CN202404107U - Fracturing flow-back fluid resourceful analysis and treatment system - Google Patents
Fracturing flow-back fluid resourceful analysis and treatment system Download PDFInfo
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- CN202404107U CN202404107U CN2011205706802U CN201120570680U CN202404107U CN 202404107 U CN202404107 U CN 202404107U CN 2011205706802 U CN2011205706802 U CN 2011205706802U CN 201120570680 U CN201120570680 U CN 201120570680U CN 202404107 U CN202404107 U CN 202404107U
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Abstract
The utility model belongs to the technical field of the fracturing, concretely relates to flowing back liquid resourceization analysis and treatment system is returned to fracturing. The system solves the defects that the analysis of the fracturing flow-back fluid is not comprehensive and reasonable enough, and a system capable of quickly and accurately performing resource analysis treatment on the fracturing flow-back fluid is unavailable in the prior art, and the like, and provides a fracturing flow-back fluid resourceful analysis treatment system which comprises a control system, a sampling system and an analysis system; the sampling system and the analysis system are respectively connected with the control system through electric signals and data signals, and the sampling system is connected with the analysis system through a pipeline. The system realizes the automatic resource analysis and treatment system of the fracturing flow-back fluid, and through the cooperation of each system and each module, the system can efficiently and accurately analyze and treat data, thereby providing reliable guarantee for the resource recycling of the fracturing flow-back fluid.
Description
Technical field
The utility model belongs to the fracturing technique field, and what be specifically related to is a kind of fracturing outlet liquid resource analysis process system.
Background technology
In the performance history of petroleum-based energy, pressure break is one of important means of reconstruction of oil and gas pools raising the output, in the mining operations of oil gas field in occupation of more and more important position.After the pressing crack construction end of job, the part fracturing liquid will return from the stratum and flow back to ground, become fracturing outlet liquid
,Generally, the amount of fracturing outlet liquid accounts for fracturing liquid 40 ~ 60% greatly.It is serious that the fracturing outlet liquid complicated component directly effluxes environmental pollution, can not directly efflux.The disposal route of returning discharge opeing at present mainly is to handle the back to efflux or the re-injection standard to reach, and effluxes the waste that has caused water resource, and in the rare west area of water resource, the of the fracturing fluid preparation that is utilized as once more of water resource provides material guarantee.Yet still lack at present the process equipment that reuses after discharge opeing is handled returning, therefore set up the system that can realize, the equipment of science appraisal method has important directive significance to the formulation of returning the discharge opeing treatment process.
Also there is not a kind of equipment can analyze and provide the recycling processing scheme accurately fast to fracturing outlet liquid in the prior art.
Summary of the invention
In order to overcome prior art to the not enough comprehensive and reasonable of the analysis of fracturing outlet liquid; Do not have to carry out fracturing outlet liquid fast and accurately the deficiencies such as system of resource analyzing and processing, the purpose of the utility model is: a kind of fracturing outlet liquid resource analysis process system is provided.
It is following that the utility model solves the technical scheme that its technical matters adopted: a kind of fracturing outlet liquid resource analysis process system, and it comprises control system, sampling system, analytic system; Said sampling system is connected with control system respectively with data-signal through electric signal with analytic system, and sampling system is connected with analytic system through pipeline.
Said control system comprises main processing block, data acquisition and analysis module, and critical value is formulated module, returns discharge opeing processing scheme module; Data acquisition and analysis module, critical value is formulated module, returns discharge opeing processing scheme module and is connected with main processing block through data-signal.
The transmission of said electric signal and data-signal also can be through the bluetooth equipment of prior art through electric wire and data line realization, and radio transmission apparatus transmits.
The data of data acquisition and the systematic analysis of analysis module extraction and analysis are carried out induction-arrangement and analysis with the gained data; Critical value is formulated module can analyze computing according to place of working and working condition, selects suitable critical value; The critical value that data that data acquisition and analysis module are handled and critical value are formulated module settings sends to main processing block; Through main processing block compare the confirmation after; Screen and computing, select the optimum processing scheme through returning discharge opeing processing scheme module.
Said analytic system comprises the chemical oxygen consumption (COC) pick-up unit, concentration of metal ions pick-up unit, inorganic acid radical ion concentration pick-up unit, turbidity pick-up unit, pH value detection device, any one in the total plate count pick-up unit or multiple; Each device laterally arranges, and is connected with sampling system through pipeline respectively, and is connected with the data acquisition and the analysis module of control system through data-signal.
Said control system also comprises real-time control module; Control module is connected with main processing block through data-signal in real time, sends data-signal through main processing block, is connected with the control sampling system; Send data-signal through main processing block, the control sampling system is sampled automatically.
Also comprise power system, said power system is connected with control system through electric wire, and said power system is battery pack or genset, and convenient whole fracturing outlet liquid resource analysis process system carries out work in the open air.
Compared with prior art, the beneficial effect of the utility model is:
1. native system is realized the automatic resource analysis process system of fracturing outlet liquid, and through the cooperation of each system and module, the analyzing and processing of carrying out data of efficiently and accurately is for the recycling of fracturing outlet liquid resource provides reliable guarantee.
2. prior art evaluation fracturing liquid quality mainly is to investigate vegetable gum performance of products index; And ignored of the influence of dosing water to the fracturing liquid quality; Can fracturing outlet liquid the reuse dosing depend on each organic principle in the water after treatment; The influence of inorganic constituents and microorganism adopts native system comprehensively to detect and evaluation analysis the fracturing liquid quality, relate to water quality each item index to of the fracturing fluid preparation, deposit, the influence of processes such as crosslinked, broken glue, the row of returning.According to the prescribed concentration preparing fracturing fluid, investigate ion concentration, total plate count; COD etc. are to the viscosity release rate, and viscosity is crosslinked; The influence of indexs such as broken glue; Accurately comprehensively analyze more, make well to be reused and to handle, more help the utilization of resource and the protection of environment through the fracturing liquid after the analyzing and processing.
Description of drawings
Fig. 1 is the structural representation of the utility model embodiment 1;
Fig. 2 is the structural representation of the utility model embodiment 2;
Fig. 3 is the structural representation of the utility model embodiment 3.
Embodiment
Below in conjunction with accompanying drawing and embodiment the utility model is further specified, but not as the qualification to the utility model.
Embodiment 1:
A kind of fracturing outlet liquid resource analysis process system, it comprises control system 1, sampling system 2, analytic system 3; Said sampling system 2 is connected with control system 1 respectively with data-signal through electric signal with analytic system 3, and sampling system is connected with analytic system through pipeline 4.
Said control system comprises main processing block 5, data acquisition and analysis module 6, and critical value is formulated module 7, returns discharge opeing processing scheme module 8; Data acquisition and analysis module 6, critical value is formulated module 7, returns discharge opeing processing scheme module 8 and is connected with main processing block 5 through data-signal.
The data that data acquisition and analysis module 6 extraction and analysis systems 3 analyze are carried out induction-arrangement and analysis with the gained data; Critical value is formulated module 7 can analyze computing according to place of working and working condition, selects suitable critical value; The critical value that data that data acquisition and analysis module 6 are handled and critical value are formulated module 7 settings sends to main processing block 5; Through main processing block 5 compare the confirmation after; Screen and computing, select the optimum processing scheme through returning discharge opeing processing scheme module 8.
Said analytic system 3 comprises chemical oxygen consumption (COC) pick-up unit 9, concentration of metal ions pick-up unit 10, inorganic acid radical ion concentration pick-up unit 11, turbidity pick-up unit 12, pH value detection device 13, total plate count pick-up unit 14; Each device laterally arranges, and is connected with sampling system 2 through pipeline 4 respectively, and is connected with the data acquisition and the analysis module 6 of control system 1 through data-signal.
Embodiment 2:
Said control system can also comprise real-time control module 15, and control module is connected with main processing block 5 through data-signal in real time, sends data-signal through main processing block 5, and control sampling system 2 is sampled automatically.All the other are with embodiment 1.
Embodiment 3:
Also comprise power system 16, said power system 16 is a battery pack, connects with control system 1 through electric wire, and convenient whole fracturing outlet liquid resource analysis process system carries out work in the open air, and all the other are with embodiment 1.
Above-described embodiment, the utility model embodiment a kind of more preferably just, common variation that those skilled in the art carries out in the utility model technical scheme scope and replacement all should be included in the protection domain of the utility model.
Claims (6)
1. fracturing outlet liquid resource analysis process system, it is characterized in that: it comprises control system, sampling system, analytic system; Said sampling system is connected with control system respectively with data-signal through electric signal with analytic system, and sampling system is connected with analytic system through pipeline.
2. fracturing outlet liquid resource analysis process system according to claim 1, it is characterized in that: said control system comprises main processing block, data acquisition and analysis module, critical value is formulated module, returns discharge opeing processing scheme module; Data acquisition and analysis module, critical value is formulated module, returns discharge opeing processing scheme module and is connected with main processing block through data-signal.
3. fracturing outlet liquid resource analysis process system according to claim 1; It is characterized in that: said analytic system comprises the chemical oxygen consumption (COC) pick-up unit; The concentration of metal ions pick-up unit, inorganic acid radical ion concentration pick-up unit, turbidity pick-up unit; The pH value detection device, any one in the total plate count pick-up unit or multiple; Each device is connected with sampling system through pipeline respectively, and is connected with the data acquisition and the analysis module of control system through data-signal.
4. fracturing outlet liquid resource analysis process system according to claim 3; It is characterized in that: said analytic system comprises the chemical oxygen consumption (COC) pick-up unit, concentration of metal ions pick-up unit, inorganic acid radical ion concentration pick-up unit; The turbidity pick-up unit; The pH value detection device, the total plate count pick-up unit, each device laterally arranges.
5. fracturing outlet liquid resource analysis process system according to claim 1; It is characterized in that: said control system also comprises real-time control module; Control module is connected with main processing block through data-signal in real time; Send data-signal through main processing block, be connected with the control sampling system.
6. fracturing outlet liquid resource analysis process system according to claim 1 is characterized in that: also comprise power system, said power system is connected with control system.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2011205706802U CN202404107U (en) | 2011-12-30 | 2011-12-30 | Fracturing flow-back fluid resourceful analysis and treatment system |
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Application Number | Priority Date | Filing Date | Title |
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CN2011205706802U CN202404107U (en) | 2011-12-30 | 2011-12-30 | Fracturing flow-back fluid resourceful analysis and treatment system |
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CN202404107U true CN202404107U (en) | 2012-08-29 |
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CN2011205706802U Expired - Lifetime CN202404107U (en) | 2011-12-30 | 2011-12-30 | Fracturing flow-back fluid resourceful analysis and treatment system |
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CN (1) | CN202404107U (en) |
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2011
- 2011-12-30 CN CN2011205706802U patent/CN202404107U/en not_active Expired - Lifetime
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CX01 | Expiry of patent term | ||
CX01 | Expiry of patent term |
Granted publication date: 20120829 |