on. It will not be described in detail here. The cyclic opening mode is a cyclic opening and closing state of the gas lift valves with odd numbers and the gas lift valves with even numbers, that is, the gas lift valves with odd numbers are opened at the same time, and at this time the gas lift valves with even numbers are all closed. After a preset time, the gas lift valves with odd numbers are all closed, and at this time the gas lift valves with even numbers are all opened, and the above actions are repeated. The cyclic opening frequency is the number of times the odd-numbered gas lift valves are opened within a certain period of time. The cyclic opening frequency can be increased by reducing the preset time.
[0086] Specifically, the oil production gas is natural gas.
[0087] See also Figure 4 As shown, it is a schematic diagram of the structure of the completion string of the present invention, and the completion string includes:
[0088] Oil pipe 1;
[0089] The packer 3 is sleeved on the side wall of the oil pipe 1 to isolate the oil layer and the formation between the oil pipe 1 and the casing 4;
[0090] A plurality of gas lift valves 2, each gas lift valve 2 is arranged on the outer wall of the oil pipe 1, and is used to inject oil production gas into the oil pipe 1;
[0091] a vibration detection device, which is installed on the side wall of the oil pipe and above the packer to detect the vibration frequency of the oil pipe;
[0092] The single-channel rotary valve 5 is provided at the bottom of the oil pipe 1 and is used to allow oil to enter the oil pipe 1 in an open state.
[0093] Specifically, each gas lift valve 2 is installed at a different height and can be controlled individually.
[0094] A configuration method for gas lift valves 2 is provided. The number of gas lift valves 2 is 6, and the distance between any two adjacent gas lift valves is the same.
[0095] Specifically, the material of the packer 3 is stainless steel, and the outer surface of the packer 3 is treated with plasma ions.
[0096] Thus far, the technical solutions of the present invention have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art may make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will fall within the scope of protection of the present invention.
[0097] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.
Claims
1. A method for using a completion string for a shale oil and gas well, characterized in that: include: The oil production gas is continuously injected into the annular space between the tubing and the casing, and is continuously injected into the tubing through the gas lift valves in the open state; When the bottom hole pressure reaches the preset pressure value, the single-channel rotary valve is controlled to rotate forward at a constant pressure to open, allowing the oil to flow into the oil pipe; Determine the oil production status according to the oil production reference value and the oil fluctuation reference value, and determine the production analysis method according to the oil production status; In the analysis of oil flow parameters, threshold analysis is performed on each oil flow parameter, and oil flow parameters that are not within the preset threshold range are recorded as dangerous flow parameters. The response method is determined according to the number of dangerous flow parameters; In the analysis of oil gravel parameters, the oil gravel state is determined based on the gravel particle size characterization value and the gravel particle size uniform value, and the gas lift valve adjustment method is determined based on the oil gravel state; In adjusting the opening parameters of the gas lift valves, the opening parameters of each gas lift valve are adjusted according to the growth parameters; In adjusting the cycle opening frequency of the gas lift valve, the cycle opening frequency of the gas lift valve is adjusted according to the particle size difference.
2. The method for using a completion string for a shale oil and gas well according to claim 1, wherein: The production analysis method is determined according to the oil production status, including analysis of oil gravel parameters or analysis of oil flow parameters.
3. The method for using a completion string for a shale oil and gas well according to claim 2, wherein: The oil production state is determined based on the oil production reference value and the oil fluctuation reference value. The oil production state is a first oil production state in which the oil production reference value is less than a preset oil production reference value, or a second oil production state in which the oil production reference value is greater than or equal to the preset oil production reference value and the oil fluctuation reference value is greater than the preset oil fluctuation reference value.
4. The method for using a completion string for a shale oil and gas well according to claim 3, characterized in that: Under the first analysis condition, threshold analysis is performed on each oil flow parameter, and oil flow parameters that are not within the preset threshold range are recorded as dangerous flow parameters. The response method is determined according to the number of dangerous flow parameters; The treatment method is to adjust the gas injection volume, or conduct manual inspection; Oil flow parameters include oil temperature, oil viscosity, and oil impurity content. Each type of oil flow parameter has a corresponding preset threshold range. The first analysis condition is that the oil production state is the first oil production state.
5. The method for using a completion string for a shale oil and gas well according to claim 3, wherein: If the number of dangerous flow parameters is the standard number, the gas injection volume is increased and adjusted; If the number of dangerous flow parameters is greater than the standard number, manual investigation is performed.
6. The method for using a completion string for a shale oil and gas well according to claim 3, wherein: Under the second analysis condition, the oil gravel state is determined according to the gravel particle size characterization value and the gravel particle size uniform value, and the gas lift valve adjustment method is determined according to the oil gravel state, namely, adjustment of the gas lift valve opening parameter or adjustment of the cyclic opening frequency of the gas lift valve; The second analysis condition is that the oil production state is a second oil production state.
7. The method for using a completion string for a shale oil and gas well according to claim 6, wherein: The oil grit state includes a first oil grit state in which the grit particle size characterization value is greater than a preset grit particle size characterization value and the grit particle size uniform value is greater than the preset grit particle size uniform value, and a second oil grit state in which the grit particle size characterization value is greater than the preset grit particle size characterization value and the grit particle size uniform value is less than the preset grit particle size uniform value; Oil grit parameters include grit particle size characterization value and grit particle size uniform value.
8. The method for using a completion string for a shale oil and gas well according to claim 7, wherein: In adjusting the opening parameters of the gas lift valves, the growth parameters of the gravel particle size characterization values are detected, and the opening parameters of each gas lift valve are increased and adjusted according to the growth parameters; The increase in the opening parameter is positively correlated with the growth parameter; The growth parameter is the difference between the gravel particle size characterization value corresponding to the current monitoring period and the gravel particle size characterization value corresponding to the most recent monitoring period.
9. The method for using a completion string for a shale oil and gas well according to claim 8, characterized in that: In adjusting the cyclic opening frequency of the gas lift valve, the difference between the uniform value of the sand and gravel particle size and the preset uniform value of the sand and gravel particle size is detected and recorded as the particle size difference. The cyclic opening frequency of the gas lift valve is increased according to the particle size difference. The increase adjustment amount of the cycle opening frequency is positively correlated with the particle size difference.
10. The method for using a completion string for a shale oil and gas well according to claim 9, wherein: The oil production gas is natural gas.
11. A completion string using the method according to any one of claims 1 to 10, characterized in that: include: oil pipelines; The packer is mounted on the side wall of the oil pipe to isolate the oil layer and the formation between the oil pipe and the casing; A plurality of gas lift valves, each of which is arranged on the outer wall of the oil pipe and is used to inject oil production gas into the oil pipe; a vibration detection device, which is arranged on the side wall of the oil pipe and above the packer, and is used to detect the vibration frequency of the oil pipe; A single-channel rotary valve is arranged at the bottom of the oil pipe and is used to allow oil to enter the oil pipe through an open state.
12. The completion string according to claim 11, characterized in that: Each gas lift valve is set at a different height and can be controlled individually.
13. The completion string according to claim 12, wherein: The material of the packer is stainless steel, and the outer surface of the packer is treated with plasma ions.
Citation Information
Patent Citations
Gas lifting induced spraying process and gas lifting induced spraying system
CN108386163A
Horizontal well completion string capable of achieving subsection exploiting
CN105863578A
Pipe string and completion method
CN106812510A