CN2769810Y - Double-vortex counter current heat exchanger with ribbed plate shape screw flat pipe - Google Patents

Double-vortex counter current heat exchanger with ribbed plate shape screw flat pipe Download PDF

Info

Publication number
CN2769810Y
CN2769810Y CN 200520068496 CN200520068496U CN2769810Y CN 2769810 Y CN2769810 Y CN 2769810Y CN 200520068496 CN200520068496 CN 200520068496 CN 200520068496 U CN200520068496 U CN 200520068496U CN 2769810 Y CN2769810 Y CN 2769810Y
Authority
CN
China
Prior art keywords
pipe
heat exchanger
flat tube
tube
cap
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.)
Expired - Lifetime
Application number
CN 200520068496
Other languages
Chinese (zh)
Inventor
陈则韶
江斌
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
University of Science and Technology of China USTC
Original Assignee
University of Science and Technology of China USTC
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 University of Science and Technology of China USTC filed Critical University of Science and Technology of China USTC
Priority to CN 200520068496 priority Critical patent/CN2769810Y/en
Application granted granted Critical
Publication of CN2769810Y publication Critical patent/CN2769810Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Landscapes

  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

The utility model discloses a double-swirling counter flow type heat exchanger with rib discs and spiral flat pipes. The utility model comprises a heat exchange pipe, a shell body, a barrel cover, an internal fluid inlet pipe, an internal fluid outlet pipe, an external fluid inlet pipe and an external fluid outlet pipe. The utility model is characterized in that the heat exchange pipe is a flat pipe with multiple internal passages, and the outside of the flat pipe with multiple internal passages is provided with ribs; the heat exchange pipe is coiled into a flat pipe spiral disc, and is sealed in a cavity body which is composed of the shell body and a shell body of the heat exchanger, and thus a pipe internal spiral passage of one fluid and a pipe external spiral passage of the other fluid are formed. The height of the rib controls the space of the pipe external passage, and the two fluids counter flow. The utility model integrates the advantages of various heat exchangers, has high heat exchange performance, compact volume, easy manufacture and low cost, and is especially suitable for hot-water production water condensers of heat pumps that the water flow is small and the water and the large temperature rise are required.

Description

Coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing
Technical field:
The utility model belongs to technical field of heat exchangers, particularly a kind of plate-like spiral shell flat tube double swirling counter flow type liquid with ribbing-liquid heat exchanger.
Background technology:
Need a large amount of 45~55 ℃ hot water in the life, the domestic hot water is many is at present provided by electric heater, and how hotel, the required hot water in restaurant are provided by oil burning boiler.Use Teat pump boiler to heat water and generally acknowledge that obvious energy-saving effect is arranged, its key equipment is a water condenser.The water condenser of Teat pump boiler requires cooling water can obtain big temperature rise, and in about 5~7 ℃ of running water temperature in winter, domestic water will reach 45~55 ℃, and temperature rise need reach 40~50 ℃.
According to " thermal conduction study " (higher education publishing house, Yang Shiming, inscription on pottery select work) introduce, existing all kinds heat exchanger, comprise shell-tube type, bushing type, plate-fin, board-like and spiral heat exchanger etc., only 4~7 ℃ of the import and export water temperature difference of design, if will under heat exchange power same case, rise 40~50 ℃ of raisings to water temperature, certainly will the flow of water be reduced greatly, water velocity reduces greatly, thereby makes the heat exchange efficiency of existing heat exchanger reduce greatly.
According to " thermal conduction study) " textbook as can be known, outside the Pass the heat exchange property of heat exchanger removes and has with fluid properties, rate of flow of fluid, the planar condition of heat exchange wall, also closely related with the type of flow of heat exchanger tissue.Existing all kinds of heat exchangers are distinguished by the mutual type of flow of cold and hot fluid, and following current, adverse current, intersection streaming etc. are arranged; The type of flow separately of cold and hot fluid can be divided into direct current, undulating flow and eddy flow in the pipe again, and pipe is outer to stream, baffling, undulating flow and eddy flow etc.The heat exchanger of the mutual adverse current of cold and hot fluid and each spin current form of cold and hot fluid has heat exchange effect preferably, spiral heat exchanger belongs to that this is a kind of, can be referred to as double swirling counter flow type heat exchanger between the spiral plate plate, its shortcoming is that the dividing plate end sealing of heat exchanger is difficult, cold and hot fluid has the danger that brings out existing crossfire at dividing plate, is not suitable for use in the water condenser of refrigeration machine.
Shell and tube exchanger mostly is the straight tube shell-tube type, and the mutual liquid form of its cold and hot fluid totally is an adverse current, and the part is a cross flow, and tube fluid is made direct current, and extratubal fluid is done to stream." the spiral coil steam water heat exchanger " of China Patent No. 94230560.4 propositions adopts the straight tube of shell and tube exchanger changed into the cylindrical helical pipe, and flowing water in the pipe is walked steam outside the pipe, and its tube fluid becomes eddy flow.This cylindrical helical heat exchange of heat pipe can be referred to as the counter-flow heat exchanger of eddy flow in the helix tube, the outer distributary of pipe, than straight tube shell and tube exchanger the higher coefficient of heat transfer is arranged.The counter-flow heat exchanger of the outer distributary of this spiral coil pipe is often seen in the heat exchanger of air-separating plant, and its pipe outside is fit to by the lower fluid of pressure, and extratubal fluid is the horizontal helix tube that skims over, for managing outer cross flow.
Double pipe heat exchanger can be organized the cold and hot fluid countercurrent flow, and the higher coefficient of heat transfer is arranged, and snakelike and spiral coil double pipe heat exchanger is generally arranged, but double pipe heat exchanger totally takes up space greatly, makes high-power heat exchanger and acquires a certain degree of difficulty.
Plate type heat exchanger separates the alternate passage of cold and hot fluid with the book plate, is double oscillation adverse current form, and runner is very narrow, and the very high area and the volume coefficient of heat transfer are arranged, and is compact, but makes the mould complexity, and valency is expensive.Plate-fin heat exchanger also is welded with undulatory fin between plate, the heat transfer area of unit volume is big, belongs to the compact efficient heat exchanger, but complex manufacturing technology only is fit to large-scale gas-to-gas heat exchanger.Because the water flow passage of plate type heat exchanger and refrigerant flow path spacing are almost equal, plate-fin smallest passage spacing also has 4 millimeters, the aquaporin flow velocity is minimum under big temperature rise situation, hot coefficient falls at the end greatly, advantage board-like, the plate-fin heat exchanger high efficient heat exchanging can not be brought into play, so condenser board-like, that plate-fin heat exchanger is difficult to be elected to be Teat pump boiler.
From the above, existing heat exchanger is if be used as the water condenser that big water temperature rises, or because of water flow velocity is too low heat transfer efficiency descended; Or between cold and hot fluid because of poorly sealed, the danger of crossfire is arranged; Or the heat transfer power of unit volume is little.
The utility model content:
The utility model proposes the inside and outside double swirling counter flow type heat exchanger of a kind of spiral flat tube with ribbing, can overcome existing heat exchanger above shortcomings, when making the water condenser of big water temperature liter, still the high efficient heat exchanging ability can be arranged, not have crossfire danger, and volume compact, manufacture craft is simple.
Coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing of the present utility model, comprise: the housing 1 of heat exchanger, heat exchanger tube 2 and cap 5, entrance sleeve 8, the discharge connection 9 of pipe outer flow passage inlet union 6, outlet connection 7 and the heat exchanger tube 2 that is connected with on cap 5 or the housing 1,1 of cap 5 and housing accompany sealing gasket 4, tighten with screw 13,14; It is characterized in that: described heat exchanger tube 2 is many internal channels flat tubes that muscle 3b is arranged in pipe outside 3a with ribbing, the pipe, rolling into the flat tube helical disk is encapsulated in the cavity that is made of housing 1 and cap 5, the upper and lower end face of flat tube helical disk is tightly clamped by the bottom surface of cap 5 and housing 1 respectively, form the bispin circulation road thus: one is coiled spiral flat tube, and another is the helical duct that outer and housing 1 of the pipe of coiled spiral flat tube and cap 5 surround; The height of pipe outer ribs is the spacing of pipe outer flow passage, and the height of muscle is the spacing of pipe inner flow passage in the pipe.
Center and rim area at cap 5 or housing 1 are connected with pipe outer flow passage inlet union 6 and outlet connection 7 respectively; The entrance sleeve 8 of described heat exchanger tube 2, discharge connection 9 pass the hole that cap 5 stays in rim area and center respectively, and put sealing ring 12, pad 11, take over 8,9 ends one section screw is arranged, by tightening the nut of taking on the screw 10, compress sealing ring 12, import and export adapter 8, the 9 hole gaps of stretching out the cover plate place of heat exchanger tube 2 are sealed.
The heat exchanger tube 2 that many internal channels flat tube of muscle 3b is arranged in described pipe outside 3a with ribbing, the pipe can be single with ribbing or two outsides, the outside many internal channels flat tubes with ribbing separately; The inwall of this spiral flat tube or outer wall or inside and outside wall can have microgroove groove tooth.
Because the utility model has adopted pipe outside 3a with ribbing, many internal channels flat tube that muscle 3b is arranged in the pipe, the technology of the flat tube helical disk heat exchanger tube that rolls into, obtained pipe outward turning circulation road dexterously, therefore can obtain the best heat exchange mode of heat exchanger bispin stream adverse current, in the helix tube and the outer fluid of pipe in not stopping to rotate, strengthened heat transfer to each other greatly; And outer flow passage has rib that muscle is arranged in the pipe, has further strengthened the heat exchange effect again; Moreover outer and inner muscle face has all been done fine groove tooth in the pipe, has strengthened the heat exchange effect again; The 4th point, the interior muscle of flat tube make the pipe internal channel can bear high pressure, and the flat tube wall can be very thin, can reduce wall resistance again, strengthens exchange capability of heat again; The 5th point, because roll the spiral flat tube dish with flat tube, little bending radius is arranged, the spiral coil that rolls is extremely compact, heat exchange area per unit volume is big, under the condition of less disk diameter, obtain very long runner, thereby can in the design of heat exchanger of low discharge, accomplish to keep better flow velocity, obtain higher heat transfer efficiency than big temperature rise; Pipe inner high voltage fluid can crossfire outside pipe; Therefore, coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing of the present utility model has almost been concentrated the advantage of various heat exchangers.Heat exchanger below in conjunction with concrete contrast illustrates the effect of the utility model point.
(1), the utility model is compared with spiral heat exchanger, though all be double swirling counter flow type, but spiral heat exchanger is press strip and the end clamp plate sealing that relies on the spiral plate end, and when the adjacency channel pressure differential was very big, high-pressure fluid might go to the low pressure runner from the sealing strip crossfire; And coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing of the present utility model is to rely on the flat tube wall to isolate managing inside and outside fluid, owing in the flat tube a lot of muscle are arranged, flat tube has very high resistance to pressure, and tube fluid can not leak into outside the pipe and go; Secondly, apleuria between the spiral heat exchanger plate, pressure differential between the spiral road will be come balance by the conduit power of plate end and cover plate, when the pressure reduction between adjacent channels is big, can cause the dividing plate distortion, destroy sealing, so be not suitable for doing the water condenser of Teat pump boiler, and flat tube helical disk heat exchanger of the present utility model has outside the pipe interior muscle is arranged in external fin and the pipe, and the circle circle offsets, when in passage, high-pressure fluid being arranged, can decompose the heat exchanger shell outer ring to the helix tube power of stretching, guarantee that runner is indeformable, so can bear the big pressure differential between outer flow passage in the pipe; Moreover owing to apleuria between the pipe of spiral heat exchanger, heat-transfer effect is poor, and flat tube helical disk heat exchanger of the present utility model, have outside the pipe interior muscle is arranged in external fin and the pipe, the pipe surfaces externally and internally all has little shape groove tooth, and the inside and outside fluid of pipe has all increased heat exchange area, and heat-transfer effect is better.
(2), the utility model is compared with screw-casing tubular type heat exchanger, though all be double swirling counter flow type, but double pipe heat exchanger is formed two kinds of fluid passages by interior pipe and outer tube, the omnidistance participation of its outer tube curled, the outer tube of sleeve pipe is the several times of flat tube, therefore the helix-coil radius is more most doubly than flat tube crimp radius, only be suitable for coiled pillar spiral tube exchanger, there is not heat exchanger tube in the spiral coil, so the heat exchanger heat exchange area of unit volume is less, and coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing of the present utility model is the flat tube tray type structure, and volume is very compact; In addition, Tube Sheet of Heat Exchanger pipe of the present utility model has outward in rib and the pipe muscle is arranged, and the pipe surfaces externally and internally all has little shape groove tooth, and the inside and outside fluid of pipe has all increased heat exchange area, has more strengthened heat-transfer effect;
(3), the utility model compares with reverse-flow plate type heat exchanger, reverse-flow plate type heat exchanger fluid can not be done bispin stream, only is that undulating flow is done in the fluctuating of backup plate face; Plate face apleuria slotless tooth, runner is short, 1 meter of long less than, therefore under the requirement of big temperature rise, water flow velocity is extremely low, and heat exchange efficiency descends greatly; And coiled spiral pipe double swirling counter flow type heat exchanger with ribbing of the present utility model, flat tube length can be more than tens meters, have under the requirement of big temperature rise, can also guarantee that current have higher speed, as guaranteeing 0.8~1 meter per second in the winter time, thereby still have greater efficiency, pipe surfaces externally and internally and interior muscle face can adopt the stria toothing to strengthen the heat exchange effect;
(4), the utility model compares with the reverse flow plate-fin heat exchanger, the fin of reverse flow plate-fin heat exchanger is to be welded on the dividing plate technical sophistication with brazing mode, careless slightlyly will cause the high temperature burnt hole, or not weld penetration, it is fit to do large-scale gas-to-gas heat exchanger, and the flow resistance of fin is big; The utility model flat tube with ribbing is that type is made in hot-drawn, and technology is simple.
Owing to coiled spiral pipe double swirling counter flow type heat exchanger with ribbing of the present utility model, concentrated the advantage of multiple heat exchanger, not only be fit to do the water condenser of Teat pump boiler, can also can be used as other heat exchanger usefulness, for example can be used as steam water heat exchanger.Application prospect is very wide.
Description of drawings:
Fig. 1 is a kind of main cutaway view of structural representation of the embodiment 1 of coiled spiral pipe double swirling counter flow type heat exchanger with ribbing of the present utility model; Fig. 2 is its vertical view.
Fig. 3 is single outside many internal channels flat tube sectional schematic diagram with ribbing.
Fig. 4 is two outsides many internal channels flat tube sectional schematic diagrams with ribbing separately.
The specific embodiment:
Further specify concrete technology contents of the present utility model below in conjunction with accompanying drawing.
Embodiment 1:
Accompanying drawing 1 is the main cutaway view of structural representation of the coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing of the utility model embodiment 1, and Fig. 2 is its vertical view; As shown in FIG.: have the flat aluminum pipe of seven internal channels to be rolled into coiled spiral heat exchanger tube 2 with 6 external fin 3a and 6 interior muscle 3b, compact package is in the cavity by heat exchanger shell 1 and cap 5,350 millimeters of the diameters of helix tube dish, high 42 millimeters, thick 4.5 millimeters of flat tube, external fin is high 3 millimeters, on average about 3 millimeters of the tube pitch of the adjacent turn of coiled spiral pipe, the base plate of barrel shell is close in the bottom surface of coiled spiral pipe, and the end face of top layer coiled spiral pipe is close to the cap 5 of barrel shell; Between heat exchanger shell 1 and cap 5 contact-making surfaces rubber gasket 4 is arranged, tighten with screw 12, nut 13; The cap center is connected to pipe outer flow passage inlet union 6 and is reserved with the hole of the discharge connection 9 of heat exchanger tube 2, the cap rim area is connected to pipe outer flow passage outlet connection 7 and is reserved with the hole of the entrance sleeve 8 of heat exchanger tube 2, advancing of heat exchanger tube 2, discharge connection 8,9 with after heat exchanger tube welds, from two preformed holes of cap 5, pass respectively, and put sealing ring 12, pad 11, take over 8, there is one section screw 9 ends, by tightening the nut of taking on the screw 10, compress sealing ring 12, make advancing of heat exchanger tube 2, discharge connection 8, the 9 hole gaps of stretching out the cover plate place are sealed; Formed the bispin circulation road by spiral flat tube 2, housing 1 and cap 5, article one, be the pipe internal channel of coiled spiral flat tube, another is the helical duct that outer and housing 1 of the pipe of coiled spiral flat tube and cap 5 surround, pipe outer ribs height is the spacing of pipe outer flow passage, and the muscle height is the spacing of pipe inner flow passage in the pipe; The inwall of described spiral flat tube has microgroove groove tooth, but also inside and outside wall all has the fine thread groove;
In the vertical view 2, dark circle expression flat heat exchange tube 2 fluid passage, the spiral coil between the adjacent dark circle is the extratubal fluid passage; After refrigeration working medium entered from the entrance sleeve 8 of outmost turns termination, constantly rotation was flowed out by the adapter outlet 9 of center; Be clipped in cover plate 5, constitute the helical duct of extratubal fluid between the pipe of the adjacent turn of the coiled spiral heat exchange tube 2 between housing 1 base plate, after cold water enters in the housing chamber from the entrance sleeve 6 of the extratubal fluid of center, through pipe external spiral passage,, flow out to the outer ring from the inner ring spiral flow by the discharge connection 7 of extratubal fluid; Outer fluid reverse flow in the pipe obtains sufficient heat exchange in bispin stream, refrigeration working medium gas is cooled and condenses into liquid, and cold water is heated to be hot water.About 0.75 square metre of the heat exchange area of this heat exchanger, the specific volume heat exchange area reaches every cubic metre more than 300 square metres, makes condenser with the about 900~1200W/ (m of the coefficient of heat transfer 2K).Intermodulation was changed when the import and export of cold fluid and hot fluid can become among the figure.
Accompanying drawing 3 is sections of the used single outside of the utility model embodiment 1 many internal channels flat tube with ribbing, be divided into 11 internal channels by 10 internal-rib 3b in the flat heat exchange tube 2, flat heat exchange tube 2 external fin 3a also have 10, the external fin height is the width of helix tube outer flow passage, two end rib 3c contact with cap 5 the insides with the bottom surface of housing 1, and it can be fully used the outer surface heat exchange area of flat tube.The width of flat tube and internal channel number can design as required.The width of flat tube can reach 80 millimeters at present; Spiral flat tube inwall or outer wall or inside and outside wall can have microgroove groove tooth.
Accompanying drawing 4 is two outsides many internal channels flat tubes with ribbing at interval, the difference of it and accompanying drawing 3 only is that the external fin 3a of flat tube is that two outsides are with ribbing, and the rib position of two lateral surfaces arranges separately, and purpose is that to be unlikely to fin in order to guarantee to roll coil pipe overlapping, makes helix tube dish end face concordant.Outer fin has to be strengthened conducting heat and the effect of constant current track pitch.The effect that internal-rib 3 has augmentation of heat transfer and improves the pipe bearing capacity.Material can adopt alloy aluminum.

Claims (4)

1, a kind of coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing, comprise: the housing of heat exchanger (1), heat exchanger tube (2) and cap (5), the entrance sleeve (8) of the pipe outer flow passage inlet union (6) that is connected with on cap (5) or the housing (1), outlet connection (7) and heat exchanger tube (2), discharge connection (9), accompany sealing gasket (4) between cap (5) and housing (1), tighten with screw (13), (14); It is characterized in that: described heat exchanger tube (2) is many internal channels flat tube that muscle (3b) is arranged in the pipe outside (3a) with ribbing, the pipe, rolling into the flat tube helical disk is encapsulated in the cavity that is made of housing (1) and cap (5), the upper and lower end face of flat tube helical disk is tightly clamped by the bottom surface of cap (5) and housing (1) respectively, form the bispin circulation road thus: one is coiled spiral flat tube, and another is the helical duct that outer and housing (1) of the pipe of coiled spiral flat tube and cap (5) surround; The height of pipe outer ribs is the spacing of pipe outer flow passage, and the height of muscle is the spacing of pipe inner flow passage in the pipe.
2, coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing according to claim 1 is characterised in that center and the rim area at cap (5) or housing (1) is connected with pipe outer flow passage inlet union (6) and outlet connection (7) respectively; The entrance sleeve (8) of described heat exchanger tube (2), discharge connection (9) pass the hole that cap (5) stays in rim area and center respectively, and put sealing ring (12), pad (11), there is one section screw adapter (8), (9) end, by tightening the nut of taking on the screw (10), compress sealing ring (12), the import and export adapter (8) of heat exchanger tube (2), the hole gap that (9) stretch out the cover plate place are sealed.
3, coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing according to claim 1, be characterised in that the heat exchanger tube (2) that many internal channels flat tube of muscle is arranged in the rifled pipe of the described pipe outside, be single with ribbing or two outsides, the outside many internal channels flat tube with ribbing separately of aluminium material.
4, coiled spiral flat tube double swirling counter flow type heat exchanger with ribbing according to claim 1 is characterised in that the heat exchanger tube (2) that many internal channels flat tube of muscle is arranged in the rifled pipe of the described pipe outside, and its inwall or outer wall or inside and outside wall can have microgroove groove tooth.
CN 200520068496 2005-01-22 2005-01-22 Double-vortex counter current heat exchanger with ribbed plate shape screw flat pipe Expired - Lifetime CN2769810Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200520068496 CN2769810Y (en) 2005-01-22 2005-01-22 Double-vortex counter current heat exchanger with ribbed plate shape screw flat pipe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200520068496 CN2769810Y (en) 2005-01-22 2005-01-22 Double-vortex counter current heat exchanger with ribbed plate shape screw flat pipe

Publications (1)

Publication Number Publication Date
CN2769810Y true CN2769810Y (en) 2006-04-05

Family

ID=36690888

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200520068496 Expired - Lifetime CN2769810Y (en) 2005-01-22 2005-01-22 Double-vortex counter current heat exchanger with ribbed plate shape screw flat pipe

Country Status (1)

Country Link
CN (1) CN2769810Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100401000C (en) * 2005-01-22 2008-07-09 中国科学技术大学 Double swirling counter flow type heat exchanger with rib and coiled spiral flat tube
CN102216716A (en) * 2008-08-26 2011-10-12 帕特里克·吉尔伯特 Heat exchange devices

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100401000C (en) * 2005-01-22 2008-07-09 中国科学技术大学 Double swirling counter flow type heat exchanger with rib and coiled spiral flat tube
CN102216716A (en) * 2008-08-26 2011-10-12 帕特里克·吉尔伯特 Heat exchange devices
CN102216716B (en) * 2008-08-26 2015-07-01 帕特里克·吉尔伯特 Heat exchange devices

Similar Documents

Publication Publication Date Title
CN101226031A (en) Winding type spiral pipe heat exchanger
CN100401000C (en) Double swirling counter flow type heat exchanger with rib and coiled spiral flat tube
CN204495135U (en) The board-like reacting replacing heat device of Novel spiral
CN201050958Y (en) Heat exchange tube with ripple internal wing slice
CN1312455C (en) Plate type heat exchanger
CN201600061U (en) Barrel-type heat exchanger
CN201444006U (en) Full soldering board type overfall heat net heater
CN2544233Y (en) High-efficient heat-exchange sleeve evaporation type condenser
CN2769810Y (en) Double-vortex counter current heat exchanger with ribbed plate shape screw flat pipe
CN105276865A (en) Coaxial threaded tube inner-inserted-core heat exchanger
CN205090836U (en) Double pipe heat exchanger with reinforce heat -transfer surface
CN203518710U (en) Spiral countercurrent flow heat exchange device provided with heat exchange tubes with inward-protruded ribs
CN101566439A (en) Scroll-plate heat exchanger with compact honeycomb structure
CN101975520A (en) Elliptical continuous twisted tube coaxial heat exchanger
CN102022933A (en) Wound pipe heat exchanger
CN2674384Y (en) Plate bundle type heat exchanger
CN101162135A (en) Multi-start screw thread casing heat exchanger
CN202692733U (en) Fin condensing pipe provided with liquid absorption core body
CN201935605U (en) Spiral coil heat exchanger
CN201748713U (en) High-efficiency compact heat exchanger
CN105277021A (en) Coaxial wound heat exchanger
CN2694207Y (en) Vortex heat exchanger
CN201688732U (en) Efficient energy-saving elliptic multi-return heat exchanger
CN2521571Y (en) Petroleum sewage efficent heat exchanger with superconducting heat pipe
CN217520310U (en) High-efficiency heat exchanger

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Effective date of abandoning: 20080709

AV01 Patent right actively abandoned

Effective date of abandoning: 20080709

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