WO2009019733A1 - Improved drier for dehumidifying the air intended for oil expansion tank used in electrical equipments - Google Patents

Improved drier for dehumidifying the air intended for oil expansion tank used in electrical equipments Download PDF

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Publication number
WO2009019733A1
WO2009019733A1 PCT/IT2008/000513 IT2008000513W WO2009019733A1 WO 2009019733 A1 WO2009019733 A1 WO 2009019733A1 IT 2008000513 W IT2008000513 W IT 2008000513W WO 2009019733 A1 WO2009019733 A1 WO 2009019733A1
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WO
WIPO (PCT)
Prior art keywords
dryer
air
dehumidification container
dehumidification
container
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/IT2008/000513
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French (fr)
Inventor
Silvio Dal Lago
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Comem SpA
Original Assignee
Comem SpA
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Filing date
Publication date
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Application filed by Comem SpA filed Critical Comem SpA
Priority to BRPI0813591A priority Critical patent/BRPI0813591B8/en
Priority to CN200880110553.5A priority patent/CN101820972B/en
Priority to ES08790084T priority patent/ES2392576T3/en
Priority to MX2010001439A priority patent/MX2010001439A/en
Priority to EP08790084A priority patent/EP2175965B1/en
Priority to CA2695200A priority patent/CA2695200C/en
Publication of WO2009019733A1 publication Critical patent/WO2009019733A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01D—SEPARATION
    • B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/26—Drying gases or vapours
    • B01D53/261—Drying gases or vapours by adsorption
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01D—SEPARATION
    • B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/02—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by adsorption, e.g. preparative gas chromatography
    • B01D53/04—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by adsorption, e.g. preparative gas chromatography with stationary adsorbents
    • B01D53/0407—Constructional details of adsorbing systems
    • B01D53/0438—Cooling or heating systems
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01D—SEPARATION
    • B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/02—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by adsorption, e.g. preparative gas chromatography
    • B01D53/04—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by adsorption, e.g. preparative gas chromatography with stationary adsorbents
    • B01D53/0454—Controlling adsorption
    • G—PHYSICS
    • G01—MEASURING; TESTING
    • G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N5/00—Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid
    • G01N5/02—Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid by absorbing or adsorbing components of a material and determining change of weight of the adsorbent, e.g. determining moisture content
    • G01N5/025—Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid by absorbing or adsorbing components of a material and determining change of weight of the adsorbent, e.g. determining moisture content for determining moisture content
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01D—SEPARATION
    • B01D2259/00—Type of treatment
    • B01D2259/40—Further details for adsorption processes and devices
    • B01D2259/40007—Controlling pressure or temperature swing adsorption
    • B01D2259/40009—Controlling pressure or temperature swing adsorption using sensors or gas analysers
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01D—SEPARATION
    • B01D2259/00—Type of treatment
    • B01D2259/40—Further details for adsorption processes and devices
    • B01D2259/40083—Regeneration of adsorbents in processes other than pressure or temperature swing adsorption
    • B01D2259/40088—Regeneration of adsorbents in processes other than pressure or temperature swing adsorption by heating
    • H—ELECTRICITY
    • H01—ELECTRIC ELEMENTS
    • H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00—Details of transformers or inductances, in general
    • H01F27/08—Cooling; Ventilating
    • H01F27/10—Liquid cooling
    • H01F27/12—Oil cooling
    • H01F27/14—Expansion chambers; Oil conservators; Gas cushions; Arrangements for purifying, drying, or filling

Definitions

  • This invention relates to an improved dryer for dehumidifying the air intended for oil expansion tanks used in electrical equipments, particularly oil isolated such as, for example, power transformers, on load switches and so forth.
  • a drier of the known type includes a dehumidification container, which has an inlet for the air to be dehumidified and an outlet for the dehumidified air, and absorption means, contained in the dehumidification container, suitable for dehumidifying the air coming from the outside .
  • the absorption means consist of a plurality of granules or salts thermally regenerable .
  • the dryer also includes heating means, usually a resistor element, positioned inside the dehumidification container and responsible for the thermal regeneration of ' ' the " absorption- -means .• - .. .
  • the dryer includes detection means of the moisture degree of the dehumidified air, operatively connected with the heating means , Typically, such detection means include a moisture sensor placed outside the dehumidification container, preferably in the vicinity of the exit aperture of the dehumidified air, in any case being able to be positioned in any other position along the path of dry air .
  • the moisture sensor detects the value of residual moisture in the dry air and causes the activation of the heating means if such a value exceeds a maximum allowable value: in fact, this means that the absorption means have lost or are ' losing their absorbent capacity and must be regenerated.
  • the detection of the moisture content of the dry air does not always ensure, ultimately, the complete regeneration of the absorption means because sometimes the air entering the dehumidification container follows preferential routes, this distorting the detection itself.
  • the moisture sensor sets going with high frequency the resistor element responsible to regenerate the absorption means, with the consequence that " the " " continuing cycles of -switching. on and switching off cause unavoidable problems of reliability of the same resistor element.
  • the present invention aims to solve this problem of the known technique .
  • the primary purpose of the invention is to provide an improved dryer for dehumidifying the air intended to expansion tanks of the oil used in electrical equipments more reliable and efficient than the equivalent dryers of the known type . It a second purpose of the present invention monitoring the status of dehumidification of the absorption means of the aforesaid dryer more effectively than the known art.
  • a third purpose of the attached invention is to getready an improved dryer for dehumidifying air intended to expansion tanks of simple construction.
  • the aforesaid purposes are achieved through an improved dryer for dehumidifying the air intended for oil expansion tanks used in electrical equipments as the attached claim 1, which they refer for the sake of brevity.
  • ⁇ -the - improved- -dryer .of ..the invention allows to perform accurate measures of the level of dehumidification of the absorption means and, indirectly, of the degree of moisture of the air just dehumidified while keeping in any case a high level of functional efficiency of the involved members, in particular the heating means .
  • the improved dryer object of the present invention is of simple construction, comparable to that of the dryers of the known art .
  • the aforesaid purposes and advantages will appear better evident with the description of a preferred embodiment of the invention given by illustrative but not limiting way with the aid of the enclosed drawing which shows In simplified longitudinal section the dryer of which protection is hereby required.
  • the improved dryer for dehumidifying the air intended for oil expansion tanks used in electrical equipments is shown in figure 1 globally numbered with 1.
  • a dehumidification container 2 which present a plurality of inlet micro apertures, not visible, for the air to be dehumidified and an outlet 3 for the dehumidified air; absorption means, as a whole marked with 4, - - -contained i-n- the .dehumidi.fi.ca.tion container 2 and suitable for dehumidifying the air coming from the outside ; heating means, as a whole reported with 5, positioned inside the dehumidification container 2 , intended to regenerate the absorption means 4 ; - detection means, overall marked with 6, operatively connected with the heating means 5 , suitable for determining the saturation state of the absorption means 4.
  • the detection means 6 include a transducer 7, coupled to the dehumidification container 2, which directly measure the degree of dehumidification of the absorption means 4.
  • the transducer 7 includes an electronic load cell of the compression type, which converts an applied force in a variation of the electrical resistance.
  • the protection casing 10 is provided at a first ends 10a with a closing flange 11 and at a second end 10b with a collecting sump 12 which receives the condensate that, during use, comes out from the inlet micro apertures of the dehumidification container 2 to convey it outside.
  • the improved dryer 1 comprises a filtering body 16, produced for example in metallic material and arranged at the second end 10b of the protection casing 10.
  • the collection sump 12 presents an inner wall 12a inclined and converging toward the centre so that it defines an essentially triangular profile in cross section.
  • the collection sump 12 is also provided with a projecting spout 17 which has a central opening 18 suitable for the exhaust at the outside of the condensate and into which the filtering body 16 is inserted which, so, is crossed in one direction by the air to be dehumidified and in the opposite direction from the condensate to drain off, produced during the functioning in the dehumidification container 2.
  • the inlets of the air to be dehumidified are made on the side wall 2a of the dehumidification container 2 and where they are uniformly distributed.
  • the dehumidification container 2 and the protection casing 10 are coaxial one each other identifying the same longitudinal axis of symmetry Y.
  • the _clpsing flange 11 includes a main body 19, suitable to be coupled with the expansion tank, and a central shank 20, projecting from the main body 19 and partly inserted into the dehumidification container 2.
  • the through axial hole 21 of the closing flange 11 is coaxial to the longitudinal axis Y.
  • the dehumidification container 2 is provided on one side with a shaped bottom 22 to the transducer 7 is coupled and on the opposite side with a sealing plug 23, sliding on the central shank 20 of the closing flange 11 along the longitudinal axis Y.
  • the dehumidification container 2 is free to slide along the longitudinal axis Y, performing movements of small entity which allow the transducer 7 to perform the function for which is nominally intended to.
  • the absorption means 4 are of the type in itself known to the person skilled in the art, such as salt granules capable to absorb the air moisture and thermally regenerable.
  • the air to be dehumidified enters the central opening 18 of the collection sump 12 and, after passing through the filtering body 16, occupies the interspace 25 defined between the dehumidification container 2 and the protection casing 10.
  • the air to be dehumidified passes through the inlet micro apertures and enters inside the dehumidification container 2 where it is dehumidified by the absorption means 4 before being conveyed outside passing through the outlet 3.

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  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • General Chemical & Material Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Physics & Mathematics (AREA)
  • Biochemistry (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Drying Of Gases (AREA)

Abstract

An improved dryer (1) dehumidifying the air intended for oil expansion tanks used in electrical equipments including a dehumidification container (2), which presents an inlet for the air to be dehumidified and an outlet (3) for the dehumidified air, absorption means (4), contained in the dehumidification container (2) and which dehumidify y the air coming from the outside, heating means (5), positioned inside the dehumidification container (2) and which regenerate the absorption means (4), detection means (6) of the dehumidification degree of the absorption means (4), operatively connected with the heating means (5), which determine the saturation state of the absorption means (4). The detection means (6) include a transducer (7), coupled to the dehumidification container (2), which directly measures the degree of dehumidification of the absorption means (4).

Description

IMPROVED DRIER FOR DEHUMIDIFYING THE AIR INTENDED FOR OIL EXPANSION TANKS USED IN ELECTRICAL EQUIPMENTS
DESCRIPTION
This invention relates to an improved dryer for dehumidifying the air intended for oil expansion tanks used in electrical equipments, particularly oil isolated such as, for example, power transformers, on load switches and so forth.
It ' is" known, "that a" power -electrical-- equipment. containing insulation oil usually includes an expansion tank having the function to compensate the inevitable volume variations of the oil inside the transformer caused by the sudden changes of temperature . Such an expansion tank of the oil is supplied with air previously treated in a special dryer in order to eliminate or drastically reduce the moisture. This is because the air supplied to an expansion tank of the oil even with a minimum amount of residual moisture would result in the negative aspect of reducing the breaking tension of the insulation oil. In the essential and main aspects, a drier of the known type includes a dehumidification container, which has an inlet for the air to be dehumidified and an outlet for the dehumidified air, and absorption means, contained in the dehumidification container, suitable for dehumidifying the air coming from the outside .
Generally, the absorption means consist of a plurality of granules or salts thermally regenerable . The dryer also includes heating means, usually a resistor element, positioned inside the dehumidification container and responsible for the thermal regeneration of' 'the " absorption- -means .• - .. . In addition, the dryer includes detection means of the moisture degree of the dehumidified air, operatively connected with the heating means , Typically, such detection means include a moisture sensor placed outside the dehumidification container, preferably in the vicinity of the exit aperture of the dehumidified air, in any case being able to be positioned in any other position along the path of dry air .
The moisture sensor detects the value of residual moisture in the dry air and causes the activation of the heating means if such a value exceeds a maximum allowable value: in fact, this means that the absorption means have lost or are ' losing their absorbent capacity and must be regenerated. However, in the known dryers the detection of the moisture content of the dry air does not always ensure, ultimately, the complete regeneration of the absorption means because sometimes the air entering the dehumidification container follows preferential routes, this distorting the detection itself.
In such situations, the moisture sensor sets going with high frequency the resistor element responsible to regenerate the absorption means, with the consequence that "the" "continuing cycles of -switching. on and switching off cause unavoidable problems of reliability of the same resistor element. The present invention aims to solve this problem of the known technique .
In particular, the primary purpose of the invention is to provide an improved dryer for dehumidifying the air intended to expansion tanks of the oil used in electrical equipments more reliable and efficient than the equivalent dryers of the known type . It a second purpose of the present invention monitoring the status of dehumidification of the absorption means of the aforesaid dryer more effectively than the known art.
A third purpose of the attached invention is to getready an improved dryer for dehumidifying air intended to expansion tanks of simple construction. The aforesaid purposes are achieved through an improved dryer for dehumidifying the air intended for oil expansion tanks used in electrical equipments as the attached claim 1, which they refer for the sake of brevity.
Other technical features of detail of the improved dryer of the invention are set forth in the dependent claims .
AdvantageousIy ,~ -the - improved- -dryer .of ..the invention allows to perform accurate measures of the level of dehumidification of the absorption means and, indirectly, of the degree of moisture of the air just dehumidified while keeping in any case a high level of functional efficiency of the involved members, in particular the heating means .
Still advantageously, the improved dryer object of the present invention is of simple construction, comparable to that of the dryers of the known art . The aforesaid purposes and advantages will appear better evident with the description of a preferred embodiment of the invention given by illustrative but not limiting way with the aid of the enclosed drawing which shows In simplified longitudinal section the dryer of which protection is hereby required. The improved dryer for dehumidifying the air intended for oil expansion tanks used in electrical equipments is shown in figure 1 globally numbered with 1. It is observed that it includes : a dehumidification container 2 which present a plurality of inlet micro apertures, not visible, for the air to be dehumidified and an outlet 3 for the dehumidified air; absorption means, as a whole marked with 4, - - -contained i-n- the .dehumidi.fi.ca.tion container 2 and suitable for dehumidifying the air coming from the outside ; heating means, as a whole reported with 5, positioned inside the dehumidification container 2 , intended to regenerate the absorption means 4 ; - detection means, overall marked with 6, operatively connected with the heating means 5 , suitable for determining the saturation state of the absorption means 4.
According to the invention, the detection means 6 include a transducer 7, coupled to the dehumidification container 2, which directly measure the degree of dehumidification of the absorption means 4.
In a preferred but not binding way, the transducer 7 includes an electronic load cell of the compression type, which converts an applied force in a variation of the electrical resistance.
The load cell is electrically connected to the supply network of electricity through electric terminals 8. It is understood that in other constructive solutions of the invention, not shown, the detection means may include a transducer of different type with respect to the one just mentioned. "In" addition," other embodiments, - not- .shown in the drawings that follow, will provide for the detecting means a load cell of the traction type, which converts a stretch in a variation of the electrical resistance . The transducer 7 is coupled to the dehumidification container 2 by fastening means, as a whole numbered with 9 and of the type in itself known, such as screws, bolts, rivets, pins, dowels and the like. The improved dryer 1 also includes a protection casing 10, in this case a glass cylinder, which surrounds the dehumidification container 2.
The protection casing 10 is provided at a first ends 10a with a closing flange 11 and at a second end 10b with a collecting sump 12 which receives the condensate that, during use, comes out from the inlet micro apertures of the dehumidification container 2 to convey it outside.
The closing flange 11 and the collection sump 12 are connected one each other through linear rods 13, each of which blocked at the ends with nuts 14, 15. By way of preference, the improved dryer 1 comprises a filtering body 16, produced for example in metallic material and arranged at the second end 10b of the protection casing 10.
The "aix - to- -be-- dehum-i-di-fi-ed- -passes .through . the filtering body 16 before entering the dehumidification container 2.
In particular, the collection sump 12 presents an inner wall 12a inclined and converging toward the centre so that it defines an essentially triangular profile in cross section.
The collection sump 12 is also provided with a projecting spout 17 which has a central opening 18 suitable for the exhaust at the outside of the condensate and into which the filtering body 16 is inserted which, so, is crossed in one direction by the air to be dehumidified and in the opposite direction from the condensate to drain off, produced during the functioning in the dehumidification container 2. According to the preferred embodiment here described of the invention, the inlets of the air to be dehumidified are made on the side wall 2a of the dehumidification container 2 and where they are uniformly distributed. As figure 1 shows, the dehumidification container 2 and the protection casing 10 are coaxial one each other identifying the same longitudinal axis of symmetry Y.
"' Preferably -but not- -necessarily., the _clpsing flange 11 includes a main body 19, suitable to be coupled with the expansion tank, and a central shank 20, projecting from the main body 19 and partly inserted into the dehumidification container 2.
Owing to this constructive form, the outlet 3 of the dehumidified air consists of a through axial hole 21 which affects both the main body 19 and the central shank 20 of the closing flange 11.
The through axial hole 21 of the closing flange 11 is coaxial to the longitudinal axis Y. As shown in figure 1, the dehumidification container 2 is provided on one side with a shaped bottom 22 to the transducer 7 is coupled and on the opposite side with a sealing plug 23, sliding on the central shank 20 of the closing flange 11 along the longitudinal axis Y. Thus, the dehumidification container 2 is free to slide along the longitudinal axis Y, performing movements of small entity which allow the transducer 7 to perform the function for which is nominally intended to.
The improved dryer includes, therefore, seal means, such as for example an annular seal 24, interposed between the sealing plug 23 and the central shank 20
■ o± -the- -closing- fl-ange H-, ...... . . _. , The absorption means 4 are of the type in itself known to the person skilled in the art, such as salt granules capable to absorb the air moisture and thermally regenerable.
In turn, the heating means 5 are of the type in .itself known to the technician of the field, being represented by a generic resistor.
In use, the air to be dehumidified enters the central opening 18 of the collection sump 12 and, after passing through the filtering body 16, occupies the interspace 25 defined between the dehumidification container 2 and the protection casing 10.
Frome here the air to be dehumidified passes through the inlet micro apertures and enters inside the dehumidification container 2 where it is dehumidified by the absorption means 4 before being conveyed outside passing through the outlet 3.
The transducer 7, weighing the dehumidification container 2, detects the degree of dehumidification of the absorption means 4 and, in essence, the moisture degree of the dehumidified air.
The detection by the transducer 7 of a value exceeding a predetermined maximum threshold means that the absorption means 4 have reached the set saturation -levels andv therefore., the...heating means 5 are activated in order to regenerate the former state of the absorption means 4.
The condensate which is inevitably produced in this stage comes out from inlet micro apertures of the side wall 2a of the dehumidification container 2 and, by gravity, reaches the collection sump 12 from where it's conveyed outside through the central opening 18. By virtue of the above, it is understood, therefore, that the improved dryer for dehumidifying the air intended for oil expansion tanks used in electrical equipments according to the invention reaches the purposes and realizes the benefits previously mentioned.
In execution, changes can be made to the improved dryer of the invention consisting, for example, in a dehumidifying container which presents only one inlet of the air to be dehumidified.
In addition, other embodiments of the invention can subsists where the inlets of the air to be dehumidified are arranged in a position different form the one previously described, which does not affect the advantage brought by this patent. Moreover, in other embodiments the dehumidification Container may present more than one outlet of the dehumidified air. . It is clear, finally, that many other variations can be made to the improved dryer in question, without for this reason going out of the novelty principles inherent of the idea inventive, as it is clear that, in the practical implementation of the invention, materials, shapes and sizes of the details could be any, depending on the needs, and could be replaced with other technically equivalent.

Claims

1. Improved dryer (1) for dehumidifying the air intended for oil expansion tanks used in electrical equipments including: a dehumidification container (2) having at least an inlet for said air to be dehumidified and at least an outlet (3) for said dehumidified air; - absorption means (4) , contained in said dehumidification container (2) , suitable to dehumidify said air coming from the outside; heating means (5) , positioned within said dehumidification container (2) , suitable to regenerate said absorption means (4) ; detection means (6) , operatively connected with said heating means (5), suitable to determine the saturation state of said absorption means (4) , characterized in that said detection means (6) include at least one transducer (7) , coupled with said dehumidification container (2) , suitable to measure the degree of dehumidification of said absorption means (4) .
2. Dryer (1) as claim 1) characterized in that said transducer (7) includes an electronic load cell, electrically connected to the supply network of electricity.
3. Dryer as claim 2) characterized in that said load cell is of the traction type converting a stretch in a variation of electrical resistance.
4. Dryer (1) as claim 2) characterized in that said load cell is of the compression type converting an applied force in a variation of electrical resistance .
5. Dryer (1) as claim 1) characterized in that said transducer (7) is coupled with said dehumidification container (2) by fastening means (9) .
6. Dryer (1) as claim 1) characterized in that it comprises a protection casing (10) which surrounds said dehumidification container (2) , provided at a first end (10a) with a closing flange (11) and at a second end (10b) with a collection sump (12) suitable for receiving the condensate coming from said inlet of said dehumidification container (2) to convey it outside.
7. Dryer (1) as claim 6) characterized in that it includes a filtering body (16) , arranged at said second end (10b) of said protection casing (10) , through which said air to be dehumidified passes before entering in said dehumidification container ( 2 ) .
8. Dryer (1) as claim 7) characterized in that said collection sump (12) is provided with a projecting spout (17) which has a central opening (18), suitable for the exhaust of said condensate, in which said filtering body (16) is inserted.
9. Dryer (1) as claim 1) characterized in that said dehumidification container (2) presents on the side wall (2a) a series of inlets through which said air to be dehumidified passes.
10. Dryer (1) as claim 9) characterized in that said inlets are uniformly distributed on said side wall (2a) of said dehumidification container (2) .
11. Dryer (1) as claim 6) characterized in that said dehumidification container (2) and said protection casing (10) are coaxial one each other identifying the same longitudinal axis of symmetry (Y) .
12. Dryer (1) as claim 11) characterized in that said closing flange (11) includes a main body (19) , suitable to be coupled with said expansion tank, and a central shank (20), projecting from said main body (19) and at least partly inserted into said dehumidification container (2) .
13. Dryer (1) as claim 12) characterized in that said outlet (3) of said dehumidified air consists of a through axial hole (21) which affects said main body (19) and said central shank (20) of said closing flange (11) and is coaxial to said longitudinal axis (Y) •
14. Dryer (1) as claim 12) characterized in that said dehumidification container (2) is provided on one side with a shaped bottom (22) to which said transducer (7) is coupled and on the opposite side with a sealing plug (23), sliding on said central shank (20) of said closing flange (11) along said longitudinal axis (Y) .
15. Dryer (1) as claim 14) characterized in that it includes seal means (24) interposed between said sealing plug (23) and said central shank (20) of said closing flange (11) .
PCT/IT2008/000513 2007-08-07 2008-07-29 Improved drier for dehumidifying the air intended for oil expansion tank used in electrical equipments Ceased WO2009019733A1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
BRPI0813591A BRPI0813591B8 (en) 2007-08-07 2008-07-29 DRYER FOR DEHUMIDIFYING THE AIR INTENDED FOR THE OIL EXPANSION TANK USED IN ELECTRICAL EQUIPMENT
CN200880110553.5A CN101820972B (en) 2007-08-07 2008-07-29 Improved dryer for dehumidification of air used for expansion tanks
ES08790084T ES2392576T3 (en) 2007-08-07 2008-07-29 Improved dryer for dehumidification of the air intended for oil expansion tank used in electrical equipment
MX2010001439A MX2010001439A (en) 2007-08-07 2008-07-29 Improved drier for dehumidifying the air intended for oil expansion tank used in electrical equipments.
EP08790084A EP2175965B1 (en) 2007-08-07 2008-07-29 Improved drier for dehumidifying the air intended for oil expansion tank used in electrical equipments
CA2695200A CA2695200C (en) 2007-08-07 2008-07-29 Improved drier for dehumidifying the air intended for oil expansion tanks used in electrical equipments

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITVI2007A00222 2007-08-07
IT000222A ITVI20070222A1 (en) 2007-08-07 2007-08-07 PERFECT DRYER TO DEHUMIDIFY THE AIR INTENDED FOR OIL EXPANSION VESSELS USED IN ELECTRICAL EQUIPMENT.

Publications (1)

Publication Number Publication Date
WO2009019733A1 true WO2009019733A1 (en) 2009-02-12

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITVI20100031A1 (en) * 2010-02-12 2011-08-13 Comem Spa PROCEDURE FOR THE CONTROL OF A DRYER TO DEHUMIDIFY THE AIR INTENDED FOR OIL EXPANSION VESSELS USED IN ELECTRICAL EQUIPMENT
EP2514511A1 (en) * 2011-04-20 2012-10-24 ABB Technology AG Air dehydrating breather assembly for providing dehumidified air to electrical devices, and related method
CN104036926A (en) * 2014-07-01 2014-09-10 国家电网公司 Main transformation respirator with online regeneration function and use method
CN116666056A (en) * 2023-06-08 2023-08-29 华能澜沧江水电股份有限公司 Hygroscopic Absorbers, Transformers and Sorbent Dehumidification Methods

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
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CN105374516A (en) * 2014-08-28 2016-03-02 广西电网公司桂林供电局 Self-healing type moisture absorber for transformer
CN106377982A (en) * 2016-11-16 2017-02-08 国网江苏省电力公司宿迁供电公司 Intelligent drying moisture absorber and dry moisture absorbing method thereof
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CN109036792A (en) * 2018-08-01 2018-12-18 湖北科技学院 A kind of dehumidification device in transformer breather
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DE102018213341A1 (en) * 2018-08-08 2020-02-13 Siemens Aktiengesellschaft Determination of the moisture input in a drying agent for transformers
RU188572U1 (en) * 2018-12-27 2019-04-17 Общество с ограниченной ответственностью "Радиан" Oil Transformer Air Dryer
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WO2022015208A1 (en) * 2020-07-14 2022-01-20 Евгений Анатольевич ПРОСКУРИН Dehumidifier
RU2743877C1 (en) * 2020-08-11 2021-03-01 Григорий Соломонович Марголин A method for installing a voice prosthesis into an opening in the tracheoesophageal wall in a tracheostomy after a larynx removal surgery, and a device for its implementation
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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS57153721A (en) * 1981-03-18 1982-09-22 Toshiba Corp Air dehumidifying apparatus for ozone generator
JPS59179129A (en) * 1983-03-30 1984-10-11 Daihou Giken Kk Humidity controlling device
AU539707B2 (en) * 1978-10-26 1984-10-11 Pall Corporation Downflow or upflow adsorbent fractionator flow control system
US20030089238A1 (en) * 2001-11-13 2003-05-15 Messko Albert Hauser Gmbh & Co. Kg Air demoisturizer for oil-insulated transformers, chokes and tap changers
WO2004043574A1 (en) * 2002-11-12 2004-05-27 Alfred Wiedl Installation for drying or dehydrating goods
WO2004088679A2 (en) * 2003-04-04 2004-10-14 Maschinenfabrik Reinhausen Gmbh Air de-humidifier for oil-insulated transformers, choke coils and step switches
WO2005055255A1 (en) * 2003-12-06 2005-06-16 Maschinenfabrik Reinhausen Gmbh Method for dehumidifying air and air dehumidifier for oil-insulated transformers, reactance coils and step switch
EP1980312A2 (en) * 2007-04-03 2008-10-15 Faiveley Transport Italia S.p.A. Adsorption drying unit with optimised management of the flowrate and/or the regeneration phase and air treatment plant comprising such a unit

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2140808C1 (en) * 1998-08-04 1999-11-10 Друцкий Алексей Васильевич Gas drying plant

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU539707B2 (en) * 1978-10-26 1984-10-11 Pall Corporation Downflow or upflow adsorbent fractionator flow control system
JPS57153721A (en) * 1981-03-18 1982-09-22 Toshiba Corp Air dehumidifying apparatus for ozone generator
JPS59179129A (en) * 1983-03-30 1984-10-11 Daihou Giken Kk Humidity controlling device
US20030089238A1 (en) * 2001-11-13 2003-05-15 Messko Albert Hauser Gmbh & Co. Kg Air demoisturizer for oil-insulated transformers, chokes and tap changers
WO2004043574A1 (en) * 2002-11-12 2004-05-27 Alfred Wiedl Installation for drying or dehydrating goods
WO2004088679A2 (en) * 2003-04-04 2004-10-14 Maschinenfabrik Reinhausen Gmbh Air de-humidifier for oil-insulated transformers, choke coils and step switches
WO2005055255A1 (en) * 2003-12-06 2005-06-16 Maschinenfabrik Reinhausen Gmbh Method for dehumidifying air and air dehumidifier for oil-insulated transformers, reactance coils and step switch
EP1980312A2 (en) * 2007-04-03 2008-10-15 Faiveley Transport Italia S.p.A. Adsorption drying unit with optimised management of the flowrate and/or the regeneration phase and air treatment plant comprising such a unit

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITVI20100031A1 (en) * 2010-02-12 2011-08-13 Comem Spa PROCEDURE FOR THE CONTROL OF A DRYER TO DEHUMIDIFY THE AIR INTENDED FOR OIL EXPANSION VESSELS USED IN ELECTRICAL EQUIPMENT
WO2011099046A1 (en) * 2010-02-12 2011-08-18 Abb S.P.A. Process for controlling dryer capable of dehumidifying air entering the oil expansion vessels used in electrical appliances
CN102811792A (en) * 2010-02-12 2012-12-05 Abb技术有限公司 Process for controlling dryer capable of dehumidifying air entering the oil expansion vessels used in electrical appliances
EP2514511A1 (en) * 2011-04-20 2012-10-24 ABB Technology AG Air dehydrating breather assembly for providing dehumidified air to electrical devices, and related method
WO2012143285A1 (en) * 2011-04-20 2012-10-26 Abb Technology Ag Air dehydrating breather assembly for providing dehumidified air to electrical devices, and related method
US9108149B2 (en) 2011-04-20 2015-08-18 Abb Technology Ag Air dehydrating breather assembly for providing dehumidified air to electrical devices, and related method
CN104036926A (en) * 2014-07-01 2014-09-10 国家电网公司 Main transformation respirator with online regeneration function and use method
CN116666056A (en) * 2023-06-08 2023-08-29 华能澜沧江水电股份有限公司 Hygroscopic Absorbers, Transformers and Sorbent Dehumidification Methods

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BRPI0813591A2 (en) 2015-10-13
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CN101820972B (en) 2013-06-05
ITVI20070222A1 (en) 2009-02-08
BRPI0813591B8 (en) 2022-10-18
RU2010102794A (en) 2011-09-20
EP2175965B1 (en) 2012-08-29
BRPI0813591B1 (en) 2018-10-30
CA2695200A1 (en) 2009-02-12
UA96500C2 (en) 2011-11-10
CA2695200C (en) 2016-07-05
CO6260109A2 (en) 2011-03-22
ES2392576T3 (en) 2012-12-11
MX2010001439A (en) 2010-06-02
RU2463099C2 (en) 2012-10-10
EP2175965A1 (en) 2010-04-21

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