CN213907792U - Indoor air purification system - Google Patents

Indoor air purification system Download PDF

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Publication number
CN213907792U
CN213907792U CN202022520950.0U CN202022520950U CN213907792U CN 213907792 U CN213907792 U CN 213907792U CN 202022520950 U CN202022520950 U CN 202022520950U CN 213907792 U CN213907792 U CN 213907792U
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air
pipelines
module
atomizing
indoor
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CN202022520950.0U
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Chinese (zh)
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彭长儿
廖志敏
苏慧敏
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Shanghai Pengshi Mushroom Industry Co ltd
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Shanghai Pengshi Mushroom Industry Co ltd
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Abstract

The utility model provides an indoor air purification system, which comprises a PLC controller, a plurality of atomizing and spraying pipelines and a plurality of air transmission pipelines; the PLC is connected with an input module, an output module and a storage module; the input module is connected with a temperature sensor, a humidity sensor and a carbon dioxide concentration detector; the output module is connected with an atomizing and spraying device, an air purifying device, a carbon dioxide generator and a fresh air fan; the plurality of atomizing spray pipelines and the plurality of gas transmission pipelines are distributed and distributed indoors; an air heater is connected with the air outlet of the fresh air fan. The utility model discloses a clean system can intelligent monitoring indoor temperature, humidity to and carbon dioxide gas concentration, and can intelligent response, ensure that the indoor air quality satisfies domestic fungus and plants, cultivate the demand, ensure that the domestic fungus is healthy and grow fast.

Description

Indoor air purification system
Technical Field
The utility model belongs to the technical field of air purification, concretely relates to indoor air purification system.
Background
When edible fungi are planted in a greenhouse or a room, in order to ensure the healthy and rapid growth of the edible fungi, the air quality in the greenhouse or the room needs to be strictly controlled, harmful gases generated in the closed room are purified and exhausted to the outside, fresh air, carbon dioxide and other gases capable of promoting the growth of the edible fungi are provided for the room, and the temperature and the humidity in the room are adjusted.
SUMMERY OF THE UTILITY MODEL
For promoting the healthy and fast growth of domestic fungus of big-arch shelter or indoor planting, adjust indoor air quality, the utility model provides an indoor air purification system.
The utility model discloses a following technical scheme realizes:
an indoor air purification system comprises a PLC controller;
the PLC controller is connected with an input module, an output module and a storage module in a matching way;
the input module is connected with a temperature sensor, a humidity sensor and a carbon dioxide concentration detector;
the output module is connected with an atomizing and spraying device, an air purifying device, a carbon dioxide generator and a fresh air fan;
the storage module is connected with a data recorder;
also comprises a plurality of atomizing spray pipelines; the plurality of atomizing and spraying pipelines are distributed and distributed indoors, and a plurality of nozzles are arranged on each atomizing and spraying pipeline at intervals, so that water mist sprayed by the atomizing and spraying pipelines is uniformly dispersed indoors as far as possible;
also comprises a plurality of gas transmission pipelines; the plurality of gas transmission pipelines are distributed and distributed indoors, and a plurality of gas transmission holes are formed in each gas transmission pipeline at intervals, so that gas released by the fog gas transmission pipelines is uniformly dispersed indoors as far as possible;
the atomizing and spraying device is externally connected with a water source; the plurality of atomization spraying pipelines are connected with an atomization spraying device, and atomized water is conveyed to the atomization spraying pipelines through the atomization spraying device;
the air outlet of the air purification device is connected with the air inlet of the exhaust fan, and the air outlet of the exhaust fan is drained to the outside; the air inlet of the fresh air fan is used for conducting flow from the outside, and an active carbon filtering device is connected with the air inlet of the fresh air fan;
air heaters are connected to the air outlet of the fresh air fan, and each air transmission pipeline is connected with the air outlet of the air heater.
Further inject, temperature sensor, humidity transducer and carbon dioxide concentration detector all are equipped with a plurality ofly, and the dispersion is installed indoor, ensure the accuracy of detected data.
Further limiting, the plurality of gas transmission pipelines and the plurality of atomization spraying pipelines are in one-to-one binding connection, and indoor pipeline arrangement can be optimized.
Further inject, the PLC controller still the supporting display module that is connected with, display module is connected with liquid crystal display, and liquid crystal display installs in outdoor, and the operating personnel of being convenient for in time learn indoor each item data monitoring condition before getting into indoorly.
Further inject, the PLC controller still the supporting data transmission module that is connected with, data transmission module passes through the Modbus communication protocol and links to each other with the smart mobile phone, can each item data monitoring condition in the remote monitoring room through the smart mobile phone to can in time make correspondingly.
According to the above technical scheme, the utility model provides a pair of indoor air purification system, beneficial effect lies in: this clean system can intelligent monitoring indoor temperature, humidity to and carbon dioxide gas concentration, and can intelligent response, ensure that indoor air quality satisfies domestic fungus and plants, cultivate the demand, ensure that domestic fungus is healthy and fast growing.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below. Throughout the drawings, like elements or portions are generally identified by like reference numerals. In the drawings, elements or portions are not necessarily drawn to scale.
Fig. 1 is a structural frame diagram of the present invention.
Fig. 2 is a frame diagram of the gas circuit and water circuit structure of the present invention.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only examples, and the protection scope of the present invention is not limited thereby.
As shown in fig. 1 and 2, an indoor air purification system comprises a PLC controller, a plurality of atomizing spray pipes, and a plurality of air transmission pipes;
the PLC controller is connected with an input module, an output module, a storage module, a display module and a data transmission module in a matching way;
the input module is connected with a temperature sensor, a humidity sensor and a carbon dioxide concentration detector; the temperature sensors, the humidity sensors and the carbon dioxide concentration detectors are arranged in a plurality of numbers and are dispersedly installed indoors, so that the accuracy of detected data is ensured;
the output module is connected with an atomizing and spraying device, an air purifying device, a carbon dioxide generator and a fresh air fan;
the storage module is connected with a data recorder;
the display module is connected with a liquid crystal display screen which is arranged outdoors, so that operating personnel can timely know various indoor data monitoring conditions before entering the room;
the data transmission module is connected with the smart phone through a Modbus communication protocol, various indoor data monitoring conditions can be remotely monitored through the smart phone, and corresponding conditions can be made in time;
the plurality of atomizing and spraying pipelines are distributed and distributed indoors, and a plurality of nozzles are arranged on each atomizing and spraying pipeline at intervals, so that water mist sprayed by the atomizing and spraying pipelines is uniformly dispersed indoors as far as possible;
the plurality of gas transmission pipelines are distributed and distributed indoors, and a plurality of gas transmission holes are formed in each gas transmission pipeline at intervals, so that gas released by the fog gas transmission pipelines is uniformly dispersed indoors as far as possible; the plurality of gas transmission pipelines and the plurality of atomization spraying pipelines are in one-to-one binding connection, so that indoor pipeline arrangement can be optimized;
the atomizing and spraying device is externally connected with a water source; the plurality of atomization spraying pipelines are connected with an atomization spraying device, and atomized water is conveyed to the atomization spraying pipelines through the atomization spraying device;
the air outlet of the air purification device is connected with the air inlet of the exhaust fan, and the air outlet of the exhaust fan is drained to the outside; the air inlet of the fresh air fan is used for conducting flow from the outside, and an active carbon filtering device is connected with the air inlet of the fresh air fan;
air heaters are connected to the air outlet of the fresh air fan, and each air transmission pipeline is connected with the air outlet of the air heater.
In this embodiment, it should be noted that, the present application does not limit specific models of the PLC controller, the temperature sensor, the humidity sensor, the carbon dioxide concentration detector, the atomizing and spraying device, the air purifying device, the carbon dioxide generator, the fresh air blower, the air heater, and the nozzle, which are all currently available devices, and are selected and installed in an adaptive manner according to the indoor size.
The working principle of the embodiment is as follows: when each detector detects that one content of corresponding harmful gas in a room is excessive, the corresponding detector sends an alarm signal to the PLC through the module; the PLC controller sends an instruction through the storage module, the data recorder acts to record the alarm time of the detector and the content of harmful gas, meanwhile, the PLC controller sends an instruction signal to the output module, the air purification device is started immediately after the exhaust fan is started, and clean air purified through air is discharged to the outside through the exhaust fan; meanwhile, the fresh air fan is started, and the fresh air fan replenishes the fresh air filtered by the activated carbon filtering device into the room, so that the replacement of indoor and outdoor air is realized, and the harmful gas components in the room are reduced; the air is conveyed through the air conveying holes arranged on the air conveying pipelines, so that the air released by the fog air conveying pipelines can be uniformly dispersed indoors, and the indoor air flow can be improved; when the temperature sensor detects that the indoor temperature is low, the temperature sensor sends an alarm signal to the PLC through the input module, the PLC which receives the signal sends an instruction for storing information to the storage module, the data recorder records alarm time and corresponding temperature, meanwhile, the PLC sends an instruction to the output module, the fresh air fan provides air to the indoor, and simultaneously the air enters the air transmission pipeline after being heated by the air heater; when the humidity sensor detects that indoor air is dry, the humidity sensor sends an alarm signal to the PLC through the input module, the PLC receiving the signal sends an instruction for storing information to the storage module, the data recorder records alarm time and corresponding humidity, meanwhile, the PLC sends an instruction to the output module, the atomizing and spraying device is started, and atomized water is supplemented indoors; the water mist is sprayed through a plurality of nozzles arranged on a plurality of atomizing and spraying pipelines, so that the water mist sprayed by the atomizing and spraying pipelines can be uniformly dispersed indoors, and the indoor humidity can reach the standard as soon as possible; when the carbon dioxide concentration detector detects that the concentration of indoor carbon dioxide is too low, an instruction is sent to the input module, the PLC which receives the signal sends a storage instruction to the storage module, the data recorder records the alarm time and the concentration of the carbon dioxide, and simultaneously sends an instruction to the output module, the carbon dioxide generator acts to supplement corresponding carbon dioxide indoors; when the detector detects that the concentration of various gases reaches balance, the detector sends an instruction to the input module, the PLC which receives the signal sends an instruction to the storage module and the output module, the data recorder records the time of supplementing new air, carbon dioxide and atomization, and the atomization spraying device, the air purification device, the exhaust fan, the carbon dioxide generator and the fresh air fan stop running; through the liquid crystal display screen arranged outdoors, the operator can conveniently know various indoor data monitoring conditions before entering the room; various indoor data monitoring conditions can be remotely monitored through the smart phone, and a response can be made in time. This clean system can intelligent monitoring indoor temperature, humidity to and carbon dioxide gas concentration, and can intelligent response, ensure that indoor air quality satisfies domestic fungus and plants, cultivate the demand, ensure that domestic fungus is healthy and fast growing.

Claims (5)

1. An indoor air purification system characterized in that:
comprises a PLC controller;
the PLC controller is connected with an input module, an output module and a storage module in a matching way;
the input module is connected with a temperature sensor, a humidity sensor and a carbon dioxide concentration detector;
the output module is connected with an atomizing and spraying device, an air purifying device, a carbon dioxide generator and a fresh air fan;
the storage module is connected with a data recorder;
also comprises a plurality of atomizing spray pipelines; the plurality of atomization spraying pipelines are distributed in a dispersed manner indoors, and a plurality of nozzles are arranged on each atomization spraying pipeline at intervals;
also comprises a plurality of gas transmission pipelines; the plurality of gas transmission pipelines are distributed and distributed indoors, and a plurality of gas transmission holes are formed in each gas transmission pipeline at intervals;
the atomizing and spraying device is externally connected with a water source; the plurality of atomizing and spraying pipelines are connected with an atomizing and spraying device;
the air outlet of the air purification device is connected with the air inlet of the exhaust fan, and the air outlet of the exhaust fan is drained to the outside; the air inlet of the fresh air fan is used for conducting flow from the outside, and an active carbon filtering device is connected with the air inlet of the fresh air fan;
air heaters are connected to the air outlet of the fresh air fan, and each air transmission pipeline is connected with the air outlet of the air heater.
2. An indoor air purification system according to claim 1, wherein: temperature sensor, humidity transducer and carbon dioxide concentration detector all are equipped with a plurality ofly, and the dispersion is installed indoor.
3. An indoor air purification system according to claim 1, wherein: the plurality of gas transmission pipelines are in one-to-one corresponding binding connection with the plurality of atomization spraying pipelines.
4. An indoor air purification system according to claim 1, wherein: the PLC controller is also connected with a display module in a matching way, the display module is connected with a liquid crystal display screen, and the liquid crystal display screen is installed outdoors.
5. An indoor air purification system according to claim 1, wherein: the PLC is also connected with a data transmission module in a matching manner, and the data transmission module is connected with the smart phone through a Modbus communication protocol.
CN202022520950.0U 2020-11-04 2020-11-04 Indoor air purification system Active CN213907792U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022520950.0U CN213907792U (en) 2020-11-04 2020-11-04 Indoor air purification system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022520950.0U CN213907792U (en) 2020-11-04 2020-11-04 Indoor air purification system

Publications (1)

Publication Number Publication Date
CN213907792U true CN213907792U (en) 2021-08-10

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Application Number Title Priority Date Filing Date
CN202022520950.0U Active CN213907792U (en) 2020-11-04 2020-11-04 Indoor air purification system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114326872A (en) * 2021-11-23 2022-04-12 中建二局第一建筑工程有限公司 Airflow cleanliness control method and device, controller and storage medium

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114326872A (en) * 2021-11-23 2022-04-12 中建二局第一建筑工程有限公司 Airflow cleanliness control method and device, controller and storage medium

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