CN215863661U - Intelligent integrated heating equipment under central heating mode - Google Patents

Intelligent integrated heating equipment under central heating mode Download PDF

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Publication number
CN215863661U
CN215863661U CN202122045782.9U CN202122045782U CN215863661U CN 215863661 U CN215863661 U CN 215863661U CN 202122045782 U CN202122045782 U CN 202122045782U CN 215863661 U CN215863661 U CN 215863661U
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China
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heating
intelligent
water
control panel
collector
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CN202122045782.9U
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徐斌
石峰
张炜晨
崔翔
万吕
程钊
胡平
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WUHAN DEWN ENGINEERING TECHNOLOGY CO LTD
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WUHAN DEWN ENGINEERING TECHNOLOGY CO LTD
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Abstract

The utility model provides intelligent integrated heating equipment under a centralized heating mode, which comprises a copper water distributor-collector, wherein the water inlet end of the copper water distributor-collector is communicated with a heating hot water pipe, the water outlet end of the copper water distributor-collector is communicated with a plurality of branch coil pipes, a temperature sensor and a flowmeter are arranged on the copper water distributor-collector, and a heating system is arranged between a centralized heating network and user terminal heating equipment and is integrally installed in an integrated mode; a user can remotely set a desired room temperature for each heating space through a smart phone or a wireless central control panel; the system monitors the water temperature of supply and return water in real time, and sets the opening and closing time of each branch pipe, thereby playing the role of controlling the hot water flow in unit time and further controlling the room temperature; when faults such as pipe explosion, leakage and the like occur, the system monitors that the water pressure drops rapidly in real time, and can send an alarm to a user at the first time to remind the user to close the electric water supply ball valve by a remote key.

Description

Intelligent integrated heating equipment under central heating mode
Technical Field
The utility model relates to the field of intelligent heating equipment, in particular to intelligent integrated heating equipment in a centralized heating mode.
Background
Central heating is the most common heating mode in areas with cold climate. The heating mode is mainly applied to the northern area of China in the past, and along with the improvement of the living standard of people, the heating mode is gradually adopted in the southern area of China.
However, since the user side in which central heating is located indoors operates in a temperature equalization manner, the user cannot adjust. Meanwhile, the heating requirements are different due to different senses of the temperature of each resident, the position and the orientation of each resident are different, and the water temperature is uniformly controlled only through the heat source end, so that the individual requirements of different users are difficult to meet. For the user who charges according to the heat, the purposes of saving energy and cost cannot be realized.
Although a user can manually adjust the water supply ball valve and the branch valve, the water collecting and collecting device under the existing centralized heating system is generally arranged in a concealed low corner, and the adjustment is very inconvenient; is not friendly to the people with mobility inconvenience, and is more difficult to realize real-time regulation and precise regulation and control.
The central heating system adopts high-temperature high-pressure water supply, and once faults such as pipe explosion, leakage and the like occur, if a user is not indoors or the reaction is not timely, great loss is caused to the user.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide intelligent integrated heating equipment in a centralized heating mode aiming at the defects of the prior art, and the intelligent integrated heating equipment can be convenient for customers to flexibly and effectively control the room temperature, thereby achieving the purposes of saving energy and cost.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides intelligent integrated heating equipment under a centralized heating mode, which comprises a copper water distributor-collector, wherein the water inlet end of the copper water distributor-collector is communicated with a heating hot water pipe, the water outlet end of the copper water distributor-collector is communicated with a plurality of branch coil pipes, and a temperature sensor and a flow meter are arranged on the copper water distributor-collector.
Furthermore, a plurality of electric heating actuators are arranged on the copper water distributor-collector, and correspond to the branch coil pipes one by one; the number of the electric heating actuators is matched with the number of the heating spaces of the users.
Further, the temperature sensor, the flowmeter, the electric heating actuator and the copper water collector are installed in an integrated case together.
Furthermore, an intelligent heating power line concentration board is further installed in the integrated case, and the intelligent heating power line concentration board and the wireless central control panel are in wireless interactive communication through Bluetooth or WIFI.
Further, the wireless central control panel acquires various data from the intelligent heating power line concentration board through a Bluetooth or WIFI network and sends the various data to the smart phone through a 4G network;
the smart phone sends the instruction to the wireless central control panel through a 4G network, and after the instruction is transferred through the wireless central control panel, the instruction is sent to the intelligent heating power line concentration board;
or the user directly sets instructions on the wireless center control panel.
Furthermore, after the intelligent heating power line concentration board receives the control signal, the on or off of the electric water supply valve and the electric heating actuator is controlled through the onboard relay.
The utility model has the beneficial effects that: the heating system is arranged between the central heating network and the user terminal heating equipment and is integrally installed in an integrated mode; a user can remotely set a desired room temperature for each heating space through a smart phone or a wireless central control panel; the system monitors the water temperature of supply and return water in real time, and sets the opening and closing time of each branch pipe, thereby playing the role of controlling the hot water flow in unit time and further controlling the room temperature; when faults such as pipe explosion, leakage and the like occur, the system monitors that the water pressure drops rapidly in real time, and can send an alarm to a user at the first time to remind the user to close the electric water supply ball valve by a remote key.
Drawings
Fig. 1 is a system diagram of an intelligent integrated heating system in a central heating system according to the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Referring to fig. 1, an intelligent integrated heating device in a centralized heating mode includes a copper water distributor-collector 1, a water inlet end of the copper water distributor-collector 1 is communicated with a heating hot water pipe, a water outlet end of the copper water distributor-collector 1 is communicated with a plurality of branch coil pipes 5, and a temperature sensor 2 and a flow meter 3 are installed on the copper water distributor-collector 1.
The copper water distributor-collector 1 is also provided with a plurality of electric heating actuators 8, and the plurality of electric heating actuators 8 correspond to the plurality of branch coil pipes 5 one by one; the number of the electric heating actuators 8 is matched with the number of the heating spaces of the users.
Wherein, the branch coil pipe 5 leads the heating water into each heating space of the user;
the temperature sensor 2 is used for monitoring the temperature of the supplied and returned water.
The flowmeter 3 is installed on a water supply pipe and collects water consumption of a user.
In the specific implementation mode of the utility model, the existing heating pipeline of the user is not changed, so that the installation of the user who finishes the indoor decoration is facilitated.
The temperature sensor 2, the flowmeter 3, the electric heating actuator 8 and the copper water collector 1 are installed in an integrated case 11.
Wherein, the power plug 12, the main water supply and return pipe 6 and the branch pipe coil 5 are respectively connected with the integrated case 11.
Wherein, a plurality of electric heating actuators 8 are installed in the integrated box 11 in a unified manner, rather than being dispersed in the heating space.
The electric heating actuator 8 is used for controlling the heating hot water led from the copper water distributor-collector 1 to enter the corresponding branch coil pipe 5, and controlling the temperature of the heating space by opening and closing. The longer the on-time, the higher the heat dissipation temperature, and vice versa.
Except the smart phone 9 and the wireless hollow panel 10, other devices are installed in the integrated case 11, so that the wireless hollow panel is easy to install on a construction site and convenient to maintain in a later period.
The integrated cabinet 11 is installed between the water supply and return pipes of the central heating heat supply network.
An intelligent heating power line concentrator 4 is further installed in the integrated case 11, and the intelligent heating power line concentrator 4 and the wireless central control panel 10 are in wireless interactive communication through Bluetooth or WIFI.
Wherein, intelligence heating power line concentration board 4 is intelligent control module's data acquisition center and instruction actuating mechanism, has mainly following several tasks: collecting information data of the water temperature sensor 2 and the flowmeter 3; collecting the opening and closing states of an electric water supply ball valve 7 and an electric heating actuator 8; receiving a control instruction; the electric water supply ball valve 7 and the electric heating actuator 8 are controlled to open and close through an onboard relay.
And the electric water supply ball valve 7 is arranged on the main water supply pipe and the main water return pipe and used for closing the water supply pipe and the water return pipe.
The wireless central control panel 10 acquires various data from the intelligent heating power line concentrator 4 through a Bluetooth or WIFI network and sends the various data to the smart phone 9 through a 4G network;
the smart phone 9 sends an instruction to the wireless central control panel 10 through a 4G network, and after the instruction is transferred through the wireless central control panel 10, the instruction is sent to the intelligent heating power line concentrator 4;
or the user directly sets instructions on the wireless center control panel 10.
After the intelligent heating power line concentration board 4 receives the control signal, the on or off of the electric water supply valve 7 and the electric heating actuator 8 is controlled through the onboard relay.
The user accessible smart mobile phone 9 and wireless central control panel 10 set for the heating temperature in each room, and wireless central control panel 10 is through supplying data such as return water temperature, flow from intelligent heating power line concentration board 4 acquisition to send control command for intelligent heating power line concentration board 4 through bluetooth or WIFI, thereby realize the function of control room temperature.
The smart phone 9 and the wireless central control panel 10 are also used as display devices to display various data acquired by the intelligent heating power line concentrator 4 in real time, visually and synchronously.
And the smart phone 9 is connected with the wireless central control panel through a 4G network and the Internet. The user can control the system state in real time and operate the smart phone to achieve the purpose of controlling the room temperature.
The user can also control the electric water supply ball valve 7 through the smart phone 9 and the wireless central control panel 10, so that the purpose of remotely switching on and off the main water supply pipe loop in real time is realized, and great loss to the user caused by pipe explosion, leakage and other faults is avoided.
The above-mentioned embodiments only express the embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (6)

1. The utility model provides an intelligent integrated heating equipment under central heating mode which characterized in that: the water distribution and collection device comprises a copper water distribution and collection device (1), wherein the water inlet end of the copper water distribution and collection device (1) is communicated with a heating hot water pipe, the water outlet end of the copper water distribution and collection device (1) is communicated with a plurality of branch pipe coils (5), and a temperature sensor (2) and a flow meter (3) are installed on the copper water distribution and collection device (1).
2. The intelligent integrated heating equipment in a central heating mode according to claim 1, characterized in that: the copper water collecting and distributing device (1) is also provided with a plurality of electric heating actuators (8), and the electric heating actuators (8) correspond to the branch pipe coils (5) one by one; the number of the electric heating actuators (8) is matched with the number of the heating spaces of the users.
3. The intelligent integrated heating equipment in a central heating mode according to claim 2, characterized in that: the temperature sensor (2), the flowmeter (3), the electric heating actuator (8) and the copper water collector (1) are installed in an integrated case (11) together.
4. The intelligent integrated heating equipment in a central heating mode according to claim 3, characterized in that: still install intelligent heating power line concentration board (4) in integration machine case (11), intelligent heating power line concentration board (4) pass through bluetooth or WIFI wireless interactive communication with wireless central control panel (10).
5. The intelligent integrated heating equipment in a central heating mode according to claim 4, characterized in that: the wireless central control panel (10) acquires various data from the intelligent heating power line concentrator (4) through a Bluetooth or WIFI network and sends the various data to the intelligent mobile phone (9) through a 4G network;
the smart phone (9) sends the instruction to the wireless central control panel (10) through a 4G network, and sends the instruction to the intelligent heating power line concentration board (4) after the instruction is transferred through the wireless central control panel (10);
or the user directly sets instructions on the wireless center control panel (10).
6. The intelligent integrated heating equipment in a central heating mode according to claim 5, characterized in that: after the intelligent heating power line concentration board (4) receives the control signal, the on or off of the electric water supply valve (7) and the electric heating actuator (8) is controlled through the onboard relay.
CN202122045782.9U 2021-08-27 2021-08-27 Intelligent integrated heating equipment under central heating mode Active CN215863661U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122045782.9U CN215863661U (en) 2021-08-27 2021-08-27 Intelligent integrated heating equipment under central heating mode

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122045782.9U CN215863661U (en) 2021-08-27 2021-08-27 Intelligent integrated heating equipment under central heating mode

Publications (1)

Publication Number Publication Date
CN215863661U true CN215863661U (en) 2022-02-18

Family

ID=80243392

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122045782.9U Active CN215863661U (en) 2021-08-27 2021-08-27 Intelligent integrated heating equipment under central heating mode

Country Status (1)

Country Link
CN (1) CN215863661U (en)

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