CN218862723U - Heat dissipation device for case of biogas generator set - Google Patents
Heat dissipation device for case of biogas generator set Download PDFInfo
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- CN218862723U CN218862723U CN202320111404.2U CN202320111404U CN218862723U CN 218862723 U CN218862723 U CN 218862723U CN 202320111404 U CN202320111404 U CN 202320111404U CN 218862723 U CN218862723 U CN 218862723U
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- fan
- ring
- ring body
- generator set
- frame
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E50/00—Technologies for the production of fuel of non-fossil origin
- Y02E50/30—Fuel from waste, e.g. synthetic alcohol or diesel
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Abstract
The utility model discloses a heat dissipation device for a biogas generator set case, which comprises a heat conduction plate (1), a condensation pipe (2) and a fan mechanism (3); the heat conducting plate (1) and the fan mechanism (3) are both rectangular structures; the condensation pipe (2) is clamped between the heat-conducting plate (1) and the fan mechanism (3). The utility model provides a heat abstractor for marsh gas generating set machine case, flat column structure installs at the top of quick-witted case, does not occupy quick-witted incasement space, can set up 1 or a plurality of at quick-witted roof portion the utility model provides a heat abstractor for marsh gas generating set machine case to reach high-efficient radiating purpose.
Description
Technical Field
The utility model relates to a new forms of energy and marsh gas engineering technical field especially relate to a heat abstractor for marsh gas generating set machine case.
Background
The methane is a high-quality energy source and a greenhouse gas, and if the methane is not utilized, the energy source is wasted, and the environment is seriously polluted. In order to change waste into valuable and change the harm into treasure, considerable economic benefit, environmental protection benefit and social benefit can be obtained after the project is built. The methane generator set is a machine device which takes methane as fuel to generate electricity. The methane generating set can be divided into two types, namely a single fuel methane generating set and a dual fuel methane-diesel generating set. The working principle of the single-fuel methane generator set is as follows: the mixed objects in the air and the methane are continuously compressed in the cylinder, then the mixed objects are burnt by the spark plug, power is obtained through the continuous piston movement, and then the cylinder is connected with the generator to generate electricity. The working principle of the dual-fuel methane-diesel generating set is as follows: the method comprises the steps of continuously compressing mixed objects in air and methane in a cylinder, then burning the mixed objects by using ignition fuel, obtaining power through continuous piston movement, and then connecting the cylinder with a generator to generate power.
In the prior art, a biogas generator set is usually arranged in a case, so that the biogas generator set is convenient to transport and maintain, and new requirements are provided for the heat dissipation problem of the biogas generator set. The case in the prior art adopts the mode that the fan is arranged on the side wall of the case body to radiate the inner space of the case, however, the radiating technology in the prior art has lower radiating efficiency and can not meet the requirement of radiating the biogas generator set arranged in the case.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a heat abstractor for marsh gas generating set machine case.
The utility model provides a heat dissipation device for a biogas generator set case, which comprises a heat conduction plate (1), a condensation pipe (2) and a fan mechanism (3); the heat conducting plate (1) and the fan mechanism (3) are both rectangular structures; the condensation pipe (2) is clamped between the heat-conducting plate (1) and the fan mechanism (3). The condensation pipe (2) extends along the length direction of the heat conducting plate (1) and is arranged in an S-shaped spiral mode.
The condensation pipe (2) comprises a first end portion (21) and a second end portion (22), and the first end portion (21) and the second end portion (22) are arranged on the same side of the heat conducting plate (1). The first end part (21) and the second end part (22) are both provided with a condensation pipe connecting end (201); the condenser pipe connecting end (201) is formed by connecting a first sleeve ring (211), a second sleeve ring (212), a third sleeve ring (213) and a fourth sleeve ring (214) which are coaxially fixed in sequence. The first collar (211), the second collar (212) and the third collar (213) comprise a first ring body (215) and a second ring body (216); the first ring body (215) is a cylindrical ring body structure; the inner diameter of the first ring body (215) corresponds to the outer diameter of the condensation pipe (2); the second ring body (216) is of a conical ring body structure; the second ring (216) includes a first port (2161) and a second port (2162), and an outer diameter of the first port (2161), an inner diameter of the second port (2162), and an outer diameter of the condenser tube (2) are consistent. The fourth collar (214) comprises a third ring body (2141) and a fourth ring body (2142); the third ring body (2141) is of a cylindrical ring body structure; the inner diameter of the third ring body (2141) is in accordance with the outer diameter of the condenser tube (2); the fourth ring (2142) is of a conical ring structure; the fourth ring (2142) comprising a third port (21421) and a fourth port (21422); the outer diameter of the third port (21421), the inner diameter of the fourth port (21422) and the outer diameter of the condensation tube (2) are the same.
The first ring body (215) has a length of 1.5 cm; the third ring body (2141) has a length of 15 cm. The position of the condensation pipe (2) close to the first end part (21) and the second end part (22) is provided with a bending part (23); the fan mechanism (3) comprises a fan frame (31) and a fan body (32) arranged on the fan frame (31); the fan frame (31) is of a rectangular structure provided with six fan mounting holes (311) arranged in a matrix; the fan mounting hole (311) is a circular through hole, and the fan body (32) is clamped in the fan mounting hole (311) and fixed with the fan frame (31) through screws. The fan body (32) comprises a first cover body structure (321), a second cover body structure (322), a protective frame (323), a rotating shaft and a blade structure (325); the first cover body structure (321) is a rectangle with a circular through hole in the center; the second cover body structure (322) is a cylindrical structure; the second cap structure (322) comprises a first cap structure (321) end and a second cap structure (322) end; the first cover body structure (321) is fixed at the edge of the circular through hole; the protective frame (323) is of a circular structure and is fixed at the end of the first cover body structure (321); the rotating shaft is arranged at the central position of the protective frame (323); the blade structure (325) is sleeved on the rotating shaft. The second cover body structure (322) is clamped in the fan mounting hole (311); the first cover structure (321) is fixed with the fan frame (31) through screws.
The heat dissipation device for the case of the biogas generator set provided by the utility model has high heat dissipation efficiency, and can meet the heat dissipation requirement of arranging the biogas generator set in the case; the utility model provides a heat abstractor for marsh gas generating set machine case, flat column structure installs at the top of quick-witted case, does not occupy quick-witted incasement space, can set up 1 or more at quick-witted roof portion the utility model provides a heat abstractor for marsh gas generating set machine case to reach high-efficient radiating purpose.
Drawings
Fig. 1 is a schematic view of the overall structure of a heat dissipation device for a biogas generator set case according to an embodiment of the present invention;
fig. 2 is a schematic view of a condensation pipe structure in the heat dissipation device for the case of the biogas generator set according to the embodiment of the present invention;
fig. 3 is a schematic structural view of a first end or a second end of a condensation pipe in the heat dissipation device for the case of the biogas generator set according to the embodiment of the present invention;
fig. 4 is a schematic structural view of a fan frame in the heat dissipation device for the biogas generator set case according to the embodiment of the present invention;
fig. 5 is a schematic view of the assembly of the fan body in the heat dissipation device for the biogas generator set case according to the embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
The embodiment provides a heat dissipation device for a case of a biogas generator set, which comprises a heat conduction plate 1, a condensation pipe 2 and a fan mechanism 3; the heat conducting plate 1 and the fan mechanism 3 are both rectangular structures; the condensation pipe 2 is clamped between the heat conducting plate 1 and the fan mechanism 3. As can be understood by those skilled in the art, the heat dissipation device for the case of the biogas generator set provided by the embodiment is installed at the top of the case, one side provided with the heat conduction plate 1 faces the inside of the case, and the other side provided with the fan mechanism 3 faces the outside of the case, so that heat generated by the generator set inside the case is transferred to the condensation pipe 2 through the introduction plate for cooling; the fan mechanism 3 is used for accelerating air flow, timely cooling the heat-conducting plate 1 and the condensation pipe 2 and improving the heat dissipation efficiency.
The condensation pipe 2 extends along the length direction of the heat conducting plate 1 and is spirally arranged in an S shape. As can be understood by those skilled in the art, the contact area between the condensation pipe 2 and the heat-conducting plate 1 can be increased, and the condensation efficiency can be improved.
The condensation duct 2 comprises a first end portion 21 and a second end portion 22, the first end portion 21 and the second end portion 22 being disposed on the same side of the heat conducting plate 1. As will be appreciated by those skilled in the art, this may facilitate installation and maintenance.
The first end part 21 and the second end part 22 are both provided with a condensation pipe connecting end 201; the condenser pipe connecting end 201 is formed by connecting a first lantern ring 211, a second lantern ring 212, a third lantern ring 213 and a fourth lantern ring 214 which are coaxially fixed in sequence.
The first collar 211, the second collar 212 and the third collar 213 each comprise a first ring body 215 and a second ring body 216; the first ring body 215 is a cylindrical ring body structure; the inner diameter of the first ring body 215 corresponds to the outer diameter of the condenser tube 2; the second ring 216 is a conical ring structure; the second ring 216 includes a first port 2161 and a second port 2162, and the outer diameter of the first port 2161, the inner diameter of the second port 2162 and the outer diameter of the condenser 2 are consistent.
The fourth collar 214 includes a third ring body 2141 and a fourth ring body 2142; the third ring body 2141 has a cylindrical ring body structure; the third ring body 2141 has a cylindrical ring body structure; the inner diameter of the third ring body 2141 corresponds to the outer diameter of the condenser tubes 2; the fourth ring 2142 has a tapered ring structure; the fourth ring 2142 includes a third port 21421 and a fourth port 21422. The outer diameter of the fourth port 21422, the inner diameter of the third port 21421, and the outer diameter of the condenser tube 2 are the same.
The first ring body 215 has a length of 1.5 cm;
the third ring body 2141 has a length of 15 cm.
It will be understood by those skilled in the art that the third ring 2141 is fitted around the end of the condenser tube 2, thereby fixing the condenser tube connecting end 201 to the condenser tube 2.
The condenser tube 2 is provided with a bent portion 23 at a position close to the first end portion 21 and the second end portion 22, so that the first end portion 21 and the second end portion 22 are extended toward the inside of the cabinet.
The fan mechanism 3 includes a fan frame 31 and a fan body 32 mounted on the fan frame 31; the fan frame 31 is a rectangular structure provided with six fan mounting holes 311 arranged in a matrix; the fan mounting hole 311 is a circular through hole, and the fan body 32 is clamped in the fan mounting hole 311 and fixed to the fan frame 31 by screws. Those skilled in the art can understand that the six fan bodies 32 arranged in a matrix can effectively dissipate heat of the condenser tube 2 and the heat conducting plate 1, and the heat dissipation effect is better.
The fan body 32 comprises a first cover structure 321, a second cover structure 322, a protective frame 323, a rotating shaft 324 and a blade structure 325; the first cover structure 321 is a rectangle with a circular through hole in the center; the second cover structure 322 is a cylindrical structure; the second housing structure 322 includes a first end 3221 and a second end 3222; the first cover structure 321 is fixed at the edge of the circular through hole; the protective frame 323 is of a circular structure and is fixed at the first end 3221; the rotating shaft 324 is arranged at the center of the protective frame 323; the blade structure 325 is sleeved on the rotating shaft 324. It will be appreciated by those skilled in the art that the shaft 324 is rotated by the motor to rotate the blade structure 325 for air flow and heat exchange purposes. The connection relationship between the rotating shaft 324 and the motor is a technical means conventionally used in the prior art, and will not be described herein.
The second cover structure 322 is clamped in the fan mounting hole 311; the first cover structure 321 is fixed to the fan frame 31 by screws. Those skilled in the art will understand that the second cover structure 322 forms a receiving space protruding toward the condensation pipe 2, and the blades are disposed in the receiving space, so that the blades are closer to the condensation pipe 2 and the guiding plate, thereby achieving better heat dissipation.
The fan body 32 further comprises a protective cover 326, wherein the protective cover 326 comprises a circular outer frame 3261 and a grid inner frame 3262; the annular outer frame 3261 is clamped at the second end 3222; the grid inner frame 3262 is secured to the end of the outer annular frame 3261 distal from the second end 3222.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.
Claims (9)
1. A heat dissipation device for a case of a biogas generator set is characterized by comprising a heat conduction plate (1), a condensation pipe (2) and a fan mechanism (3); the heat conducting plate (1) and the fan mechanism (3) are both rectangular structures; the condensation pipe (2) is clamped between the heat-conducting plate (1) and the fan mechanism (3); the condensation pipe (2) extends along the length direction of the heat conducting plate (1) and is spirally arranged in an S shape; the condensation duct (2) comprises a first end portion (21) and a second end portion (22), the first end portion (21) and the second end portion (22) being arranged on the same side of the heat-conducting plate (1); the first end part (21) and the second end part (22) are both provided with a condensation pipe connecting end (201); the condenser pipe connecting end (201) is formed by connecting a first sleeve ring (211), a second sleeve ring (212), a third sleeve ring (213) and a fourth sleeve ring (214) which are coaxially fixed in sequence.
2. The heat dissipation device for a biogas generator set cabinet according to claim 1, wherein the first collar (211), the second collar (212), and the third collar (213) each comprise a first ring body (215) and a second ring body (216); the first ring body (215) is a cylindrical ring body structure; the inner diameter of the first ring body (215) corresponds to the outer diameter of the condensation pipe (2); the second ring body (216) is of a conical ring body structure; the second ring (216) includes a first port (2161) and a second port (2162), and an outer diameter of the first port (2161), an inner diameter of the second port (2162), and an outer diameter of the condenser tube (2) are consistent.
3. The heat dissipation device for a biogas generator set cabinet according to claim 2, wherein the fourth collar (214) comprises a third ring body (2141) and a fourth ring body (2142); the third ring body (2141) is of a cylindrical ring body structure; the inner diameter of the third ring body (2141) is consistent with the size of the outer diameter of the condensation pipe (2); the fourth ring (2142) is of a conical ring structure; the fourth ring (2142) comprising a third port (21421) and a fourth port (21422); the outer diameter of the third port (21421), the inner diameter of the fourth port (21422) and the outer diameter of the condensation tube (2) are the same.
4. The heat sink for a biogas generator set cabinet according to claim 3, wherein the first ring (215) has a length of 1.5 cm; the third ring body (2141) has a length of 15 cm; the third ring body (2141) is sleeved at the end part of the condensation pipe (2), so that the condensation pipe connecting end (201) is fixed with the condensation pipe (2).
5. The heat sink for a biogas generator set cabinet according to claim 3, wherein the condensation pipe (2) is provided with a bent portion (23) at a position close to the first end portion (21) and the second end portion (22), so that the first end portion (21) and the second end portion (22) are structures extending towards the inside of the cabinet.
6. The heat sink for a biogas generator set cabinet according to claim 5, characterized in that the fan mechanism (3) comprises a fan frame (31) and a fan body (32) mounted on the fan frame (31); the fan frame (31) is of a rectangular structure provided with six fan mounting holes (311) arranged in a matrix manner; the fan mounting hole (311) is a circular through hole, and the fan body (32) is clamped in the fan mounting hole (311) and fixed with the fan frame (31) through screws.
7. The heat dissipation device for the biogas generator set cabinet according to claim 6, wherein the fan body (32) comprises a first cover structure (321), a second cover structure (322), a protective frame (323), a rotating shaft (324) and a blade structure (325); the first cover body structure (321) is a rectangle with a circular through hole in the center; the second cover body structure (322) is a cylindrical structure; the second hood structure (322) comprises a first end (3221) and a second end (3222); the first cover body structure (321) is fixed at the edge of the circular through hole; the protection frame (323) is of a circular structure and is fixed at the first end (3221); the rotating shaft (324) is arranged at the central position of the protective frame (323); the blade structure (325) is sleeved on the rotating shaft (324).
8. The heat sink for a biogas generator set cabinet according to claim 7, wherein the second cover structure (322) is clamped in the fan mounting hole (311); the first cover structure (321) is fixed with the fan frame (31) through screws.
9. The heat sink for a biogas generator set cabinet as recited in claim 8, characterized in that the fan body (32) further comprises a protective cover (326), the protective cover (326) comprising a circular outer frame (3261) and a grid inner frame (3262); the annular outer frame (3261) is clamped at the second end (3222); the grid-shaped inner frame (3262) is fixed to the end of the circular outer frame (3261) away from the second end (3222).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320111404.2U CN218862723U (en) | 2023-01-17 | 2023-01-17 | Heat dissipation device for case of biogas generator set |
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CN202320111404.2U CN218862723U (en) | 2023-01-17 | 2023-01-17 | Heat dissipation device for case of biogas generator set |
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CN218862723U true CN218862723U (en) | 2023-04-14 |
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CN202320111404.2U Active CN218862723U (en) | 2023-01-17 | 2023-01-17 | Heat dissipation device for case of biogas generator set |
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- 2023-01-17 CN CN202320111404.2U patent/CN218862723U/en active Active
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