CN203899323U - Filtering and drying respiratory system of oil storage equipment - Google Patents

Filtering and drying respiratory system of oil storage equipment Download PDF

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Publication number
CN203899323U
CN203899323U CN201420299854.XU CN201420299854U CN203899323U CN 203899323 U CN203899323 U CN 203899323U CN 201420299854 U CN201420299854 U CN 201420299854U CN 203899323 U CN203899323 U CN 203899323U
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CN
China
Prior art keywords
filtration drying
drying tank
storage equipment
oil storage
tank
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Withdrawn - After Issue
Application number
CN201420299854.XU
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Chinese (zh)
Inventor
熊云
龙泉芝
刘晓
许世海
范林君
张陈
周剑
袁祥波
苏鹏
何倩倩
李晓然
陈然
杨浩
倪康康
刘仪坤
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Logistical Engineering University of PLA
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Logistical Engineering University of PLA
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Priority to CN201420299854.XU priority Critical patent/CN203899323U/en
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Publication of CN203899323U publication Critical patent/CN203899323U/en
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Abstract

The utility model discloses a filtering and drying respiratory system of oil storage equipment. The filtering and drying respiratory system of the oil storage equipment is characterized by comprising a respiratory valve and a filtering and drying device connected with the respiratory valve in parallel, wherein the filtering and drying device comprises a filtering and drying tank, a pressure valve and a check valve; the pressure valve is installed on a gas inlet pipe of the filtering and drying tank; the check valve is installed on a gas outlet pipe of the filtering and drying tank; the gas inlet pipe or gas outlet pipe of the filtering and drying tank is provided with a data monitoring device. The filtering and drying respiratory system of the oil storage equipment, which is provided by the utility model, can be used for effectively preventing the moisture in air and fiber dust from entering the oil storage equipment, meanwhile preventing microorganisms attached to the moisture and the fiber dust from entering the oil storage equipment, and prolonging the storage service life of oil products.

Description

Oil storage equipment filtration drying respiratory system
Technical field
The utility model belongs to oil product technical field of memory, specifically, relates to a kind of oil storage equipment filtration drying respiratory system.
Background technology
In the long term storage of oil plant, have and many harmful material of oil product is entered in oil tank by Big and Small Breath, common are moisture, dust and fiber, microorganism and fungi etc.: wherein entering in a large number of moisture can cause microbial contamination, its growth metabolism makes oil quality degradation, for jet fuel, the pollution of microorganism can be stopped up aircraft fuel system, causes aircraft accident, and situation is more severe.
1, moisture: when oil tank is during in vacuum suction state, at this time tank system all can be opened to external world, time length no matter, there is aqueous vapor in capital along with air, enter into oil tank and pipeline, mainly contain the moisture of following several forms: a, fog and rainwater, when raining or hazing, fog or rainwater can naturally be brought in holding vessel along with Tank's Breathing System is air-breathing; B, condensed water, day and night temperature changes the moisture that condensation goes out on the inwall of oil tank mouth or oil tank air intake duct and can enter in oil tank; The steam containing in c, air, air itself has certain humidity, and air humidity contains how many decisions of steam in air, therefore, when oil tank is air-breathing, has a small amount of steam to be brought in the lump oil tank.
And research shows that moisture is that necessary condition, the existence meeting of moisture simultaneously that oil product suspension forms causes antioxidant in burn into extracting oil product to oil tank, pipeline, accelerate oil oxidation, the oil product storage time limit is shortened greatly, and raised growth and the breeding for microorganism simultaneously provides condition.
2, dust and fiber: in air, be covered with dust and fiber, particularly when wind-force is larger, more serious.Under severe environment form, fog is also flooded with a lot of areas.And dust and fiber have a strong impact on oil quality, be that microorganism and suspension generate key factor.
3, airborne microorganism and fungi: airborne microorganism and fungi are ubiquitous, when the special larger moisture of humidity is more, can exist in a large number, when microorganism and fungi enter after oil product, can destroy oil quality.And major microorganisms in oil product is all exactly to have in the soil of periphery and air, illustrates that the microorganism in oil product comes from surrounding enviroment.
Comprehensive above factor, when carrying out oil product storage, owing to storing a year limit for length, easily be subject to the pollution of moisture, dust, fiber, fungi and microorganism etc., produce the problems such as suspension, corrosion tank, seriously perplexing deposit and the safety of oil plant, therefore need especially a kind of device or system, prevent that moisture, fiber, dust, microorganism and fungi etc. from entering into oil plant memory device, to keep storing oil quality, the burn into that reduces the vitals such as oil tank, pipeline prevents the formation of microbial contamination and suspension.
Utility model content
For solving above technical problem, the purpose of this utility model is to provide a kind of oil storage equipment filtration drying respiratory system, moisture, the fiber dust that can effectively prevent air enter oil storage equipment, can prevent that the microorganism being attached on moisture and fiber dust from entering oil storage equipment, improved the storage life of oil product simultaneously.
The utility model object is achieved in that a kind of oil storage equipment filtration drying respiratory system, its key is: comprise breather valve and the filtration drying device in parallel with this breather valve, described filtration drying device comprises filtration drying tank, pressure valve, check valve, described pressure valve is arranged in the air inlet pipe of described filtration drying tank, described check valve is arranged on the escape pipe of described filtration drying tank, on the air inlet pipe of described filtration drying tank or escape pipe, data monitoring device is installed.
Adopt said structure, when the air inlet pressure valve both sides of filtration drying tank, pressure reduction is slightly larger than in 0kpa and the situation lower than 2kpa, (wherein 2kpa pressure is consistent with oil tank standard vacuum degree, variable), pressure valve is opened, when oil storage equipment is air-breathing, air enters by filtration drying device, filtration drying tank filters and is dried the air sucking, and has removed airborne moisture and fiber dust, has removed the microorganism on moisture and fiber dust simultaneously; When the air inlet pressure valve both sides of filtration drying tank pressure reduction slightly equals 0kpa, this respiratory system is not worked, and pressure valve is isolated outside air and filtration drying tank, prevents drier water suction, greatly increase the service life of drier, guaranteed the sealing of oil storage equipment simultaneously; When check valve has guaranteed that oil storage equipment is exhaled, gas is only breathed out by breather valve in parallel, without filtration drying device, breathes out, and increases the service life of drier, prevents that drier oil gas is poisoning, simultaneously quick pressure releasing, guaranteed the security of oil storage equipment; When the air inlet of filtration drying tank and the pressure reduction of gas outlet, in the situation higher than 2kpa, filtration drying tank cannot meet the filtration of air and be dried, and is the safety of protection oil storage equipment, air directly passes through outlet valve, enter fast oil storage equipment, supplementary pressure, guarantees oil storage device security in time; The data monitoring device of installing can be at any time the situation of monitoring filtration drying device inside, as temperature, humidity, pressure etc.
In the cavity of above-mentioned filtration drying tank, be provided with side by side desiccant layer and filter course, described desiccant layer is positioned at gas outlet one side of described filtration drying tank, described filter course is positioned at air inlet one side of described filtration drying tank, filter course has mainly comprised metal filter screen, polyester screen pack and mineral wool, the larger solid particle of metal filtration net filtration wherein, polyester screen pack filters molecule; Mineral wool filters molecule.
Adopt said structure, first the air sucking is filtered, fiber, dust are removed, then be dried, can guarantee that desiccant layer is contaminated, improved the service life of drier in desiccant layer.
Above-mentioned filtration drying tank comprises tank body and cover, and described tank body and cover are by bolt tightening.
Adopt said structure, filtration drying tank convenient disassembly, is convenient to desiccant layer and filter course to take out cleaning.
In above-mentioned tank body, be provided with two parallel clamping plate, these clamping plate radially arrange, and two described clamping plate connect by screw rod, and described clamping plate and described screw rod are by bolt tightening, on these clamping plate, be evenly provided with passage, described desiccant layer and filter course are between two clamping plates.
Adopt said structure, 1, band passage clamping plate can make air uniformly by desiccant layer and filter course; 2, can regulate the distance between two clamping plate by screw rod, desiccant layer and filter course be filled more abundant, also can, according to the oil storage equipment of different model, regulate consumption and the length of drier, to satisfy the demand.
In above-mentioned desiccant layer, be provided with color sensor.
Adopt said structure, drier in desiccant layer is drier self-indicating, as lime drier self-indicating, silica gel drier self-indicating, mineral drier self-indicating, montmorillonite drier self-indicating etc., when drier water suction reaches capacity, desiccant layer change color is maximum, drier no longer possesses the ability that absorbs moisture, color sensor spreads out of data, after processing, alarm will be reported to the police, remind effect, the prompting operator that now drier lost efficacy, do not have filtration drying to take measures in time, change drier.
Above-mentioned data monitoring device comprises digital differential pressure Pressure gauge, the manometric high pressure connection of described digital differential pressure is communicated with the air inlet pipe of described filtration drying tank by the first tracheae, and the manometric low-pressure connector of this digital differential pressure is communicated with the escape pipe of described filtration drying tank by the second tracheae.
Adopt said structure, the air inlet pipe of the monitoring filtration drying tank that digital differential pressure Pressure gauge can be at any time and the pressure differential of escape pipe.
Above-mentioned digital differential pressure Pressure gauge is provided with pressure alarm.
Adopt said structure, after pressure reduction surpasses 2kpa, pressure alarm will be reported to the police, remind that now device for drying and filtering may lose efficacy, filtration drying tank resistance is too large or oil storage equipment pressure decreased is too fast, gas passes through without drying tube, do not have the effect of filtration drying, to remind operator to take measures in time, desiccant layer, filter course are cleaned or changed.
Above-mentioned the first tracheae is communicated with the air inlet pipe of described filtration drying tank, and this connectivity part is near the air inlet of filtration drying tank, and described the second tracheae is communicated with the escape pipe of described filtration drying tank, and this connectivity part is near the gas outlet of filtration drying tank.
Adopt said structure, digital differential pressure Pressure gauge can be at any time the air inlet of monitoring filtration drying tank and the pressure differential of gas outlet, make difference more accurate, drag size and magnitude of pressure differential that monitoring and reflection drying tube produce, thereby regulate consumption and the length of drier, to satisfy the demand.
Above-mentioned data monitoring device also comprises digital pressure gauge and Hygrothermograph, described digital pressure gauge is arranged on the escape pipe of described filtration drying tank, described Hygrothermograph is all installed, described digital pressure gauge and be arranged on Hygrothermograph in the air inlet pipe of described filtration drying tank between described check valve and the gas outlet of filtration drying tank on the air inlet pipe of described filtration drying tank and escape pipe.
Adopt said structure, digital pressure gauge can be monitored the pressure in filtration drying tank escape pipe, and Hygrothermograph can be monitored the changes of contents of moisture in air between the air inlet of filtration drying tank and gas outlet at any time.
According to the content size of pressure and magnitude of pressure differential, gas outlet moisture in air, thereby regulate consumption and the length of drier, with magnitude of pressure differential and the humidity range of satisfying the demand.
Beneficial effect:
A kind of oil storage equipment of the utility model filtration drying respiratory system, moisture, the fiber dust that can effectively prevent air enter oil storage equipment, simultaneously can reduce the microorganism being attached on moisture and fiber dust and enter oil storage equipment, improve storage quality, the prolongation oil product storage phase of oil product, the burn into of minimizing tank body prevents the formation of suspension and the pollution of microorganism.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
The specific embodiment
Below in conjunction with embodiment and accompanying drawing, the utility model is described in further detail.
As shown in Figure 1: a kind of oil storage equipment filtration drying respiratory system, by breather valve 1 and the filtration drying installation composition in parallel with this breather valve 1, described filtration drying device is comprised of filtration drying tank 2a, pressure valve 2b, check valve 2c, described pressure valve 2b is arranged in the air inlet pipe of described filtration drying tank 2a, described check valve 2c is arranged on the escape pipe of described filtration drying tank 2a, on the air inlet pipe of described filtration drying tank 2a or escape pipe, data monitoring device is installed.
Described filtration drying tank 2a is comprised of tank body 2a1 and cover 2a2, and described tank body 2a1 and cover 2a2 are by bolt tightening; In described tank body 2a1, be provided with side by side desiccant layer 3 and filter course 4, in described desiccant layer 3, be provided with color sensor 3a; The inside of described tank body 2a1 is provided with two parallel clamping plate 10, these clamping plate radially arrange, two described clamping plate 10 connect by screw rod 11, described clamping plate 10 and described screw rod 11 are by bolt tightening, on these clamping plate 10, be evenly provided with passage, described desiccant layer 3 and filter course 4 are between two clamping plates 10, and described desiccant layer 3 is positioned at gas outlet one side of described tank body 2a1, and described filter course 4 is positioned at air inlet one side of described tank body 2a1.
Described data monitoring device has digital differential pressure Pressure gauge 5, digital pressure gauge 8 and Hygrothermograph 9.
Described digital differential pressure Pressure gauge 5 is provided with pressure alarm 5a; The high pressure connection of described digital differential pressure Pressure gauge 5 is communicated with the air inlet pipe of described filtration drying tank 2a by the first tracheae 6, this connectivity part is near the air inlet of filtration drying tank 2a, the low-pressure connector of this digital differential pressure Pressure gauge 5 is communicated with the escape pipe of described filtration drying tank 2a by the second tracheae 7, and this connectivity part is near the gas outlet of filtration drying tank 2a.
Described digital pressure gauge 8 is arranged on the escape pipe of described filtration drying tank 2a, described Hygrothermograph 9 is all installed, described digital pressure gauge 8 and be arranged on Hygrothermograph 9 in the air inlet pipe of described filtration drying tank 2a between described check valve 2c and the gas outlet of filtration drying tank 2a on the air inlet pipe of described filtration drying tank 2a and escape pipe.

Claims (9)

1. an oil storage equipment filtration drying respiratory system, it is characterized in that: comprise breather valve (1) and the filtration drying device in parallel with this breather valve (1), described filtration drying device comprises filtration drying tank (2a), pressure valve (2b), check valve (2c), described pressure valve (2b) is arranged in the air inlet pipe of described filtration drying tank (2a), described check valve (2c) is arranged on the escape pipe of described filtration drying tank (2a), on the air inlet pipe of described filtration drying tank (2a) or escape pipe, data monitoring device is installed.
2. oil storage equipment filtration drying respiratory system according to claim 1, it is characterized in that: in the cavity of described filtration drying tank (2a), be provided with side by side desiccant layer (3) and filter course (4), described desiccant layer (3) is positioned at gas outlet one side of described filtration drying tank (2a), and described filter course (4) is positioned at air inlet one side of described filtration drying tank (2a).
3. oil storage equipment filtration drying respiratory system according to claim 1 and 2, it is characterized in that: described filtration drying tank (2a) comprises tank body (2a1) and cover (2a2), described tank body (2a1) and cover (2a2) are by bolt tightening.
4. oil storage equipment filtration drying respiratory system according to claim 3, it is characterized in that: in described tank body (2a1), be provided with two parallel clamping plate (10), these clamping plate (10) radially arrange, two described clamping plate (10) connect by screw rod (11), described clamping plate (10) and screw rod (11) are by bolt tightening, these clamping plate are evenly provided with passage on (10), and described desiccant layer (3) and filter course (4) are positioned between two clamping plates (10).
5. oil storage equipment filtration drying respiratory system according to claim 4, is characterized in that: in described desiccant layer (3), be provided with color sensor (3a).
6. oil storage equipment filtration drying respiratory system according to claim 5, it is characterized in that: described data monitoring device comprises digital differential pressure Pressure gauge (5), the high pressure connection of described digital differential pressure Pressure gauge (5) is communicated with the air inlet pipe of described filtration drying tank (2a) by the first tracheae (6), and the low-pressure connector of this digital differential pressure Pressure gauge (5) is communicated with the escape pipe of described filtration drying tank (2a) by the second tracheae (7).
7. oil storage equipment filtration drying respiratory system according to claim 6, is characterized in that: described digital differential pressure Pressure gauge (5) is provided with pressure alarm (5a).
8. oil storage equipment filtration drying respiratory system according to claim 7, it is characterized in that: described the first tracheae (6) is communicated with the air inlet pipe of described filtration drying tank (2a), this connectivity part is near the air inlet of filtration drying tank (2a), described the second tracheae (7) is communicated with the escape pipe of described filtration drying tank (2a), and this connectivity part is near the gas outlet of filtration drying tank (2a).
9. oil storage equipment filtration drying respiratory system according to claim 5, it is characterized in that: described data monitoring device also comprises digital pressure gauge (8) and Hygrothermograph (9), described digital pressure gauge (8) is arranged on the escape pipe of described filtration drying tank (2a), described Hygrothermograph (9) is all installed on the air inlet pipe of described filtration drying tank (2a) and escape pipe, and described digital pressure gauge (8) and the Hygrothermograph (9) being arranged in the air inlet pipe of described filtration drying tank (2a) are positioned between described check valve (2c) and the gas outlet of filtration drying tank (2a).
CN201420299854.XU 2014-06-06 2014-06-06 Filtering and drying respiratory system of oil storage equipment Withdrawn - After Issue CN203899323U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420299854.XU CN203899323U (en) 2014-06-06 2014-06-06 Filtering and drying respiratory system of oil storage equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420299854.XU CN203899323U (en) 2014-06-06 2014-06-06 Filtering and drying respiratory system of oil storage equipment

Publications (1)

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CN203899323U true CN203899323U (en) 2014-10-29

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104028056A (en) * 2014-06-06 2014-09-10 中国人民解放军后勤工程学院 Filtering, drying and breathing system of oil storage device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104028056A (en) * 2014-06-06 2014-09-10 中国人民解放军后勤工程学院 Filtering, drying and breathing system of oil storage device

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20141029

Effective date of abandoning: 20160504

C25 Abandonment of patent right or utility model to avoid double patenting