CN206563353U - A kind of energy-conserving and environment-protective heating control system - Google Patents
A kind of energy-conserving and environment-protective heating control system Download PDFInfo
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- CN206563353U CN206563353U CN201621454189.2U CN201621454189U CN206563353U CN 206563353 U CN206563353 U CN 206563353U CN 201621454189 U CN201621454189 U CN 201621454189U CN 206563353 U CN206563353 U CN 206563353U
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Abstract
The utility model is related to a kind of energy-conserving and environment-protective heating control system, including:Set in central heating region:One or more live temperature measuring equipments for being distributed in important control zone, one or more collection in worksite devices for being evenly distributed on central heating region, be distributed in for it is dim supervisor and mainly for dim branch pipe or for dim pipe portion of registering one's residence Field adjustment device and at least one on-site control device;Real time temperature data detected by live temperature measuring equipment are wirelessly transmitted to on-site control device by collection in worksite device, control device receives real-time status data and the heat supply strategy comparative analysis of each temperature measuring point sent from harvester, so as to draw each adjustable strategies for dim point of adjustment of correspondence;And send regulating command to adjusting means;Change heating load;To realize " someone is comfortable, nobody is incubated " heating, at utmost reduce thermal source and waste, realize energy-saving and emission-reduction;Reduce the expenditure of enterprises and institutions' unit heating cost.
Description
Technical field
The utility model is related to a kind of heating system, more particularly to a kind of energy-conserving and environment-protective heating control system.
Background technology
Current Northern Part of China heat supply in winter is most of using by area of heat-supply service charge, continuously supplies at full capacity within 24 hours
Heat.For the building as the office property such as school, enterprises and institutions, continuously heat supply is obviously not necessarily to whole day at full capacity, makes
Into the waste and more air pollutions of the energy.
Utility model content
To solve above-mentioned technological deficiency, the utility model provide it is a kind of effectively realize energy-saving and emission-reduction based on Internet of Things
Energy-conserving and environment-protective heating control system.
The utility model is a kind of energy-conserving and environment-protective heating control system for solving above-mentioned technological deficiency, including:User scene
Heating control cabinet, the concentrated area heating system that heat supply network is constituted in multiple heat user rooms;To realize energy-conserving and environment-protective, in addition to:
It is located at one or more live temperature measuring equipments for being distributed in important control zone in central heating region, one or more is uniformly distributed
Collection in worksite device in central heating region, it is distributed in for dim supervisor and showing mainly for dim branch pipe or for dim pipe portion of registering one's residence
Field control device and at least one on-site control device.
Live temperature measuring equipment in accordance with the above, the live temperature measuring equipment is included:In temperature detecting module, temperature measuring equipment
Sending module;Wherein, the sending module that real time temperature data are coupled on temperature measuring equipment by temperature detecting module, and pass through number
Collection in worksite device is sent to according to transmission means.
Collection in worksite device in accordance with the above, the collection in worksite device is included:Receiving module on harvester, adopt
Sending module on acquisition means;Wherein, the receiving module on harvester is by the real time temperature data from live temperature measuring equipment
On-site control device is sent to coupled to the sending module on harvester, and by data transfer mode.
On-site control device in accordance with the above, the on-site control device is included:Connecing in control module, control device
Sending module in receipts module, control device;Control module is previously written heat supply tactical software;Receiving module on control device
Receive the real time temperature data from collection in worksite device and be coupled to control module, control module is by real time temperature data and heat supply
Tactical software, which is analyzed, calculates adjustable strategies, and the sending module on control device is transmitted to Field adjustment device.
Field adjustment device in accordance with the above, the Field adjustment device is included:Receiving module, drive in adjusting means
Dynamic model block;Wherein, the receiving module in adjusting means receives heat supply policy data or adjustable strategies from on-site control device
Data, and heat supply policy data or adjustable strategies data are coupled to drive module;Drive module according to heat supply policy data or
Adjustable strategies data controlling opening of valve or other flow regulating equipments.
Preferably, the sending module on temperature measuring equipment, the receiving module on harvester, the transmission mould on harvester
Receiving module on block, control device uses wireless module transport module.
Preferably, wireless module transport module includes:33MHZ wireless data transfer modules or 2.4G wireless data transmission moulds
Block or Zigbee wireless data transfer modules or Wifi wireless data transfer modules.
Preferably, the sending module on control device:For wired module.
Further improved as a kind of tele-control system of energy-conserving and environment-protective heating control system of the utility model, at the scene
Control device is additionally provided with the communication module for telecommunication.
A kind of energy-conserving and environment-protective heating control system of the utility model, its advantage is:Set in central heating region:
One or more live temperature measuring equipments for being distributed in important control zone, one or more it is evenly distributed on showing for central heating region
Harvester, it is distributed in for dim supervisor and mainly for dim branch pipe or for Field adjustment device, the Yi Jizhi of dim pipe portion of registering one's residence
A few on-site control device;Real time temperature data detected by live temperature measuring equipment are wirelessly transferred by collection in worksite device
To on-site control device, control device receives the real-time status data and heat supply strategy for each temperature measuring point sent from harvester
Comparative analysis, so as to draw each adjustable strategies for dim point of adjustment of correspondence;And send regulating command to adjusting means;Change heat supply
Amount;To realize " someone is comfortable, nobody is incubated " heating, at utmost reduce thermal source and waste, realize energy-saving and emission-reduction;Reduce enterprise's thing
The expenditure of industry unit heating cost.
Brief description of the drawings
Below according to accompanying drawing, the utility model is described in further detail, and accompanying drawing is only to more fully understand the utility model, no
It should turn into limitation of the present utility model:
Fig. 1 is a kind of energy-conserving and environment-protective heating control system framework figure of the utility model.
Embodiment
A kind of tele-control system of energy-conserving and environment-protective heating control system is implemented, and it includes:The heating control at user scene
The concentrated area heating system that heat supply network is constituted in cabinet, multiple heat user rooms;As shown in figure 1, it also includes:It is located at central heating area
The one or more live temperature measuring equipments 1 for being distributed in important control zone of domain selection, one or more it is evenly distributed on central heating
The collection in worksite device 2 in region, be distributed in for it is dim supervisor and mainly for dim branch pipe or for dim pipe portion of registering one's residence Field adjustment fill
Put 3 and at least one on-site control device 4;Realizing also includes following tool based on Internet of Things energy-conserving and environment-protective heating control system
Body is implemented:
The specific implementation of live temperature measuring equipment 1, the live temperature measuring equipment 1 is included:In temperature detecting module, temperature measuring equipment
Sending module;The temperature detecting module needs the temperature data detected comprising indoor temperature and supplies dim temperature, therefore, temperature inspection
Survey temperature sensor comprising detection indoor temperature in module and detection for the thermal flowmeter of dim temperature, upper coolant-temperature gage meter,
Return water temperature meter;To realize the transmission of detection temperature data, real time temperature data are coupled to temperature measuring equipment by temperature detecting module
On sending module and collection in worksite device 2 is sent to by data transfer mode;Sending module and scene on temperature measuring equipment
The data transfer mode of harvester 2 can using 433MHZ wireless data transmissions mode or 2.4G wireless data transmissions mode or
Zigbee wireless data transmissions mode or Wifi wireless data transmissions mode or wired data transfer mode;Wherein 433MHZ is wireless
Data transfer mode is preferred data transfer mode.
The specific implementation of collection in worksite device 2, the collection in worksite device 2 is for physical signalling between two network nodes
Work is forwarded, it is included:The sending module on receiving module, harvester on harvester;Reception mould on harvester
The sending module that real time temperature data from live temperature measuring equipment 1 are coupled on harvester by block, and pass through data transfer
Mode is sent to on-site control device 4, realizes real time temperature data forwarding;The two ends of the harvester 2 can be identical using completing
Media, therefore, the sending module on receiving module and harvester on harvester can be passed using identical wireless data
Defeated mode is 433MHZ wireless data transmissions mode or 2.4G wireless data transmissions mode or Zigbee wireless data transmission modes
Or Wifi wireless data transmission modes, and realized using corresponding wireless data carriage module, such as 3MHZ wireless data transmissions mould
Block or 2.4G wireless data transfer modules or Zigbee wireless data transfer modules or Wifi wireless data transfer modules etc..
The specific implementation of on-site control device 4, the on-site control device 4 is included:Reception in control module, control device
Sending module in module, control device;Control module is previously written heat supply tactical software;Receiving module on control device connects
Receive the real time temperature data from collection in worksite device 2 and be coupled to control module, control module is by real time temperature data and heat supply
Tactical software, which is analyzed, calculates adjustable strategies, and the sending module on control device is transmitted to Field adjustment device 3;It is above-mentioned
Understand, the on-site control device 4 also includes the receiving module and control device on the control device communicated to connect with control module
On sending module;Wherein, the receiving module on control device should match with the sending module on harvester, therefore, its
Wireless data transmission mode is also realized using wireless data transfer modules such as 433MHZ or 2.4G or Zigbee or Wifi.For
It is for realizing the data transfer between control device 4 and adjusting means 3, for carrying for sending module on control device
High-transmission quality and saving transmission time consider that the sending module on the control device is preferably wired data transfer mode, and
Realized by wireless module;If control device 4 and the adjusting means 3 at user scene it is distant when, due to wire communication
The foundation of mode must set up cable, or excavate cable duct, it is necessary to substantial amounts of man power and material;Therefore, control device 4 and regulation
Data transfer mode between device 3 can also use wireless data transmission mode.
According to above-mentioned specific implementation, the data of live temperature measuring equipment 1 and collection in worksite device 2 and on-site control device 4 are passed
Defeated mode is both preferably 433MHZ wireless data transmission modes;Thus, on the sending module, harvester on temperature measuring equipment
The receiving module on sending module, control device on receiving module and harvester is preferably:433M wireless modules.
The specific implementation of Field adjustment device 3, the Field adjustment device 3 is included:Receiving module, driving in adjusting means
Module;Receiving module in adjusting means receives heat supply policy data or adjustable strategies data from on-site control device 4, and
Heat supply policy data or adjustable strategies data are coupled to drive module;Drive module is according to heat supply policy data or adjustable strategies
Data controlling opening of valve or other flow regulating equipments.
In order to which the utility model realizes remote control based on Internet of Things energy-conserving and environment-protective heating control system, control at the scene is filled
Put the network communication module for setting and being communicated to connect with control module in 4, such as GPRS communication modules, cdma communication module;So,
Just energy mobile communications network builds remote control with backstage heating cluster management software system BS and front-end customer machine software systems
Framework.
The utility model is illustrated above by embodiment, the embodiment provided is only as an example, simultaneously
Non- therefore limitation practical range of the present utility model.Those skilled in the art both know about, specific real more than
Various changes and modifications can be done to the utility model by applying description, it is, therefore, to be understood that in addition to above-mentioned particular implementation, this
Utility model can otherwise be implemented, and be not limited to described in description above.
Claims (9)
1. a kind of energy-conserving and environment-protective heating control system,
Including:The concentrated area heating system that heat supply network is constituted in the live heating control cabinet of user, multiple heat user rooms;
Characterized in that,
Also include:It is located at one or more live temperature measuring equipments for being distributed in important control zone in the central heating region(1)、
One or more collection in worksite devices for being evenly distributed on central heating region(2), be distributed in for it is dim supervisor and mainly for dim
Branch pipe or the Field adjustment device for dim pipe portion of registering one's residence(3)And at least one on-site control device(4).
2. energy-conserving and environment-protective heating control system according to claim 1, wherein,
The live temperature measuring equipment(1)Comprising:Sending module in temperature detecting module, temperature measuring equipment;The temperature detection mould
Block is sent to described existing by real time temperature data coupled to the sending module on the temperature measuring equipment and by data transfer mode
Field harvester(2).
3. energy-conserving and environment-protective heating control system according to claim 1, wherein,
The collection in worksite device(2)Comprising:The sending module on receiving module, harvester on harvester;It is described to adopt
Receiving module on acquisition means will come from the live temperature measuring equipment(1)Real time temperature data coupled on the harvester
Sending module, and the on-site control device is sent to by data transfer mode(4).
4. energy-conserving and environment-protective heating control system according to claim 1, wherein,
The on-site control device(4)Comprising:The transmission mould on receiving module, control device in control module, control device
Block;The control module is previously written heat supply tactical software;Receiving module on the control device, which is received, comes from the scene
Harvester(2)Real time temperature data be coupled to the control module, the control module is by real time temperature data and heat supply
Tactical software, which is analyzed, calculates adjustable strategies, and the sending module on the control device is transmitted to Field adjustment dress
Put(3).
5. energy-conserving and environment-protective heating control system according to claim 1, wherein,
The Field adjustment device(3)Comprising:Receiving module, drive module in adjusting means;Connecing in the adjusting means
Module is received to receive from on-site control device(4)Heat supply policy data or adjustable strategies data, and by heat supply policy data or
Adjustable strategies data are coupled to the drive module;The drive module is adjusted according to heat supply policy data or adjustable strategies data
Valve opening or other flow regulating equipments.
6. the energy-conserving and environment-protective heating control system according to any one of Claims 2 or 3, wherein,
The receiving module on sending module, harvester on the temperature measuring equipment, the sending module on harvester, control dress
The receiving module put is:Wireless module transport module.
7. energy-conserving and environment-protective heating control system according to claim 6, wherein,
The wireless module transport module:3MHZ wireless data transfer modules or 2.4G wireless data transfer modules or Zigbee without
Line data transmission module or Wifi wireless data transfer modules.
8. energy-conserving and environment-protective heating control system according to claim 4, wherein,
Sending module on the control device:For wired module.
9. energy-conserving and environment-protective heating control system according to claim 1, wherein,
The on-site control device(4)It is additionally provided with the network communication module for telecommunication.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621454189.2U CN206563353U (en) | 2016-12-28 | 2016-12-28 | A kind of energy-conserving and environment-protective heating control system |
Applications Claiming Priority (1)
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CN201621454189.2U CN206563353U (en) | 2016-12-28 | 2016-12-28 | A kind of energy-conserving and environment-protective heating control system |
Publications (1)
Publication Number | Publication Date |
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CN206563353U true CN206563353U (en) | 2017-10-17 |
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CN201621454189.2U Active CN206563353U (en) | 2016-12-28 | 2016-12-28 | A kind of energy-conserving and environment-protective heating control system |
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CN (1) | CN206563353U (en) |
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2016
- 2016-12-28 CN CN201621454189.2U patent/CN206563353U/en active Active
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