Energy-saving structure system for secondary recovery of exhaust waste cold of novel intelligent edible mushroom room

By introducing a combination of heat exchange core and condensate drain coil in the mushroom house, the secondary recovery and utilization of residual cold air from the mushroom house exhaust is realized, solving the problem of underutilization of exhaust cooling capacity and achieving energy-saving, compact and aesthetically pleasing results.

CN223553931UActive Publication Date: 2025-11-18GUANGZHOU YUNSHANG COLD CHAIN TECH CO LTD
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Patent Information

Application Number
CN202423162584.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-18
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

In existing technologies, there is still room for improvement in the utilization of cooling energy in the exhaust air of the mushroom house. Direct discharge leads to energy waste, and the exhaust air temperature is still low after the existing heat exchange recovers the cooling energy, which is not fully utilized.

Method used

The heat exchange core is used for primary heat recovery, and the combination of condensate drain coil and condensate drain pipe enables secondary recovery of exhaust waste heat. The mixture is then used for the condenser air-cooled exhaust of the outdoor unit of the refrigeration unit, thereby improving the condenser cooling efficiency.

Benefits of technology

It realizes the secondary heat recovery and utilization of the exhaust air of the mushroom house, saves energy consumption of the refrigeration unit, reduces the fresh air cooling load, saves equipment space, and the overall effect is energy-saving, compact and beautiful.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a novel energy-saving structure system for secondary recovery of exhaust waste cold of an intelligent edible mushroom room. On one hand, the heat exchange core body is used for carrying out primary heat recovery on the cooling capacity of exhaust air of the fungus room; on the other hand, the air conditioner is further provided with a condensate water discharging coil pipe, so that exhaust air which passes through the heat exchange core body and is provided with waste cold and outdoor air which is precooled through the condensate water discharging coil pipe can be mixed (waste cold of recycled condensate water and waste cold of secondarily recycled exhaust air) to be used as condenser air-cooled exhaust air of the refrigeration main machine outer machine; the cooling efficiency of the condenser can be effectively improved, and the effect of saving energy consumption of a refrigerating unit is achieved; by means of the structural arrangement of the mushroom house, secondary heat recycling of waste cold of exhausted air of the mushroom house can be achieved, the space occupied by mushroom house equipment can be saved, the overall construction of the mushroom house is more concise and attractive, and the effects of saving energy consumption, being compact and attractive are achieved on the whole.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a mushroom house technical field, concretely is a kind of novel intelligent edible mushroom house's secondary recovery exhaust air waste heat's energy-saving structure system. BACKGROUND

[0002] Edible mushroom refers to the large-sized fungus with large fruiting body, which grows in places with rich organic matter. Mushroom house refers to edible mushroom house, which is used for planting edible mushroom. The intelligent edible mushroom house can realize intelligent control of temperature and humidity in the mushroom house.

[0003] Generally, the exhaust air temperature of the mushroom house is much lower than the outdoor temperature, which contains a large amount of cold energy that is not fully utilized. Directly discharging the exhaust air is a waste of energy. Therefore, the existing technology uses a heat exchange core (heat exchanger) to recover the cold energy of the exhaust air, which can greatly reduce the energy consumption increase caused by the outdoor fresh air handling unit. However, the exhaust air temperature after heat exchange recovery is still lower than the outdoor air temperature, which still contains cold energy. Therefore, there is still room for improvement in the utilization of cold energy of the mushroom house exhaust air. SUMMARY

[0004] (I) Technical problem solved

[0005] To solve the above technical problems, the utility model provides a novel intelligent edible mushroom house's secondary recovery exhaust air waste heat's energy-saving structure system.

[0006] (II) Technical scheme

[0007] To solve the above technical problems, the utility model provides the following technical scheme: a novel intelligent edible mushroom house's secondary recovery exhaust air waste heat's energy-saving structure system, comprising a mushroom house, a cold air fan, a heat exchange core, a cold air fan return air passage and a refrigeration outdoor unit. The cold air fan and the heat exchange core are arranged in the mushroom house. The mushroom house is provided with fresh air louvers, exhaust air suction louvers and return air louvers. The fresh air louvers and the exhaust air suction louvers are arranged opposite to the heat exchange core. The cold air fan is provided with a condensate water discharge pipe. The refrigeration outdoor unit is arranged outside the mushroom house. The novel intelligent edible mushroom house's secondary recovery exhaust air waste heat's energy-saving structure system further comprises a condensate water discharge coil pipe and ventilation louvers arranged outside the mushroom house. The mushroom house is further provided with exhaust air louvers. The condensate water discharge coil pipe is located between the ventilation louvers and the refrigeration outdoor unit. The heat exchange core and the condensate water discharge coil pipe are arranged opposite to the exhaust air louvers. The condensate water discharge coil pipe is connected to the condensate water discharge pipe.

[0008] Preferably, the fresh air louvers are rainproof fresh air louvers.

[0009] Preferably, the ventilation louver is a rainproof ventilation louver.

[0010] Preferably, the fresh air louver, the exhaust air suction louver, the return air louver, the exhaust air discharge louver and the ventilation louver are all provided with filter screens.

[0011] Preferably, the mushroom house is provided with an upper area and a lower area, the cold air fan is arranged in the upper area, and the heat exchange core is arranged in the lower area.

[0012] Preferably, the cold air fan is provided with an air supply port.

[0013] (Three) beneficial effects

[0014] Compared with the prior art, the utility model provides a kind of energy-saving structure system of secondary recovery exhaust air waste heat of novel wisdom mushroom house, with following beneficial effects: on one hand, the utility model uses the primary heat recovery of heat exchange core, can effectively reduce the temperature of outdoor fresh air, reduce the cold load brought by fresh air, directly save the energy consumption of refrigerating unit;On the other hand, the utility model further includes condensate discharge coil pipe, can mix (recover the waste heat of condensate and the waste heat of secondary recovery exhaust air) the exhaust air that has waste heat after heat exchange core with outdoor air pre-cooled by condensate discharge coil pipe and be used as condenser air-cooled exhaust air of refrigeration host outdoor unit, can effectively improve the efficiency of condenser cooling, reach the effect of saving the energy consumption of refrigerating unit;The structure of the utility model is set to the kind of mushroom house, which can realize secondary heat recovery and utilization of mushroom house exhaust air waste heat, and can also save the space occupied by mushroom house equipment, so that the construction of mushroom house is more simple and beautiful, and the overall effect of energy saving, compact and beautiful is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a mushroom lower area structure plan view of the energy-saving structure system of secondary recovery exhaust air waste heat of novel wisdom mushroom house of the utility model;

[0016] Figure 2 It is a mushroom upper area structure plan view of the energy-saving structure system of secondary recovery exhaust air waste heat of novel wisdom mushroom house of the utility model;

[0017] Figure 3 It is Figure 1 , Figure 2 1A-1A elevation view shown in the figure;

[0018] Figure 4 It is Figure 1 , Figure 2 1B-1B elevation view shown in the figure;

[0019] Figure 5 It is Figure 1 , Figure 21C-1C elevational view shown in the middle;

[0020] The figure label is: 1 bacteria room, 2 cold fan, 3 heat exchange core, 4 cold fan return air passage, 5 refrigeration host external machine, 6 fresh air louver, 7 exhaust air louver, 8 return air louver, 9 condensate water discharge pipe, 10 condensate water discharge coil pipe, 11 ventilation louver, 12 exhaust air louver, 13 upper layer area, 14 lower layer area, 15 air supply outlet, 16 condenser air inlet, 17 condenser fan. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0022] The utility model provides a kind of novel wisdom edible mushroom house's secondary recovery exhaust waste heat Energy-Saving Structure System, including bacteria room 1, cold fan 2, heat exchange core 3, cold fan return air passage 4 and refrigeration host external machine 5.Cold fan 2 is spaced apart with heat exchange core 3 in bacteria room 1, bacteria room 1 is equipped with fresh air louver 6, exhaust air louver 7 and return air louver 8, fresh air louver 6, exhaust air louver 7 both are oppositely arranged with heat exchange core 3, and cold fan 2 is equipped with condensate water discharge pipe 9, and refrigeration host external machine 5 is arranged in the outside of bacteria room 1.

[0023] In addition, the utility model provides a kind of novel wisdom edible mushroom house's secondary recovery exhaust waste heat Energy-Saving Structure System further includes condensate water discharge coil pipe 10 and ventilation louver 11 being arranged in the outside of bacteria room 1, wherein, bacteria room 1 is further equipped with exhaust air louver 12, condensate water discharge coil pipe 10 is located between ventilation louver 11 and refrigeration host external machine 5, heat exchange core 3 and condensate water discharge coil pipe 10 both are oppositely arranged with exhaust air louver 12, and condensate water discharge coil pipe 10 is connected with condensate water discharge pipe 9.

[0024] It can be understood that cold fan 2 is used for the refrigeration of bacteria room 1;Refrigeration host external machine 5 is used for providing the refrigeration source of cold fan 2;Fresh air louver 6 is used as the fresh air inlet of bacteria room 1;Return air louver 8 is used as the return air inlet of bacteria room 1;Exhaust air louver 7 is used as the exhaust air inlet;Exhaust air louver 12 is used as the exhaust air outlet;Heat exchange core 3 is used for the heat exchange between fresh air and the exhaust air of bacteria room;Cold fan return air passage 4 is used for mixing fresh air and return air after heat exchange in heat exchange core 3 and returning to the passage of return air side of cold fan 2;Ventilation louver 11 is used as the condensing ventilation inlet of refrigeration host external machine 5;Condensate water discharge coil pipe 10 is used for recovering the condensate water waste heat discharged by cold fan 2.

[0025] The exhaust temperature of the mushroom house 1 is much lower than the outdoor temperature, which contains a large amount of unused cold energy. Based on this, on the one hand, this utility model uses the heat exchange core 3 to exchange heat between the fresh air and the exhaust air of the mushroom house. Furthermore, the return air duct 4 of the evaporator mixes the fresh air after passing through the heat exchange core 3 with the return air and returns it to the return air side of the evaporator. Figure 1 ① indicates the mixing of fresh and return air; on the other hand, this utility model also includes a condensate drain coil 10, which is connected to the condensate drain pipe 9 to recover the waste heat from the condensate discharged by the air cooler 2, and uses the condensate drain coil 10 to pre-cool the outdoor air passing through the ventilation louvers 11; furthermore, the exhaust air, which still has residual cooling after passing through the heat exchange core 3, is mixed with the outdoor air pre-cooled by the condensate drain coil 10. Figure 1 (The ② part is for the mixing of fresh air and exhaust air) to be used as the condenser air-cooled exhaust air of the outdoor unit 5 of the refrigeration unit.

[0026] The aforementioned fresh air louver 6 can specifically be a rainproof fresh air louver, and the ventilation louver 11 can specifically be a rainproof ventilation louver, so as to improve the rainproof performance of the fresh air inlet and condensation ventilation inlet of this utility model.

[0027] Preferably, the fresh air louver 6, the exhaust air intake louver 7, the return air louver 8, the exhaust air exhaust louver 12, and the ventilation louver 11 are all equipped with filters to improve the filtration performance of this invention, thereby improving the air quality of the mushroom room 1.

[0028] Specifically, the mushroom cultivation room 1 may have an upper area 13 and a lower area 14. A cooler 2 is located in the upper area 13, and a heat exchange core 3 is located in the lower area 14. The cooler 2 has an air outlet 15 through which it delivers cool air to the interior area of ​​the mushroom cultivation room 1. Furthermore, the outdoor unit 5 of the refrigeration unit has a condenser intake 16 and a condenser fan 17.

[0029] Compared with the prior art, the energy-saving structure system of the secondary recovery of exhaust air waste heat of the novel intelligent edible mushroom house has the following beneficial effects: on the one hand, the primary heat recovery of the heat exchange core body can effectively reduce the temperature of outdoor fresh air, reduce the cold load brought by the fresh air, and directly save the energy consumption of the refrigerating unit; on the other hand, the condensate water discharge coil pipe is further included, the exhaust air with waste heat after passing through the heat exchange core body is mixed with outdoor air pre-cooled by the condensate water discharge coil pipe (the waste heat of the condensate water is recovered and the waste heat of the exhaust air is secondarily recovered) to serve as the condenser air cooling exhaust air of the refrigeration outdoor unit, which can effectively improve the cooling efficiency of the condenser and achieve the effect of saving the energy consumption of the refrigerating unit; through the structural arrangement of the mushroom house, the secondary heat recovery and utilization of the exhaust air waste heat of the mushroom house can be realized, the space occupied by the mushroom house equipment can be saved, the overall construction of the mushroom house is more simple and beautiful, and the effects of saving energy consumption and compact and beautiful are achieved as a whole.

[0030] It should be noted that the terms "comprising", "containing" or any other variant thereof are intended to cover non-exclusive inclusions, so that a process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such a process, method, article or equipment. Without more limitations, the element defined by the statement "comprising a" does not exclude the presence of another identical element in the process, method, article or equipment including the element.

[0031] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A novel intelligent edible mushroom house secondary recovery of exhaust air waste heat energy-saving structure system, including mushroom house, cold air machine, heat exchange core, cold air machine return air passage and refrigeration main machine external machine, the cold air machine and the heat exchange core are arranged in the mushroom house, the mushroom house is equipped with new air louver, exhaust air suction louver and return air louver, the new air louver, the exhaust air suction louver both are opposite with the heat exchange core, the cold air machine is equipped with condensate water discharge pipe, the refrigeration main machine external machine is arranged in the outside of the mushroom house, its characterized in that: The energy-saving structure system of the secondary recycling of the exhaust air waste heat of the new intelligent edible mushroom house further comprises a condensate water discharge coil pipe arranged outside the mushroom house and a ventilation louver, the mushroom house is further provided with an exhaust air louver, the condensate water discharge coil pipe is located between the ventilation louver and the refrigeration outdoor unit, the heat exchange core and the condensate water discharge coil pipe are both arranged opposite to the exhaust air louver, and the condensate water discharge coil pipe is connected with the condensate water discharge pipe.

2. The energy-saving structure system of secondary recovery of exhaust air waste heat of the novel intelligent mushroom house according to claim 1, characterized in that: The fresh air louver is specifically a rainproof fresh air louver.

3. The energy-saving structure system of the novel intelligent mushroom house according to claim 1, characterized in that: The ventilation louver is specifically a rainproof ventilation louver.

4. The energy-saving structure system of secondary recovery of exhaust air waste heat of the novel intelligent mushroom house according to claim 1, characterized in that: The fresh air louver, the exhaust air suction louver, the return air louver, the exhaust air louver and the ventilation louver are all provided with filter screens.

5. The energy-saving structure system of secondary recovery of exhaust air waste heat of the novel intelligent mushroom house according to claim 1, characterized in that: The mushroom house is provided with an upper area and a lower area, the cold air fan is arranged in the upper area, and the heat exchange core is arranged in the lower area.

6. The energy-saving structure system of secondary recovery of exhaust air waste heat of the novel intelligent mushroom house according to claim 1, characterized in that: The cold air fan is provided with an air supply port.