CN206199004U - A kind of novel hydraulic energetic disturbance system - Google Patents
A kind of novel hydraulic energetic disturbance system Download PDFInfo
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- CN206199004U CN206199004U CN201621243823.8U CN201621243823U CN206199004U CN 206199004 U CN206199004 U CN 206199004U CN 201621243823 U CN201621243823 U CN 201621243823U CN 206199004 U CN206199004 U CN 206199004U
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- disturbance
- supervisor
- absorption tower
- hydro
- power pump
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Abstract
The utility model is related to a kind of novel hydraulic energetic disturbance system, including:Disturbance layer, it is located at absorption tower stock tank bottom, including disturbance supervisor, disturbance branch pipe and nozzle, disturbance supervisor be connected with absorption tower tower wall, disturbance supervisor is connected with multiple disturbance branch pipes, disturbance branch pipe is fixed on absorption tower stock tank bottom by groined type support, and multiple downward nozzles are connected with every disturbance branch pipe;Hydro-power pump, it is located at outside absorption tower, first feed tube of the first hydro-power pump is connected with absorption tower inside, second feed tube of the second hydro-power pump is connected with absorption tower inside, disturbance supervisor be connected by rubber lined pipe with the first drain pipe of the first hydro-power pump and the second drain pipe of the second hydro-power pump, and rubber lined pipe is connected with disturbance supervisor.The beneficial effects of the utility model:Can guarantee that slurries disturbance effect in absorption tower, stand-by pump can guarantee that unit is normal, overhauled on the premise of stabilization and safeguarded, reduce the maintenance at scene and the operation element amount of maintenance.
Description
Technical field
The utility model is related to technical field of desulfurization, and in particular to a kind of novel hydraulic energetic disturbance system.
Background technology
In wet desulfurization of flue gas by limestone-gypsum method technique, lime stone slurry carries out adverse current to flue gas in absorption tower and washes
Wash, the lime stone sprayed through atomizer is reacted drop with the sulfur dioxide in flue gas, the soluble calcium sulfite of generation
And calcium bisulfite, and be flowed into slurry pool with fine granularity, oxidation fan sprays into oxidation air in slurry pool, in stirring
It is that calcium sulfite and calcium bisulfite almost all force oxidation generation gypsum crystallization in the presence of device.Will with gypsum excavationg pump
Slurries are discharged, and are sent to gypsum cyclone, are concentrated and gradation, and dilute overflowing liquid returns to absorption tower and part and enters waste water
Arranged outside processing system, the underflow of concentration flows to dewaterer carries out gypsum dehydration.
By several important parts in absorption tower, wherein the side-feeding type absorption tower agitator positioned at slurries position is to maintain
The important component that wet method fume desulfurizing system normally runs.The effect of installation side agitator is as follows in the stock tank of absorption tower:(1) place
Solid particle is precipitated in slurry pool, it is ensured that slurries can be uniformly delivered in next technical process;(2) it is oxidation reinforced
The diffusion of air, promotes oxidation, gypsum crystal growth and the dissolving of lime stone of calcium sulfite.If absorption tower side agitator
It is improper to select and set, it will make calcium sulfite oxidation insufficient, limestone utilization is low, has a strong impact on desulfuration efficiency and gives birth to
Into gypsum qualitt.
The whipped form of current desulfuration absorbing tower slurry pool uses side agitator, is primarily present following shortcoming:
(1) concentration of slurry on absorption tower below 20% operational effect preferably, but when slurries are higher, then the fortune of system
Row effect needs to further determine that;
(2) to tower bottom is absorbed, absorb the anti-corrosion of tower bottom then needs further to use Wear-resistant Treatment the nozzle of disturbance layer;
(3) agitator stirring is uneven, causes the deposition at the local deposits of bottom of towe, particularly pump intake, easily causes
The cavitation erosion of pump, during the slurries of high concentration are possibly into pump, causes the damage of pump.
Utility model content
Weak point present in regarding to the issue above, the utility model provides a kind of novel hydraulic energetic disturbance system,
Overcome the local deposits of existing side stirring system, maintenance condition difficult and without redundant shortcoming.
To achieve the above object, the utility model provides a kind of novel hydraulic energetic disturbance system, including:
Disturbance layer, it is located at absorption tower stock tank bottom, and the disturbance layer includes disturbance supervisor, disturbance branch pipe and nozzle, institute
State disturbance supervisor to be connected with absorption tower tower wall, multiple disturbance branch pipes, the disturbance branch pipe are connected with the disturbance supervisor
The absorption tower stock tank bottom is fixed on by groined type support, is connected with the every disturbance branch pipe multiple downward described
Nozzle;
Hydro-power pump, it is located at outside the absorption tower, including the first hydro-power pump and the second hydro-power pump, its
In, the first feed tube of first hydro-power pump is connected with absorption tower inside, and the of second hydro-power pump
Two feed tubes and the absorption tower inside connects, and the disturbance supervisor passes through the of rubber lined pipe and first hydro-power pump
The second drain pipe connection of one drain pipe and second hydro-power pump, the rubber lined pipe is connected with the disturbance supervisor.
Further improved as the utility model, first feed tube and second feed tube are respectively positioned on the line with rubber
The top of pipeline.
Further improved as the utility model, the disturbance supervisor is connected with absorption tower tower wall using flange.
Further improved as the utility model, used between the disturbance supervisor and the disturbance branch pipe and be intertwined and connected.
Further improved as the utility model, used between the disturbance branch pipe and the nozzle and be intertwined and connected or bond
Connection.
Further improved as the utility model, the rubber lined pipe is connected with the disturbance supervisor using flange.
Further improved as the utility model, the corresponding tower bottom that absorbs of the nozzle is provided with anticorrosion antiwear layer.
Further improved as the utility model, the jet expansion is with described the distance between the tower bottom that absorbs
1.2m。
Further improved as the utility model, the disturbance layer is provided with 3~20 nozzles.
Further improved as the utility model, the flow velocity 2m/s~2.8m/s of the disturbance supervisor.
The beneficial effects of the utility model are:
1st, the slurries disturbance effect in absorption tower can effectively be ensured, it is to avoid slurries occur deposition and pile up in stock tank;
The 2nd, two hydro-power pumps are set, and one of them is standby, and in individual equipment failure, stand-by equipment puts into time
Use, with ensure slurries in stock tank it is well mixed, do not deposit;
3rd, hydro-power pump is arranged in absorption tower outside, ensure that unit is normal, carries out system on the premise of stabilization
Maintenance and maintenance, reduce scene maintenance and maintenance operation element amount, save energy consumption;
4th, hydro-power pump is domestic conventional slurries pump, and operation, the cost safeguarded and overhaul are also smaller, is ensureing system
Normally, under the premise of economical operation, with certain economy and Significance for Environment.
Brief description of the drawings
Fig. 1 is a kind of structural representation of novel hydraulic energetic disturbance system of the utility model;
Fig. 2 is the arrangement schematic diagram of nozzle in Fig. 1;
Fig. 3 is the arrangement schematic diagram of disturbance layer in Fig. 1.
In figure:
1st, absorption tower stock tank;2nd, disturbance supervisor;3rd, branch pipe is disturbed;4th, groined type support;5th, nozzle;6A, the first hydraulic pressure are moved
Power pump;6B, the second hydro-power pump;7A, the first feed tube;7B, the second feed tube;8A, the first drain pipe;8B, second go out liquid
Pipe;9th, rubber lined pipe;10th, process water;11st, industry water.
Specific embodiment
As Figure 1-3, a kind of novel hydraulic energetic disturbance system of the utility model embodiment, including disturbance layer and liquid
Pressure power pump.
Disturbance layer is located at the bottom of absorption tower stock tank 1, and disturbance layer includes disturbance supervisor 2, disturbance branch pipe 3 and nozzle 5, disturbance master
Pipe 2 is connected with absorption tower tower wall using flange, and being intertwined and connected on disturbance supervisor 2 has multiple disturbance branch pipes 3, and disturbance branch pipe 3 passes through
Groined type support 4 is fixed on the bottom of absorption tower stock tank 1, is intertwined and connected on every disturbance branch pipe 3 or bonding connection has multiple downward
Nozzle 5.Disturbance supervisor 2 and disturbance branch pipe 3 use FRP or alloy material.
Hydro-power pump is located at outside absorption tower, including the first hydro-power pump 6A and the second hydro-power pump 6B, wherein,
The first feed tube 7A of the first hydro-power pump 6A is connected with absorption tower inside, the second feed tube 7B of the second hydro-power pump 6B
Connected with absorption tower inside, the first drain pipe 8A and second that disturbance supervisor 2 passes through the hydro-power pump 6A of rubber lined pipe 9 and first
The second drain pipe 8B connections of hydro-power pump 6B, rubber lined pipe 9 is connected with disturbance supervisor 2 using flange.Wherein, the first feed liquor
Pipe 7A and the second feed tube 7B are respectively positioned on the top of rubber lined pipe 9.The liquid feeding end of the hydro-power pump 6A of process water 10 and first connects
Connect, industry water 11 is connected with the liquid feeding end of the second hydro-power pump 6B.
The corresponding tower bottom that absorbs of nozzle 5 is provided with anticorrosion antiwear layer, wear-resisting reinforcement is carried out if necessary, using abrasion-proof corrosion-proof brick
Etc. form, such as granite.
The outlet of nozzle 5 for disturbing layer is 1.2m with the distance between tower bottom is absorbed, and is convenient for disturbing the setting of layer.Disturb
The caliber of the disturbance supervisor 2 of dynamic layer is selected according to the flow of hydro-power pump, the flow velocity of disturbance supervisor 2 for 2m/s~
2.8m/s。
The hydro-power pump of hydraulic power perturbed system, nozzle, pipeline design selection it is as shown in the table:
Hydraulic power perturbed system of the present utility model can effectively ensure that slurries are well mixed in absorption tower, Bu Huifa
Raw deposition, while being stopped transport 3~5 days on absorption tower, is not turned on hydraulic power system, fortune that can normally, stable when next time starts
OK, on-bne repair and maintenance are realized when the setting of simultaneity factor ensure that unit normally runs.
Preferred embodiment of the present utility model is the foregoing is only, the utility model is not limited to, for this
For the technical staff in field, the utility model can have various modifications and variations.It is all it is of the present utility model spirit and principle
Within, any modification, equivalent substitution and improvements made etc. should be included within protection domain of the present utility model.
Claims (10)
1. a kind of novel hydraulic energetic disturbance system, it is characterised in that including:
Disturbance layer, it is located at absorption tower stock tank (1) bottom, and the disturbance layer includes disturbance supervisor (2), disturbance branch pipe (3) and spray
Mouth (5), disturbance supervisor (2) is connected with absorption tower tower wall, and multiple disturbance branch pipes are connected with disturbance supervisor (2)
(3), disturbance branch pipe (3) is fixed on absorption tower stock tank (1) bottom, the every disturbance by groined type support (4)
Multiple downward nozzles (5) are connected with branch pipe (3);
Hydro-power pump, it is located at outside the absorption tower, including the first hydro-power pump (6A) and the second hydro-power pump
(6B), wherein, first feed tube (7A) of first hydro-power pump (6A) is connected with absorption tower inside, and described second
Second feed tube (7B) of hydro-power pump (6B) is connected with absorption tower inside, and disturbance supervisor (2) is by rubber-lined pipe
Road (9) goes out with first drain pipe (8A) of first hydro-power pump (6A) and the second of second hydro-power pump (6B)
Liquid pipe (8B) is connected, and the rubber lined pipe (9) is connected with disturbance supervisor (2).
2. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that first feed tube (7A) and
Second feed tube (7B) is respectively positioned on the top of the rubber lined pipe (9).
3. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that disturbance supervisor (2) with inhale
Tower tower wall is received to be connected using flange.
4. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that (2) and institute are responsible in the disturbance
State between disturbance branch pipe (3) using being intertwined and connected.
5. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that the disturbance branch pipe (3) and institute
State between nozzle (5) using being intertwined and connected or bonding connection.
6. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that the rubber lined pipe (9) and institute
Disturbance supervisor (2) is stated to be connected using flange.
7. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that the corresponding suction of the nozzle (5)
Receive tower bottom and be provided with anticorrosion antiwear layer.
8. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that nozzle (5) outlet and institute
It is 1.2m to state the distance between absorption tower bottom.
9. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that the disturbance layer is provided with 3~20
Individual nozzle (5).
10. novel hydraulic energetic disturbance system according to claim 1, it is characterised in that the stream of disturbance supervisor (2)
Fast 2m/s~2.8m/s.
Priority Applications (1)
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CN201621243823.8U CN206199004U (en) | 2016-11-17 | 2016-11-17 | A kind of novel hydraulic energetic disturbance system |
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CN201621243823.8U CN206199004U (en) | 2016-11-17 | 2016-11-17 | A kind of novel hydraulic energetic disturbance system |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110410141A (en) * | 2019-08-30 | 2019-11-05 | 陕西开拓建筑科技有限公司 | A kind of remote slurry filling perturbed system in coal mine gob and method |
CN111282464A (en) * | 2020-03-31 | 2020-06-16 | 中国联合工程有限公司 | Ammonia flue gas desulfurization hydraulic stirring system and operation method thereof |
-
2016
- 2016-11-17 CN CN201621243823.8U patent/CN206199004U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110410141A (en) * | 2019-08-30 | 2019-11-05 | 陕西开拓建筑科技有限公司 | A kind of remote slurry filling perturbed system in coal mine gob and method |
CN111282464A (en) * | 2020-03-31 | 2020-06-16 | 中国联合工程有限公司 | Ammonia flue gas desulfurization hydraulic stirring system and operation method thereof |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170531 Termination date: 20211117 |