CN216204680U - TPE temperature control spraying cooling system - Google Patents

TPE temperature control spraying cooling system Download PDF

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Publication number
CN216204680U
CN216204680U CN202122762999.1U CN202122762999U CN216204680U CN 216204680 U CN216204680 U CN 216204680U CN 202122762999 U CN202122762999 U CN 202122762999U CN 216204680 U CN216204680 U CN 216204680U
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heat exchanger
tpe
cooling system
water
support frame
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CN202122762999.1U
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Chinese (zh)
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詹志凯
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Shanghai Yongjun Environmental Protection Technology Co ltd
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Shanghai Yongjun Environmental Protection Technology Co ltd
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Abstract

The utility model relates to a TPE control by temperature change spraying cooling system belongs to soil and groundwater repair equipment's field, and it includes the pipeline that links to each other with fluid separation bucket, keeps away from the heat exchanger of fluid separation bucket one end intercommunication and installs the pump on the pipeline and install the heat exchanger on the radiator with the pipeline, still includes support frame, shower nozzle, cask, delivery pipe and water pump, the support frame is installed on heat exchanger, and the shower nozzle is installed on the support frame, and the water piping connection is between cask and shower nozzle, and the water pump is installed on the delivery pipe, and the nozzle of shower nozzle sets up towards heat exchanger. The problem that prior art dispels the heat untimely or consume more in expense and space under the bad and comparatively confined environment of operating mode environment is solved in this application, have and can in time realize the machine oil cooling under the bad and comparatively confined environment of operating mode environment to the effect that lower expense and space consume is maintained.

Description

TPE temperature control spraying cooling system
Technical Field
The application relates to the field of soil and groundwater remediation equipment, especially relates to a TPE temperature control spraying cooling system.
Background
The TPE two-phase extraction equipment is soil and underground water remediation equipment, engine oil is required to be used during operation, but the engine oil is heated due to the operation of the machine. TPE diphase extraction equipment includes organism and fluid separation bucket, and the inside negative pressure state that is of gas-liquid separation bucket, equipment trip temperature is 85 degrees, and when equipment operation, the equipment oil temperature is very important consideration factor during the operation, if under the unable circumstances that maintains or reduce of temperature, equipment just must force because of the temperature condition shut down or interrupt operation, can't reach best operating condition, also can't reach the effect of aqueous vapor evaporation, lead to the inside ponding of fluid bucket to let the machine oil emulsification seriously accelerate the maintenance time, consequently need in time cool down to machine oil.
The existing cooling system comprises a liquid ring vacuum pump and an air-cooled heat exchanger, wherein the existing cooling mode is that engine oil is pumped into the air-cooled heat exchanger from an oil separation barrel of TPE (thermoplastic elastomer) dual-phase extraction equipment through the liquid ring vacuum pump, and the engine oil returns to the oil separation barrel after the temperature of the engine oil is reduced through the external heat exchange of the air-cooled heat exchanger, so that the radiating circulation is completed.
However, the prior art needs to be performed under the working condition environment with good working condition and ventilation, if the working condition environment is poor and the environment is relatively closed, the air-cooled heat exchanger will face the condition that the system temperature is too high to cause the equipment to stop operating, if the equipment needs to be allowed to normally operate under the relatively severe working condition, the whole air-cooled heat exchanger is changed into a water-cooled heat exchanger and a heat dissipation water tower is added, and the cost and the space consumption are larger.
SUMMERY OF THE UTILITY MODEL
In order to realize in time that machine oil cools down under the bad and comparatively confined environment of operating mode environment to maintain lower expense and space and consume, this application provides a TPE temperature control mist cooling system.
The application provides a pair of TPE control by temperature change mist cooling system adopts following technical scheme:
the utility model provides a TPE temperature control spraying cooling system, includes the pipeline that links to each other with fluid separation bucket, keeps away from the heat exchanger of fluid separation bucket one end intercommunication and installs the pump on the pipeline and install the heat exchanger on the radiator with the pipeline, still includes support frame, shower nozzle, cask, delivery pipe and water pump, the support frame is installed on heat exchanger, and the shower nozzle is installed on the support frame, and the delivery union coupling is between cask and shower nozzle, and the water pump is installed on the delivery pipe, and the nozzle of shower nozzle sets up towards heat exchanger.
Through adopting above-mentioned technical scheme, machine oil in the fluid separation bucket gets into the radiator from the pipeline via the pump suction, cool down through heat exchanger, when heat exchanger can't cool down the machine oil in the radiator, the accessible water pump suction water bucket water passes through the delivery pipe and carries the shower nozzle to spout to the radiator, drench the machine oil cooling in the back moisture evaporation auxiliary radiator with the radiator surface, improve the efficiency of cooling, in time realize the machine oil cooling under the bad and comparatively confined environment of operating mode environment, and maintain lower expense and space and consume.
Optionally, the spray head is a spray head.
Through adopting above-mentioned technical scheme, the water in the water pump suction cask passes through the delivery pipe and gets into the atomising head, spouts to the radiator via the form of atomising head spraying, can enlarge the area that sprays, can reduce the possibility of wasting water again.
Optionally, the water pump is a timing water pump.
By adopting the technical scheme, the timing water pump can automatically control the time for spraying the water mist, and the operation is more convenient.
Optionally, the spraying time controlled by the timing water pump is 5 seconds.
Through adopting above-mentioned technical scheme, 5 seconds's spraying time can reduce the machine oil temperature to required scope, can also further reduce the possibility of wasting water resource
Optionally, a temperature sensor is arranged at a feed inlet of the oil-liquid separation barrel, and the temperature sensor is electrically connected with the water pump.
Through adopting above-mentioned technical scheme, monitor the temperature when temperature-sensing ware and reach the settlement temperature, can convert temperature signal into the signal of telecommunication and transmit the water pump, control water pump suction bucket water spray in to the radiator, it is more intelligent, convenient.
Optionally, the water collecting box is further included, and the water collecting box covers the water dropping range of the heat exchanger, the heat radiator and the support frame.
Through adopting above-mentioned technical scheme, the water collection box reduces the possibility that the water that heat exchanger, radiator and support frame drip flows the cluster everywhere with the water gathering of heat exchanger, radiator and support frame drip.
Optionally, a return pipe is connected between the water collecting box and the oil-liquid separation barrel, and a negative pressure state is formed in the oil-liquid separation barrel.
Through adopting above-mentioned technical scheme, the water guide that the back flow collected the water-collecting box gets back to in the fluid separation bucket recycle, reduces the possibility of wasting water resource.
Drawings
Fig. 1 is a schematic structural diagram of the TPE temperature-controlled spray cooling system of this embodiment.
Description of reference numerals: 1. a heat exchanger; 11. a heat dissipation motor; 2. a support frame; 3. a spray head; 4. a water bucket; 5. a water supply pipe; 6. a water pump; 7. a water collection box; 8. a return pipe.
Detailed Description
The present application is described in further detail below with reference to fig. 1.
The embodiment of the application discloses TPE control by temperature change spraying cooling system.
Referring to fig. 1, a TPE temperature control spray cooling system, comprising a pipeline connected to an oil separation tank, a heat exchanger 1 connected to one end of the pipeline far from the oil separation tank, a pump installed on the pipeline, and a heat dissipation motor 11 installed on the heat exchanger 1, further comprising a support frame 2, a spray nozzle 3, a water tank 4, a water supply pipe 5, and a water pump 6, wherein the support frame 2 is installed on the heat dissipation motor 11, the spray nozzle 3 is installed on the support frame 2, the water supply pipe 5 is connected between the water tank 4 and the spray nozzle 3, the water pump 6 is installed on the water supply pipe 5, a spray nozzle of the spray nozzle 3 is disposed toward the heat exchanger 11, engine oil in the oil separation tank is pumped by the pump from the pipeline into the heat exchanger 1, the engine oil is cooled by the heat dissipation motor 11, when the heat exchanger 1 cannot cool the engine oil, water in the water tank 4 is pumped by the water pump 6 and is delivered to the spray nozzle 3 to the heat exchanger 1 through the water supply pipe 5, after the surface of the heat exchanger 1 is wetted, the moisture is evaporated to assist in cooling the engine oil in the heat exchanger 1, the engine oil is cooled in time under the conditions of poor working conditions and relatively closed environment, and low cost and space consumption are maintained.
The cross-section of the support frame 2 is in a U shape, the opening end of the support frame faces the heat dissipation motor 11, the lower end of the support frame 2 is fixed on one side of the heat dissipation motor 11 deviated from the heat dissipation motor 1 through a screw and the heat radiator 1, and the spray head 3 is installed on the top end of the support frame 2, so that the heat exchanger 1 can be sprayed in a larger range. The spray head 3 is an atomizing spray head, water in the water pump suction bucket 4 enters the atomizing spray head through the water supply pipe 5, and is sprayed to the heat exchanger 1 in an atomizing spray mode through the atomizing spray head, so that the spraying area can be enlarged, and the possibility of water waste can be reduced.
Water pump 6 is the timing water pump, can automatic control shower nozzle 3 spray water smoke, and the spraying time of timing water pump control is 5 seconds, and 5 seconds' spraying time can reduce the machine oil temperature to required scope, can also further reduce the possibility of wasting water resources. The feed inlet of fluid separation bucket is provided with temperature-sensing ware, and temperature-sensing ware is connected with 6 electricity of water pump, and the machine oil temperature that monitors fluid separation bucket and get into when temperature-sensing ware reaches 85 degrees, can convert temperature signal into signal of telecommunication and transmit to water pump 6, and the water in the 6 suction casks 4 of control water pump sprays heat exchanger 1, and is more intelligent, convenient.
In order to reduce the possibility of the water flowing and bunching around, a water collecting box 7 is arranged below the support frame 2, the water collecting box 7 is hollow and has an open top end, the water collecting box 7 covers the dripping range of the heat dissipation motor 11, the heat exchanger 1 and the support frame 2, so that the water dropping from the heat dissipation motor 11, the heat exchanger 1 and the support frame 2 is gathered, and the possibility of the water dropping from the heat dissipation motor 11, the heat exchanger 1 and the support frame 2 flowing and bunching around is reduced. The backflow pipe 8 is connected between the water collecting box 7 and the oil liquid separation barrel, and water collected by the water collecting box 7 can be guided back to the oil liquid separation barrel to be recycled due to the fact that the oil liquid separation barrel is in a negative pressure state, and the possibility of wasting water resources is reduced.
The implementation principle of a TPE temperature control mist cooling system of this application embodiment is: the machine oil in the fluid separation bucket gets into heat exchanger 1 from the pipeline via the pump suction, cool down through heat dissipation motor 11, when heat dissipation motor 11 can't cool down the machine oil in heat exchanger 1, accessible water pump 6 sucks the water in the cask 4 and carries 3 spouts to radiator 1 through delivery pipe 5, the machine oil cooling in the supplementary heat exchanger 1 of moisture evaporation after drenching heat exchanger 1 surface, in time realize the machine oil cooling under the bad and comparatively confined environment of operating mode environment, and maintain lower expense and space and consume.
The foregoing embodiments are merely illustrative of the principles and utilities of the present invention and are not intended to limit the invention. Any person skilled in the art can modify or change the above-mentioned embodiments without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which can be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (7)

1. The utility model provides a TPE temperature control mist cooling system, includes the pipeline that links to each other with fluid separation bucket, keeps away from heat exchanger (1) of fluid separation bucket one end intercommunication with the pipeline, installs the pump on the pipeline and installs heat dissipation motor (11) on heat exchanger (1), its characterized in that: still include support frame (2), shower nozzle (3), cask (4), delivery pipe (5) and water pump (6), install on heat exchanger (1) support frame (2), install on support frame (2) shower nozzle (3), and delivery pipe (5) are connected between cask (4) and shower nozzle (3), and water pump (6) are installed on delivery pipe (5), and the nozzle of shower nozzle (3) sets up towards heat exchanger (1).
2. The TPE temperature control spray cooling system of claim 1, wherein: the spray head (3) is a spray head.
3. The TPE temperature control spray cooling system of claim 1, wherein: the water pump (6) is a timing water pump.
4. The TPE temperature control mist cooling system of claim 3, wherein: and the spraying time controlled by the timing water pump is 5 seconds.
5. The TPE temperature control spray cooling system of claim 1, wherein: the feed inlet of the oil-liquid separation barrel is provided with a temperature sensor which is electrically connected with the water pump (6).
6. The TPE temperature control spray cooling system of claim 1, wherein: the water collecting box (7) is further included, and the water collecting box (7) covers the water dripping range of the heat dissipation motor (11), the heat exchanger (1) and the support frame (2).
7. The TPE temperature control mist cooling system of claim 6, wherein: a return pipe (8) is connected between the water collecting box (7) and the oil liquid separation barrel, and the oil liquid separation barrel is in a negative pressure state.
CN202122762999.1U 2021-11-11 2021-11-11 TPE temperature control spraying cooling system Active CN216204680U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122762999.1U CN216204680U (en) 2021-11-11 2021-11-11 TPE temperature control spraying cooling system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122762999.1U CN216204680U (en) 2021-11-11 2021-11-11 TPE temperature control spraying cooling system

Publications (1)

Publication Number Publication Date
CN216204680U true CN216204680U (en) 2022-04-05

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Application Number Title Priority Date Filing Date
CN202122762999.1U Active CN216204680U (en) 2021-11-11 2021-11-11 TPE temperature control spraying cooling system

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Country Link
CN (1) CN216204680U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024016821A1 (en) * 2022-07-20 2024-01-25 深圳市宏讯制造技术有限公司 Temperature control device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024016821A1 (en) * 2022-07-20 2024-01-25 深圳市宏讯制造技术有限公司 Temperature control device

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