CN205373444U - Take ice source air exchanger of evaporation -condensation ware - Google Patents

Take ice source air exchanger of evaporation -condensation ware Download PDF

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Publication number
CN205373444U
CN205373444U CN201521044474.2U CN201521044474U CN205373444U CN 205373444 U CN205373444 U CN 205373444U CN 201521044474 U CN201521044474 U CN 201521044474U CN 205373444 U CN205373444 U CN 205373444U
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CN
China
Prior art keywords
ice source
evaporative condenser
evaporation
filled chamber
air
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 - Fee Related
Application number
CN201521044474.2U
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Chinese (zh)
Inventor
李开年
曾斌
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.)
Chongqing Bingyuanhong Energy Saving Technology Development Co Ltd
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Chongqing Bingyuanhong Energy Saving Technology Development Co Ltd
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Publication date
Application filed by Chongqing Bingyuanhong Energy Saving Technology Development Co Ltd filed Critical Chongqing Bingyuanhong Energy Saving Technology Development Co Ltd
Priority to CN201521044474.2U priority Critical patent/CN205373444U/en
Application granted granted Critical
Publication of CN205373444U publication Critical patent/CN205373444U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a take ice source air exchanger of evaporation -condensation ware, which comprises a housin, heat dissipation filler, the fan, heat dissipation filler fills in filling chamber, the fan is fixed at air outlet, be equipped with the evaporation -condensation ware in the casing between fan and filling chamber, the end that advances of evaporation -condensation ware communicates with the compressor drain pipe, the output of evaporation -condensation ware is the refrigerant output tube, ice source solution hydrops pond is located filling chamber and evaporation -condensation ware under, ice source solution hydrops pond is connected with the shower through circulating water pump, the top at filling chamber and evaporation -condensation ware is installed to the shower, filling chamber's lower extreme is equipped with the communicating solution export of ice source solution hydrops pond. The utility model discloses a can frozen refrigerant medium in the time of 30 DEG C below zero not carry out the heat exchange with the air, as the secondary refrigerant or carry warm agent, the effect that improves the refrigeration or heat, the high temperature evaporation, improve efficiency reduces the energy consumption, can adapt to cold weather environment, can be for indoorly providing refrigeration, heating and three kinds of functions of life hot water.

Description

Ice source brethaid with evaporative condenser
Technical field
This utility model belongs to ice source technology field, and concrete is a kind of brethaid.
Background technology
At present, along with increasing rapidly of world population economy, energy resource consumption sharply increases.In today that environmental pollution day adds sternness, living environment is endangered increasingly, people thirst for green, protection environment hope also increasingly strong.Present air-conditioning substantially commonly uses at every family, and along with the use of air-conditioning, power consumption sharply increases, and therefore occurs as soon as various novel air conditioning system to solve the problem that power consumption increases.Currently using maximum is air-source heat pump air conditioning system and water source heat pump air conditioning system, but some problems that both air conditioning system technology exist, if air-source heat pump air conditioning system ambient temperature is less than 5 DEG C, tube surface temperature is lower than 0 DEG C, moisture in air will condense into frost in tube surface, thickening along with frosting, meeting block air runner, substantially reduce heat pump fluid by evaporative condenser caloric receptivity from air, cause the heating efficiency of air source heat pump and reliability of operation to reduce.Air source heat pump needs regularly defrosting, and this not only consumes substantial amounts of energy but also affect air conditioning system properly functioning.Air source heat pump air-conditioner is when cooling in summer, and the rising condensation temperature with outdoor environment temperature is higher, and coefficient of refrigerating performance then can decline therewith, and Energy Efficiency Ratio is relatively low, reduces by 50% than water cooled chiller coefficient of refrigerating performance;nullAnd water source heat pump air conditioning system is 0 DEG C due to the freezing point of water,In order to ensure that exchanger will not be freezing,For guaranteeing that equipment water source inflow temperature in safe winter could must use more than 8 DEG C,And water source heat pump air conditioning system needs when mounted at a large amount of pipeline of provided underground,Such cost is also at a relatively high,Thermic load needed for the winter in most of areas simultaneously and the refrigeration duty needed for summer are uneven,Southern refrigeration duty exceeds well over thermic load,The thermic load in the north is again much larger than refrigeration duty,Changes in temperature are load unbalanced,Year after year,Underground pipe water resource heat pump finally makes the subsurface temperature of south project more and more higher heat radiation to be deteriorated,The Energy Efficiency Ratio when water resource heat pump causing this area needs most cooling in summer is gradually lowered,The subsurface temperature of north project can be deteriorated in more and more lower heat absorption,The Energy Efficiency Ratio when water resource heat pump causing this area needs most winter heating is gradually lowered,Passage along with the time limit,Final this overlaps costly energy conserving system and may paralyse,Also can there is the danger of geology variation.
Utility model content
The ice source brethaid with evaporative condenser that the purpose of this utility model is to provide a kind of compact conformation, cost is low, when it is by subzero 30 DEG C, not congelative coolant media and air carry out heat exchange, as refrigerating medium or catalyst carrier, improve refrigeration or the efficiency heated, high temperature evaporation is carried out by evaporative condenser, improve usefulness, reduce energy consumption significantly, can adapt to cold weather environments, cooling in summer efficiency is air conditioning unit higher than wind-cooling heat dissipating, can freeze for indoor offer, for warm three kinds of functions of domestic hot-water.
nullThe purpose of this utility model realizes by the following technical solutions,It comprises housing、Heat radiation filler、Blower fan and solution hydrops pond, ice source,Wherein,Described heat radiation filler is filled in the filled chamber arranged in the housing,The housing sidewall of filled chamber both sides is provided with air intlet and air outlet slit,Blower fan is fixed on the air outlet slit place of housing,It is provided with evaporative condenser in housing between blower fan and filled chamber,Evaporative condenser is near filled chamber,The inlet side of evaporative condenser connects with compressor drain pipe,The end that goes out of evaporative condenser is coolant outlet tube,Solution hydrops pond, ice source is arranged in housing by bracing frame and is positioned at the underface of filled chamber and evaporative condenser,Solution hydrops pond, ice source is connected to water circulating pump by pipeline,The water side of water circulating pump is connected to shower,Shower is arranged on the top of filled chamber and evaporative condenser,Ice source solution hydrops pool inner water solution is sprayed by shower in filled chamber,The lower end of filled chamber is provided with the taphole that solution hydrops pond, ice source communicates.
This utility model adds subzero 30 DEG C of uncongealable aqueous solutions in solution hydrops pond, ice source, by water circulating pump, the aqueous solution in solution hydrops pond, ice source is transported on shower, sprayed in filled chamber by shower, simultaneously, outside ambient air is sucked by blower fan from air intlet, air is taken away the heat (or cold) of ice source solution by blower fan through filled chamber and evaporative condenser, top cover above spray thrower must be rainproof, with ensure in the winter time ice source solution because of rainwater step-down concentration, outside air is made to carry out heat exchange with the aqueous solution in filled chamber, outside air is discharged by air outlet slit after filled chamber, aqueous solution through heat exchange is imported again in solution hydrops pond, ice source as refrigerating medium or catalyst carrier by the filler that dispels the heat.This solution will not freeze when subzero 30 DEG C, and winter need not defrost again, continues efficient stable and heats, and heating efficiency is high.Simple in construction, without geographical restriction, center, big city all can be installed, cheap, utilizes environment thermal energy, and it is most economical, the most practical, the most inexhaustible regenerative resource.This utility model is actually the thermal gradient energy of extraction environment, sustainable with external environment transferring heat energy, it is possible to season oneself to cold weather environment, and absorb ice source heat pump main frame heat by cooling tower water evaporation summer, anti-freezing water is lower than ambient temperature, and refrigerating efficiency is air conditioning unit higher than wind-cooling heat dissipating.Evaporative condenser carries out high temperature evaporation, improves usefulness.
Owing to have employed technique scheme, this utility model has compact conformation, the advantage that cost is low, when it is by subzero 30 DEG C, not congelative coolant media and air carry out heat exchange, as refrigerating medium or catalyst carrier, improve refrigeration or the efficiency heated, high temperature evaporation is carried out by evaporative condenser, improve usefulness, reduce energy consumption significantly, can adapt to cold weather environments, cooling in summer efficiency is air conditioning unit higher than wind-cooling heat dissipating, can freeze for indoor offer, for warm three kinds of functions of domestic hot-water, reduce heat pump type air conditioning system cost, various area can also be adapted to simultaneously.
Accompanying drawing explanation
Accompanying drawing of the present utility model illustrates as follows.
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the structural representation of cascade paper heat radiation filler.
Fig. 3 is the structural representation of PVC plastic tablet heat radiation filler.
Detailed description of the invention
For the technological means making this utility model realize, creation characteristic, reach purpose and act on clearly and be apparent to, below in conjunction with the drawings and specific embodiments, this utility model is further elaborated:
nullAs Figure 1-3,This utility model comprises housing 1、Heat radiation filler 2、Blower fan 3 and solution hydrops pond, ice source 4,Wherein,Described heat radiation filler 2 is filled in the filled chamber 5 arranged within the case 1,Housing 1 sidewall of filled chamber 5 both sides is provided with air intlet 6 and air outlet slit 7,Blower fan 3 is fixed on air outlet slit 7 place of housing 1,It is provided with evaporative condenser 8 in housing 1 between blower fan 3 and filled chamber 5,Evaporative condenser 8 is near filled chamber 5,The inlet side a of evaporative condenser 8 connects with compressor drain pipe,The b that goes out to hold of evaporative condenser 8 is coolant outlet tube,Solution hydrops pond, ice source 4 is arranged in housing 1 by bracing frame and is positioned at filled chamber 5 and the underface of evaporative condenser 8,Solution hydrops pond, ice source 4 is connected to water circulating pump 9 by pipeline,The water side of water circulating pump 9 is connected to shower 10,Shower 10 is arranged on filled chamber 5 and the top of evaporative condenser 8,Aqueous solution in solution hydrops pond, ice source 4 is sprayed by shower 10 in filled chamber 5,The lower end of filled chamber 5 is provided with the taphole that solution hydrops pond, ice source 4 communicates.
This utility model adds subzero 30 DEG C of uncongealable aqueous solutions in solution hydrops pond, ice source, by water circulating pump, the aqueous solution in solution hydrops pond, ice source is transported on shower, sprayed in filled chamber by shower, simultaneously, outside ambient air is sucked by blower fan from air intlet, outside air is made to carry out heat exchange with the aqueous solution in filled chamber, outside air is discharged by air outlet slit after filled chamber, and the aqueous solution through heat exchange is imported again in solution hydrops pond, ice source as refrigerating medium or catalyst carrier by the filler that dispels the heat.This solution will not freeze when subzero 30 DEG C, and winter need not defrost again, continues efficient stable and heats, and heating efficiency is high.Simple in construction, without geographical restriction, center, big city all can be installed, cheap, utilizes environment thermal energy, and it is most economical, the most practical, the most inexhaustible regenerative resource.This utility model is actually the thermal gradient energy of extraction environment, sustainable with external environment transferring heat energy, it is possible to season oneself to cold weather environment, and absorb ice source heat pump main frame heat by cooling tower water evaporation summer, anti-freezing water is lower than ambient temperature, and refrigerating efficiency is air conditioning unit higher than wind-cooling heat dissipating.The refrigerant gas of the High Temperature High Pressure that compressor is exported by evaporative condenser carries out high temperature evaporation, further to improve usefulness.
Heat radiation filler 2 can make aqueous solution flow from top to bottom, and the mode that air circulates from left to right is arranged.After heat radiation filler is filled in filled chamber, between each heat radiation filler, there is passage from left to right, facilitate air to circulate from left to right, improve heat exchange efficiency.
As in figure 2 it is shown, in order to increase heat transfer effect, heat radiation filler 2 can be cascade paper.As it is shown on figure 3, heat radiation filler 1 can be PVC plastic sheet, PVC plastic tablet is formed by multiple independent packing sheet stack combinations.
As Figure 2-3, in order to prevent in spray process, solution splashes everywhere, and the both sides of heat radiation filler 2 are provided with liquid barrier 11 in filling.

Claims (5)

  1. null1. the ice source brethaid with evaporative condenser,It is characterized in that: it includes housing、Heat radiation filler、Blower fan and solution hydrops pond, ice source,Wherein,Described heat radiation filler is filled in the filled chamber arranged in the housing,The housing sidewall of filled chamber both sides is provided with air intlet and air outlet slit,Blower fan is fixed on the air outlet slit place of housing,It is provided with evaporative condenser in housing between blower fan and filled chamber,The inlet side of evaporative condenser connects with compressor drain pipe,The end that goes out of evaporative condenser is coolant outlet tube,Solution hydrops pond, ice source is arranged in housing by bracing frame and is positioned at the underface of filled chamber and evaporative condenser,Solution hydrops pond, ice source is connected to water circulating pump by pipeline,The water side of water circulating pump is connected to shower,Shower is arranged on the top of filled chamber and evaporative condenser,Ice source solution hydrops pool inner water solution is sprayed by shower in filled chamber,The lower end of filled chamber is provided with the taphole that solution hydrops pond, ice source communicates.
  2. 2. the ice source brethaid with evaporative condenser as claimed in claim 1, it is characterised in that: heat radiation filler can make aqueous solution flow from top to bottom, and the mode that air circulates from left to right is arranged.
  3. 3. the ice source brethaid with evaporative condenser as claimed in claim 2, it is characterised in that: heat radiation filler is cascade paper.
  4. 4. the ice source brethaid with evaporative condenser as claimed in claim 2, it is characterised in that: heat radiation filler is PVC plastic tablet, and PVC plastic tablet is formed by multiple independent packing sheet stack combinations.
  5. 5. the ice source brethaid with evaporative condenser as described in any one in claim 1-4, it is characterised in that: the both sides of heat radiation filler are provided with liquid barrier in filling.
CN201521044474.2U 2015-12-15 2015-12-15 Take ice source air exchanger of evaporation -condensation ware Expired - Fee Related CN205373444U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521044474.2U CN205373444U (en) 2015-12-15 2015-12-15 Take ice source air exchanger of evaporation -condensation ware

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521044474.2U CN205373444U (en) 2015-12-15 2015-12-15 Take ice source air exchanger of evaporation -condensation ware

Publications (1)

Publication Number Publication Date
CN205373444U true CN205373444U (en) 2016-07-06

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201521044474.2U Expired - Fee Related CN205373444U (en) 2015-12-15 2015-12-15 Take ice source air exchanger of evaporation -condensation ware

Country Status (1)

Country Link
CN (1) CN205373444U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113587497A (en) * 2021-07-12 2021-11-02 浙江国祥股份有限公司 Double-cooling composite efficient evaporative condenser

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113587497A (en) * 2021-07-12 2021-11-02 浙江国祥股份有限公司 Double-cooling composite efficient evaporative condenser

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160706

Termination date: 20191215

CF01 Termination of patent right due to non-payment of annual fee