WO2014111015A1 - Nouvel échangeur thermique à calandre - Google Patents

Nouvel échangeur thermique à calandre Download PDF

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Publication number
WO2014111015A1
WO2014111015A1 PCT/CN2014/070658 CN2014070658W WO2014111015A1 WO 2014111015 A1 WO2014111015 A1 WO 2014111015A1 CN 2014070658 W CN2014070658 W CN 2014070658W WO 2014111015 A1 WO2014111015 A1 WO 2014111015A1
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WO
WIPO (PCT)
Prior art keywords
tube
medium
heat exchange
distributor
shaped heat
Prior art date
Application number
PCT/CN2014/070658
Other languages
English (en)
Chinese (zh)
Inventor
方真健
覃正乐
蒋志武
Original Assignee
英特换热设备(浙江)有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 英特换热设备(浙江)有限公司 filed Critical 英特换热设备(浙江)有限公司
Publication of WO2014111015A1 publication Critical patent/WO2014111015A1/fr

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D7/00Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
    • F28D7/08Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits being otherwise bent, e.g. in a serpentine or zig-zag
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D7/00Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
    • F28D7/16Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits being arranged in parallel spaced relation
    • F28D7/163Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits being arranged in parallel spaced relation with conduit assemblies having a particular shape, e.g. square or annular; with assemblies of conduits having different geometrical features; with multiple groups of conduits connected in series or parallel and arranged inside common casing
    • F28D7/1638Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits being arranged in parallel spaced relation with conduit assemblies having a particular shape, e.g. square or annular; with assemblies of conduits having different geometrical features; with multiple groups of conduits connected in series or parallel and arranged inside common casing with particular pattern of flow or the heat exchange medium flowing inside the conduits assemblies, e.g. change of flow direction from one conduit assembly to another one
    • F28D7/1646Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits being arranged in parallel spaced relation with conduit assemblies having a particular shape, e.g. square or annular; with assemblies of conduits having different geometrical features; with multiple groups of conduits connected in series or parallel and arranged inside common casing with particular pattern of flow or the heat exchange medium flowing inside the conduits assemblies, e.g. change of flow direction from one conduit assembly to another one with particular pattern of flow of the heat exchange medium flowing outside the conduit assemblies, e.g. change of flow direction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/026Header boxes; End plates with static flow control means, e.g. with means for uniformly distributing heat exchange media into conduits
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/04Arrangements for sealing elements into header boxes or end plates
    • F28F9/16Arrangements for sealing elements into header boxes or end plates by permanent joints, e.g. by rolling
    • F28F9/18Arrangements for sealing elements into header boxes or end plates by permanent joints, e.g. by rolling by welding
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/22Arrangements for directing heat-exchange media into successive compartments, e.g. arrangements of guide plates
    • F28F2009/222Particular guide plates, baffles or deflectors, e.g. having particular orientation relative to an elongated casing or conduit

Definitions

  • the invention relates to the technical field of heat exchangers, and more particularly to a novel shell and tube heat exchanger.
  • the Chinese invention discloses a shell and tube heat exchanger, in which the inlet and outlet of the tube medium are disposed on two tube boxes, and are fixed at Both ends of the casing are manufactured at the time of processing, because the pipe medium (refrigerant) has a high working pressure, and the sealing between the pipe box and the casing is high, which causes processing, manufacturing, and installation difficulties. Moreover, the process medium is easy to cause leakage of the tube medium, and the sealing effect is poor; moreover, one heat exchanger has two joint sealing surfaces, which greatly increases the manufacturing cost. Secondly, the tube medium enters the heat exchange tube, and each heat exchange tube The distribution of the tube-pass medium is uneven, resulting in poor heat exchange efficiency.
  • the object of the present invention is to provide a novel shell-and-tube heat exchanger with high reliability and high heat exchange efficiency according to the deficiencies of the prior art; and the structure is simple, easy to manufacture, and easy to install.
  • the technical solution of the present invention is as follows: a novel shell-and-tube heat exchanger, wherein the novel shell-and-tube heat exchanger is provided with an inlet for a tube-passing medium inlet and a plurality of U-shaped heat exchange tubes, and The tube-forming medium entering from the inlet of the tube-tube medium is evenly distributed to the distributors in the U-shaped heat exchange tubes; the U-shaped heat exchange tubes are two or more U-shaped heat exchange tubes connected in series; 2 Or a plurality of U-shaped heat exchange tubes are connected in series by a U-shaped elbow. By changing the number of U-shaped heat exchange tubes connected in series, the tube length of the heat exchange tubes is multiplied to cause flow from the U-shaped heat exchange tubes.
  • the tube-passing medium enters another U-shaped heat exchange tube again, and the tube-passing medium is repeatedly circulated and returned in two or more U-shaped heat exchange tubes, which can not only make up for the shortcomings of the tube tube shortage, but also shorten the heat exchange.
  • the length of the device reduces the volume of the space; the number of pipe loops is reduced, which is more conducive to the medium distribution, so that the heat exchange efficiency of the heat exchanger is fully exerted.
  • the reduction in the number of tubes makes the dispenser structure more compact.
  • it also includes a collector disposed within the novel shell and tube heat exchanger for communicating the tube through medium outlet and the plurality of U-shaped heat exchanger outlets.
  • the baffle is a spiral or arcuate baffle.
  • the U-shaped heat exchange tube is a reduced diameter tube or a equal diameter tube.
  • the inlet end of the distributor adopts a threaded pipe, and the gas-liquid two-phase of the medium generates turbulent flow in the threaded pipe to be well mixed and uniform, thereby improving the distribution effect.
  • the novel shell-and-tube heat exchanger comprises a casing having a medium inlet and a medium outlet, a plurality of U-shaped heat exchange tubes and a baffle plate, and a cover plate for closing the casing is fixed at the end of the casing.
  • the cover plate is provided with a medium inlet and a medium outlet.
  • An inlet of the medium in the shell-and-tube heat exchanger is connected through a distributor and an inlet of a plurality of u-type heat exchange tubes, and an outlet of the medium is communicated through the collector and an outlet of the plurality of u-type heat exchange tubes;
  • the utility model comprises a distributor body having a through-flow hole, wherein the distributor body is provided with a pipe-length medium throttle portion for throttling and speed-up of the pipe-path medium entering from the inlet of the medium, and the pipe-length medium for speeding up after the throttle is accelerated.
  • the tube-cut medium restricting portion includes an orifice plug disposed in the through-hole, The orifice plug has a through hole for throttling;
  • the dispersing mixing portion includes a mixing cavity formed by the throttle plug and the bottom surface of the through hole and is disposed on a bottom surface of the through hole a tapered body having a tapered diameter near the orifice plug;
  • the tubular medium distribution portion includes a plurality of dispensing holes communicating with the mixing chamber, the distribution orifice axis and the orifice plug axis Straight line distance is linear with the throttle plug away Increase non-linearly.
  • the novel shell-and-tube heat exchanger comprises a casing having a medium inlet and a medium outlet, a plurality of u-shaped heat exchange tubes disposed in the casing, a baffle disposed in the casing, and a fixed baffle a cover plate at the end of the casing, the cover plate is provided with a medium inlet and a medium outlet, and the medium inlet is connected to the inlet of the plurality of u-type heat exchange tubes through a distributor, the medium is an outlet
  • the collector and the outlet of the plurality of u-shaped heat exchange tubes are in communication; the straight tube outer diameter of the U-shaped heat exchange tube connecting portion is the smallest.
  • the collector comprises a body, a plurality of collecting holes uniformly disposed on the body and communicating with the plurality of u-shaped heat exchange tubes, a collecting chamber communicating with the plurality of collecting holes, a mixing chamber, and a plurality of external interfaces that are connected to the mixing chamber, a central axis is disposed in the collection cavity, and a plurality of circular arc grooves are uniformly disposed on the outer circumferential surface of the central axis, and the circular arc groove is provided therein
  • An arc sliding piece that performs 1-2° radial rotation in a circular arc groove, the dividing circular blade is fixed with a separating blade, and the plurality of dividing blades divide the collecting cavity into a plurality of and the collecting a partitioning chamber through which the holes communicate, and the dividing chamber communicates with the mixing chamber through the orifice.
  • the existing collector structures are almost the same, one outlet, a plurality of inlets connected to the heat exchange tubes, and a mixing chamber in the middle, the purpose of which is to collect and discharge the heat exchanged medium.
  • the heat exchange efficiency is not high enough, which is due to the collector factor.
  • the U-shaped heat transfer tubes are multiple, when the heat exchange is performed, because of the position and thickness.
  • the medium in the u-type heat exchange tube is not uniform when it is subjected to heat exchange. Some heat exchange is sufficient, the medium inside the tube is fully vaporized, the pressure inside the tube is relatively high, the flow rate is increased, and some heat exchange is performed.
  • the medium coming out of the heat exchange tube first enters the collection hole, and then Entering the dividing chamber from the collecting hole, and finally entering the mixing chamber through the orifice, discharging from the external interface, when a u-shaped Heat exchange medium within the heat pipes
  • the change When the change is sufficient, it enters the split cavity (we call a), and the pressure in the corresponding split cavity a is relatively large, if it is adjacent to the split cavity (we become b) because of the medium heat exchange in the U-shaped heat transfer tube
  • the pressure of the dividing chamber b is relatively small, so that the two dividing chambers a and b generate a pressure difference, which will push the dividing blade to rotate in the direction of b, so that a
  • the volume is larger than the volume of b, and after the volume of b is compressed, the pressure will rise, which will make the flow of the medium in the U-shaped heat exchange tube communicating with the b-seg
  • a second distributor is disposed between the distributor and the inlet of the U-shaped heat exchange tube, and the second distributor comprises a cylinder, which is disposed on the cylinder and communicates with the distributor a plurality of medium inlet holes and a plurality of medium outlet holes and intermediate holes communicating with the inlets of the plurality of U-shaped heat exchange tubes, wherein the intermediate holes are provided with a fixed shaft, and the outer circumference of the fixed shaft is uniformly distributed a plurality of arc chutes, wherein the arc chute is provided with a sliding piece that can perform 2-3° radial rotation in the arc chute, and the arc sliding piece is fixed with blades, and the plurality of The vanes divide the intermediate bore into a plurality of variable pockets that communicate the media inlet aperture with the media outlet orifice.
  • the novel shell-and-tube heat exchanger of the invention has good reliability and high heat exchange efficiency; and has the advantages of simple structure, easy manufacture and convenient installation.
  • Figure 1 is a schematic view of a novel shell and tube heat exchanger of the present invention
  • Figure 3 is a schematic structural view of the dispenser of the present invention.
  • Figure 4 is a perspective view of the baffle of the present invention
  • Figure 5 is a schematic structural view of the collector of the present invention
  • Figure 6 is a cross-sectional view taken along line K-K of Figure 5;
  • Figure 7 is a partial enlarged view of A in Figure 6;
  • Figure 8 is a schematic structural view of a second dispenser of the present invention.
  • Figure 9 is a cross-sectional view taken along line L-L of Figure 8.
  • Figure 10 is a partial enlarged view of B in Figure 8.
  • distributor 601 - distributor body 601a - through hole, 601b_ throttle plug, 601c_ mixing chamber, 601d_ cone, 601e-distribution hole;
  • a novel shell and tube heat exchanger comprising a housing 10 having a medium 1 inlet 1, a medium 1 outlet 2, a mounting medium 2 inlet/outlet 3, 4, a U shape
  • the heat exchange tube 9, the baffle 11, the U-shaped heat exchange tube 9 are equal diameter tubes or reducers, and two or more U-shaped heat exchange tubes 9 are connected in series.
  • a drain port 13 and exhaust gas are further provided on the casing 10.
  • medium 2 inlet 3 position is located at the front end of the outlet 2 of the medium 2, and is close to the cover 12 of the heat exchanger, medium 2 inlet 3 is provided with medium 2 inlet temperature tube placement port 16
  • the outlet of the medium 2 is provided with a medium 2 outlet temperature sensing tube placing port 17, the end of the housing 10 is connected by a bolt and a cover plate 12, and is sealed by a gasket, and the cover plate 12 is provided with a tube-passing medium 1 Inlet/outlet 1 and 2, in the novel shell-and-tube heat exchanger, the inlet of the tube-cut medium inlet 1 and the plurality of U-shaped heat exchange tubes 901 are provided, and the medium will be
  • the inlet medium entering the inlet 1 is evenly distributed to the distributor 6 in each U-shaped heat exchange tube 902, and the outlet tube 2 and the plurality of the tube medium 1 are provided in the novel shell and tube heat exchanger
  • the collector 7 of the U-shaped heat exchange tube 906 is connected to the outlet.
  • the distributor 6 ensures that the tube-pass medium 1 entering from the tube-process medium inlet 1 can be uniformly distributed into the heat-exchange tube 9, and the collector 7 collects the tube-pass medium 1 in the U-shaped heat exchange tube 9 through the tube-pass medium.
  • the outlet 2 is transported out.
  • the distributor 6 includes a dispenser body 601 having a through hole 601a, and the distributor body 601 is provided with a tubular medium for throttling and speeding up the tubular medium entering from the inlet of the medium 1.
  • the flow portion includes an orifice plug 601b disposed in the through hole, and the throttle plug 601b is welded or riveted in the through hole 601a, or may be integrally formed, and has a through hole for throttling;
  • the dispersing mixing portion includes a mixing chamber 601c formed by the orifice plug 601b and the bottom surface of the through hole, and a cone disposed on the bottom surface of the through hole with a diameter gradually decreasing toward the orifice plug 601d ; the tube-passing medium that has been throttled and accelerated by the orifice plug 601b enters the mixing chamber 601c, is dispersed by the cone 601d, and is mixed, the cone 601d is a cone, and the tube-shaped medium
  • the distributor 6 is located below the collector 7, and the inlet end of the distributor 6 and the outlet end of the collector 7 are fixedly connected to the cover plate 12.
  • the distributor 6 and the U-shaped heat exchange tube 901 are welded and fixed without a tube box and expansion joint.
  • the baffle 8 is made by injection molding or other molding, and is subjected to a molding process by an injection molding process, and has high processing precision and good sealing effect.
  • the novel shell and tube heat exchanger comprises a casing 10 having a medium 2 inlet 3 and a medium 2 outlet 4, a plurality of U-shaped heat exchange tubes 9, and a baffle 11, the end of the casing 10 being fixed
  • the end plate 12 of the casing 10 is closed.
  • the cover plate 12 is provided with a medium 1 inlet 1 and a medium 1 outlet 2, in which the medium 1 inlet 1 passes through the distributor 6 and a plurality of U-shaped tubes.
  • the heat exchange tube 9 is connected to the inlet.
  • the outlet 2 of the medium 1 is communicated through the collector 7 and the outlets of the plurality of U-shaped heat exchange tubes 9.
  • the novel shell-and-tube heat exchanger of the invention has the medium 1 inlet 1 and the medium 1 outlet all disposed on a cover plate, and is connected to the inlet and the outlet of the u-type heat exchange tube through the distributor and the collector respectively, and adopts one end portion. Sealing with a gasket reduces the difficulty of sealing, machining and assembly.
  • the dispenser is used to evenly distribute the tube-passing medium, especially when the vapor-liquid two-phase complex tube-pass medium is more advantageous.
  • the distributor 6 includes a distributor body 601 having a through-flow hole 601a, and the distributor body 601 is provided with a pipe-length medium throttle portion for throttling and speed-up of the pipe-path medium entering from the pipe-process medium inlet 1
  • a dispersing mixing unit that disperses and mixes the tube-length medium after the throttle speed is increased, and a tube-length medium distribution unit that distributes the dispersed tube-length medium.
  • the tube-length medium throttling portion includes an orifice plug 601b disposed in the through-hole;
  • the dispersing mixing portion includes a mixing chamber 601c formed by the orifice plug 601b and a bottom surface of the through-hole And a cone 601d disposed on the bottom surface of the through hole with a diameter gradually decreasing toward the orifice plug ;
  • the tube-length medium distribution portion includes a plurality of distribution holes 601e communicating with the mixing chamber 601c, The linear distance between the axis of the distribution hole 601e and the axis of the orifice plug 601b increases linearly or non-linearly away from the orifice plug 601b.
  • the U-shaped heat exchange tube 9 is repeatedly twisted back into the casing 10 to form a "U" shaped heat exchange tube including a straight portion and a U-shaped portion.
  • the collector 7 and the 906 "U” type heat exchange tube are connected, the 906 "U” type heat exchange tube and the 904 "U” type heat exchange tube are connected by the 905 "U” type elbow, and the 904 "U” type heat exchange
  • the tube and the 902 "U” type heat exchange tube are connected by a 903 "U” type elbow, and the 902 "U” type heat exchange tube and the distributor 6 are connected by a 901 straight tube; the 902, 904 and 906 "U” type exchanges
  • the heat pipes are connected in series by 903 and 905 "U” type elbows to form three baffled circuits. Change the number of baffles and tube length by increasing or decreasing the number of "U” type heat exchange tubes and "U” type elbows; or / Adjust the heat transfer by changing the diameter and length of the "U” type heat exchange tubes Ability size.
  • the 901 straight tube and the 902 "U” type heat exchange tube have the smallest diameter, and are located behind the distributor 6, and the other series of "U” type heat exchange tubes are equal to or smaller than the 902 "U” type heat exchange tubes.
  • the diameter is connected by a suitable "U" elbow.
  • Tube-pass medium refrigerant is a liquid-based vapor-liquid two-phase body.
  • the volume rapidly expands due to the continuous heat absorption of the liquid, and the tube-pass medium 1 is at the front half of the single-path heat exchange tube.
  • the flow rate is not enough, but the flow rate is too fast at the rear half of the heat transfer tube, and the resistance increases, which affects the heat exchange efficiency. Rate, the above measures have solved this problem well and improved the heat exchange efficiency.
  • the baffle 11 is a spiral baffle or a bow baffle, and the edge of the baffle is provided with a skirt having a thickness smaller than that of the baffle.
  • the skirt can overcome the gap between the casing 10 and the baffle due to the dimensional tolerance, avoiding the sidestream and leakage of the medium 2, and ensuring that the baffle does not hang in the casing 10, avoiding the "U" type.
  • the vibration of the heat exchange tube improves the reliability and service life of the heat exchanger product and improves the heat exchange efficiency.
  • the novel shell-and-tube heat exchanger of the present invention can also adopt the following structure.
  • Figures 5, 6, 7, 8, 9, 10 the novel shell-and-tube heat exchanger comprises a medium inlet 3 and a medium outlet 4.
  • a housing 10 a plurality of U-shaped heat exchange tubes 9 disposed in the housing 10, a baffle 11 disposed in the housing 10, and a cover 12 fixed to an end of the housing 10.
  • the housing 10 is end-sealed and has an opening at the other end.
  • the cover 12 seals the opening.
  • the cover 12 is provided with a medium inlet 1 and a medium-outlet 2.
  • the U-shaped heat exchange tube comprises a straight tube and a U-shaped tube.
  • the elbow is inserted into the connecting hole of the baffle 11, and the gap between the baffle 11 and the inner surface of the casing 10 is as small as possible to avoid leakage, and the medium 1 is passed through the distributor 6
  • the medium-outlet 2 is connected through the collector 7 and the outlets of the plurality of U-shaped heat exchange tubes 9
  • the U-shaped heat exchange tubes 9 are changed a diameter pipe, and a straight pipe having a portion connected to the distributor 6 has a minimum outer diameter
  • the collector 7 includes a body 701 and is uniformly disposed at a plurality of collecting holes 702 communicating with the plurality of U-shaped heat exchange tubes 9 on the body 701, a collecting chamber 703 communicating with the plurality of collecting holes 702, a mixing chamber 704, and a communication chamber 704
  • the plurality of external interfaces 705, the external interface 705 and the collecting holes 702 are equal in number, the collecting chamber 703 is one, and the whole collector body is a welded member, which is divided into
  • a circular arc groove 707 wherein the circular arc groove 707 is provided with an arc sliding piece 708 capable of 1-2° radial rotation in the circular arc groove 707, and the circular sliding piece 708 is fixed on the arc
  • partitioning blades 709 and the plurality of dividing blades 709 divide the collecting chamber 703 into a plurality of partitioning chambers 710 communicating with the collecting holes 702.
  • the dividing chambers are sealed chambers, and adjacent dividing chambers are not connected to each other.
  • the dividing cavity 710 passes through the section Communication holes 711 and the mixing chamber 704.
  • a second distributor 18 is disposed between the distributor 6 and the inlet of the U-shaped heat exchange tube 9, and the distributor 6 and the second distributor 18 pass through the connecting pipe.
  • the second distributor 18 includes a cylindrical body 1801, a plurality of medium inlet holes 1802 evenly disposed on the cylindrical body 1801 and the distributor 6 and the plurality of U-shaped heat exchange tubes 9
  • the plurality of medium outlet holes 1803 and the intermediate holes 1804 are connected to each other, and the medium inlet holes 1802 are in communication with the number of the medium outlet holes, and the positions are correspondingly arranged on the two end faces of the cylinder, the cylinder is divided into three parts, and the first part is provided with the medium inlet hole
  • the second part is provided with a medium exit hole
  • the third part is provided with a middle hole
  • the middle hole 1804 is provided with a fixed shaft 1805
  • the fixed shaft 1805 is non-rotatable
  • the fixed shaft 1805 is provided with a plurality of circles on the outer circumferential surface thereof.
  • Arc chute 1806, the circular arc chute 1806 is provided with a sliding piece 1807 which can rotate 2_3° in the circular arc chute 1806, and the arc sliding plate 1807 is fixed with a blade 1808, and the plurality of the blades
  • the intermediate hole 1804 is divided into a plurality of variable cavities 1809 that communicate the media inlet aperture 1802 and the media outlet aperture 1803.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Geometry (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

L'invention porte sur un nouvel échangeur thermique à calandre. Un distributeur (6) est disposé à l'intérieur du nouvel échangeur thermique à calandre. Une entrée de milieu côté tubes (1) communique avec une pluralité d'entrées de tube d'échange de chaleur en forme de U (9) par l'intermédiaire du distributeur (6). Le distributeur (6) distribue le milieu côté tubes entrant à partir de l'entrée de milieu côté tubes (1) de façon régulière dans chaque tube d'échange de chaleur en forme de U (9). Les tubes d'échange de chaleur en forme de U (9) sont deux ou plusieurs tubes d'échange de chaleur en forme de U (9) reliés en série. Les deux ou plusieurs tubes d'échange de chaleur en forme de U (9) sont reliés en série par l'intermédiaire de coudes en forme de U (8). Par le changement du nombre des tubes d'échange de chaleur en forme de U (9) dans une liaison série, la longueur côté tubes des tubes d'échange de chaleur est accrue de façon exponentielle. Le milieu côté tubes s'écoulant à partir du tube d'échange de chaleur en forme de U (9) s'écoule à nouveau dans un autre tube d'échange de chaleur en forme de U (9). Le milieu côté tubes circule vers l'avant et vers l'arrière de multiples fois dans deux ou plusieurs tubes d'échange de chaleur en forme de U (9), de telle sorte que le défaut d'un côté tubes inadéquat est éliminé, et que des avantages de bonne fiabilité et d'installation facile sont obtenus. De plus, des tubes d'échange de chaleur en forme de U (9) peuvent être des tuyaux à diamètre variable. Par la configuration des détails de construction du distributeur (6) et d'un collecteur (7) dans le nouvel échangeur thermique à calandre, le rendement d'échange de chaleur est accru.
PCT/CN2014/070658 2013-01-16 2014-01-15 Nouvel échangeur thermique à calandre WO2014111015A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201310015126.1 2013-01-16
CN201310015126.1A CN103063060B (zh) 2013-01-16 2013-01-16 新型壳管式换热器

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Publication Number Publication Date
WO2014111015A1 true WO2014111015A1 (fr) 2014-07-24

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WO (1) WO2014111015A1 (fr)

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CN109974294A (zh) * 2018-02-08 2019-07-05 淄博河轩化工设备有限公司 一种油用列管式热风加热装置
US11913736B2 (en) * 2017-08-28 2024-02-27 Watlow Electric Manufacturing Company Continuous helical baffle heat exchanger
US11920878B2 (en) * 2017-08-28 2024-03-05 Watlow Electric Manufacturing Company Continuous helical baffle heat exchanger

Families Citing this family (6)

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Publication number Priority date Publication date Assignee Title
CN103063060B (zh) * 2013-01-16 2014-09-17 英特换热设备(浙江)有限公司 新型壳管式换热器
CN103644760B (zh) * 2013-12-04 2015-09-23 新昌县晶鑫精密机械配件厂 一种适用于壳管式换热器的分配器
CN104329979B (zh) * 2014-07-16 2016-08-17 江苏南通申通机械有限公司 一种热管换热器隔板及其热管换热器蒸发端结构
CN109708494A (zh) * 2019-01-06 2019-05-03 佛山市顺德区金舵空调冷冻设备有限公司 一种壳管式换热器
CN110285694B (zh) * 2019-06-19 2024-03-12 武汉方特工业设备技术有限公司 盘管式通道换热器
CN112857127B (zh) * 2021-01-18 2022-05-31 中国神华煤制油化工有限公司 自清洗封头盖及换热设备

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2509532Y (zh) * 2001-09-21 2002-09-04 张凤岭 内埋焊接管壳管式冷凝器
CN1719177A (zh) * 2005-07-01 2006-01-11 彭建华 回管换热器
CN200982777Y (zh) * 2006-12-11 2007-11-28 青岛海信空调有限公司 空调器用分流器
WO2011019314A2 (fr) * 2009-08-12 2011-02-17 Alfa Laval Corporate Ab Système d’échangeur de chaleur pour désodoriseur
CN102374799A (zh) * 2010-08-20 2012-03-14 上海瀚艺冷冻机械有限公司 壳管式换热器
CN202382625U (zh) * 2011-11-24 2012-08-15 江苏沿江化工资源开发研究院有限公司 变径列管式换热器
CN103063060A (zh) * 2013-01-16 2013-04-24 英特换热设备(浙江)有限公司 新型壳管式换热器
CN203163551U (zh) * 2013-01-16 2013-08-28 英特换热设备(浙江)有限公司 新型壳管式换热器

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2509532Y (zh) * 2001-09-21 2002-09-04 张凤岭 内埋焊接管壳管式冷凝器
CN1719177A (zh) * 2005-07-01 2006-01-11 彭建华 回管换热器
CN200982777Y (zh) * 2006-12-11 2007-11-28 青岛海信空调有限公司 空调器用分流器
WO2011019314A2 (fr) * 2009-08-12 2011-02-17 Alfa Laval Corporate Ab Système d’échangeur de chaleur pour désodoriseur
CN102374799A (zh) * 2010-08-20 2012-03-14 上海瀚艺冷冻机械有限公司 壳管式换热器
CN202382625U (zh) * 2011-11-24 2012-08-15 江苏沿江化工资源开发研究院有限公司 变径列管式换热器
CN103063060A (zh) * 2013-01-16 2013-04-24 英特换热设备(浙江)有限公司 新型壳管式换热器
CN203163551U (zh) * 2013-01-16 2013-08-28 英特换热设备(浙江)有限公司 新型壳管式换热器

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11913736B2 (en) * 2017-08-28 2024-02-27 Watlow Electric Manufacturing Company Continuous helical baffle heat exchanger
US11920878B2 (en) * 2017-08-28 2024-03-05 Watlow Electric Manufacturing Company Continuous helical baffle heat exchanger
CN109974294A (zh) * 2018-02-08 2019-07-05 淄博河轩化工设备有限公司 一种油用列管式热风加热装置

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