CN207081707U - A kind of indoor decoration pollution monitoring system based on BIM technology - Google Patents

A kind of indoor decoration pollution monitoring system based on BIM technology Download PDF

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Publication number
CN207081707U
CN207081707U CN201720934113.8U CN201720934113U CN207081707U CN 207081707 U CN207081707 U CN 207081707U CN 201720934113 U CN201720934113 U CN 201720934113U CN 207081707 U CN207081707 U CN 207081707U
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China
Prior art keywords
monitoring
indoor
data
monitoring unit
subsystem
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Expired - Fee Related
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CN201720934113.8U
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Chinese (zh)
Inventor
李乔
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Jilin Jianzhu University
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Jilin Jianzhu University
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Abstract

It the utility model is related to a kind of indoor decoration pollution monitoring system based on BIM technology, including indoor monitoring subsystem, data prediction and transmission subsystem and monitoring and processing center;Indoor monitoring subsystem is provided with Formaldehyde unit, benzene monitoring unit, toluene monitoring unit, dimethylbenzene monitoring unit, ammonia monitoring unit and indoor organic gas material TOVC monitoring unit;Data prediction and transmission subsystem include real-time data acquisition device, data pre-processor, wireless launcher and wireless receiver;Monitoring includes data storage, data processor, warning lamp, alarm and BIM model displays with processing center.The utility model is monitored to indoor decoration pollution thing formaldehyde, benzene,toluene,xylene, ammonia and TOVC;The finishing pollution detector of monitor, gas sampler height can be adjusted respectively;What Monitoring Data was wirelessly transmitted;Provided with warning lamp, alarm and BIM model displays.

Description

A kind of indoor decoration pollution monitoring system based on BIM technology
Technical field
It the utility model is related to interior decoration field, more particularly to a kind of indoor decoration pollution monitoring based on BIM technology System.
Background technology
Indoor decoration pollution refer to various building materials and ornament materials are discharged in fitment process pollution and The chemicals that insecticide, deodorant, aromatic etc. largely use, the pollution to caused by indoor environment.Pollution is mentioned, people are first It is envisioned that the harm of atmosphere pollution and water pollution to human body, but ignores harm of the room air to human body.It is in fact, indoor Air pollution is significantly larger than outdoor, and the time that people learn, work and lived indoors has accounted for the 80~90% of whole day, " Room air pollution " is paid attention to by increasing people.Indoor environmental pollution is dirty after coal-smoke pollution, photochemical fog type The 3rd pollution period after dye.
BIM English full name is Building Information Modeling, domestic more consistent translator of Chinese For:BIM.BIM technology is a kind of digitization instrument that management is built applied to engineering design, passes through parameter model The relevant information of various projects is integrated, is shared and is transmitted in the lifecycle process of project planning, operation and maintenance, Make engineers and technicians that various architecture informations are made with correct understanding and efficiently reply, be design team and runed including building Each side's construction bodies including unit provide the basis to cooperate, are improving production efficiency, cost-effective and shortening duration side Face plays a significant role.
At present, also BIM technology is not applied in the monitoring of indoor decoration pollution.
Utility model content
Technical problem to be solved in the utility model:There is provided in view of the shortcomings of the prior art with defect, the utility model It is a kind of that indoor decoration pollution thing formaldehyde, benzene,toluene,xylene, ammonia and TOVC are monitored;The finishing pollution inspection of monitor Survey instrument, gas sampler height can be adjusted respectively;What Monitoring Data was wirelessly transmitted;Provided with warning lamp, The indoor decoration pollution monitoring system based on BIM technology of alarm and BIM model displays.
What the utility model was designed so as to:A kind of indoor decoration pollution monitoring system based on BIM technology, its feature exist In:Including indoor monitoring subsystem, data prediction and transmission subsystem and monitoring and processing center;Described indoor monitoring System is provided with Formaldehyde unit, benzene monitoring unit, toluene monitoring unit, dimethylbenzene monitoring unit, ammonia monitoring unit and room Interior organic gas material TOVC monitoring unit;Described data prediction and transmission subsystem include real-time data acquisition device, number Data preprocess device, wireless launcher and wireless receiver;Described indoor monitoring subsystem, real-time data acquisition device, data are pre- Processor, wireless launcher, wireless receiver are sequentially connected;Described monitoring includes data storage, data with processing center Processor, warning lamp, alarm and BIM model displays;Described data prediction and the wireless receiver of transmission subsystem, Monitor and be sequentially connected with data storage, the data processor of processing center;Described data processor is connected to warning Lamp, alarm and BIM model displays;
Described indoor monitoring subsystem is disposed in the interior in monitor;Described indoor monitoring device is examined including finishing pollution Instrument, gas sampler, riser, top plate, fixed hoist, lower plywood is surveyed to combine with roller;Described finishing pollution inspection Survey instrument is JC-4 type detectors, be provided with finishing pollution detector Formaldehyde unit, benzene monitoring unit, toluene monitoring unit, Dimethylbenzene monitoring unit, ammonia monitoring unit and TOVC monitoring unit, finishing pollution detector pass through sebific duct and 2 gases respectively Sampler connects, and finishing pollution detector is located above top plate;Described gas sampler is located above riser;Described Top plate is connected by 2 fixed hoists with lower plywood, and top plate offers the plate hole for placing riser;Described Riser is connected by fixed hoist with lower plywood;Described lower plywood bottom is provided with some groups of rollers and combined;Described Roller combination includes steering gear, spring pitman, wheel shaft and roller;Described lower plywood, steering gear, spring pitman, wheel shaft It is sequentially connected;It is connected in the middle part of described wheel shaft with spring pitman, axle ends are connected with roller.
Wherein, described riser is wood based panel.Described fixed hoist is hydraulic lifter.Described roller The quantity of combination is 4,6 or 8 groups.The roller outer wrap of described roller combination has rubber layer or plastic layer.
By above-mentioned design, the utility model can bring following beneficial effect:
The utility model is carried out to the formaldehyde in indoor decoration pollution thing, benzene,toluene,xylene, ammonia and TOVC respectively Monitoring, monitoring range is wide, covers most finishing pollution thing, can effectively show the situation of indoor decoration pollution thing.It is indoor Monitor is the monitor that can adjust height, can not only adjust the height of whole top plate, i.e. finishing pollution detector, The height of single riser, i.e. gas sampler can be adjusted, is easy to not chummery different height opening position finishing pollution The monitoring of principle condition.The data monitored by carrying out wireless transmission and receiving after gathering, pre-processing, be easy to practical operation end with The data transmission at monitoring and controlling end.Monitoring is analyzed again after being stored with processing center to data, retains initial data, meanwhile, Provided with warning lamp, alarm, BIM model displays, BIM model displays can be carried out to each room various pollutants data It has been shown that, it is visual in image, it is easy to personnel to be operated.
Brief description of the drawings
Fig. 1 is structured flowchart of the present utility model;
Fig. 2 is the structural representation of indoor monitoring device of the present utility model;
Fig. 3 is the structural representation of the riser propradation of indoor monitoring device of the present utility model.
1 it is finishing pollution detector in figure, 2 be gas sampler, 3 be riser, 4 be top plate, 5 is fixed type lifting Machine, 6 be lower plywood, 7 be roller combination.
Embodiment
Scheme of the present utility model is further described with reference to specification drawings and specific embodiments.
Embodiment:
A kind of indoor decoration pollution monitoring system based on BIM technology, including indoor monitoring subsystem, data prediction and Transmission subsystem and monitoring and processing center;Indoor monitoring subsystem is provided with Formaldehyde unit, benzene monitoring unit, toluene monitoring Unit, dimethylbenzene monitoring unit, ammonia monitoring unit and indoor organic gas material TOVC monitoring unit;Data prediction and biography Defeated subsystem includes real-time data acquisition device, data pre-processor, wireless launcher and wireless receiver;Indoor monitoring subsystem System, real-time data acquisition device, data pre-processor, wireless launcher, wireless receiver are sequentially connected;Monitoring and processing center bag Include data storage, data processor, warning lamp, alarm and BIM model displays;Data prediction and transmission subsystem Wireless receiver, the data storage of monitoring and processing center, data processor are sequentially connected;Data processor is connected to Warning lamp, alarm and BIM model displays;Indoor monitoring subsystem is disposed in the interior in monitor;Indoor monitoring device includes Finishing pollution detector 1, gas sampler 2, riser 3, top plate 4, fixed hoist 5, lower plywood 6 combine 7 with roller; Finishing pollution detector 1 is JC-4 type detectors, and Formaldehyde unit, benzene monitoring unit, first are provided with finishing pollution detector 1 Benzene monitoring unit, dimethylbenzene monitoring unit, ammonia monitoring unit and TOVC monitoring unit, finishing pollution detector 1 pass through respectively Sebific duct is connected with 2 gas samplers 2, and finishing pollution detector 1 is located at the top of top plate 4;Gas sampler 2 is located at riser 3 tops;Top plate 4 is connected by 2 fixed hoists 5 with lower plywood 6, and fixed hoist 5 is hydraulic lifter, on Laminate 4 offers the plate hole for placing riser 3;Riser 3 is connected by fixed hoist 5 with lower plywood 6, riser 3 be wood based panel;The bottom of lower plywood 6 is provided with some groups of rollers and combines 7;Roller combination 7 includes steering gear, spring pitman, wheel shaft With roller, the quantity of roller combination 7 is 4,6 or 8 groups;Lower plywood 6, steering gear, spring pitman, wheel shaft are sequentially connected;Wheel shaft Middle part is connected with spring pitman, and axle ends are connected with roller, and roller outer wrap has rubber layer or plastic layer.
Application method:
When in use, the Formaldehyde unit in indoor monitoring subsystem, benzene monitoring unit, toluene monitoring unit, diformazan Benzene monitoring unit, ammonia monitoring unit are with TOVC monitoring unit respectively to the formaldehyde after interior decoration, benzene,toluene,xylene, ammonia Gas, TOVC are monitored, and the instrument of monitoring uses indoor monitoring device, and concrete operations are that gas sampler 2 is carried out to room air Sampling, is then detected by finishing pollution detector 1, according to the concrete operation method of JC-4 type finishing pollutions detector 1 Implement.
The pollutant data that indoor monitoring subsystem collects, data prediction and transmission subsystem are sent to, it is real-time Data acquisition unit gathers, and is then pre-processed by data pre-processor, the data after processing are carried out by wireless launcher Send, received by wireless receiver, be finally transferred to monitoring and processing center.
Monitoring is stored with processing center to the data after processing by data storage, then passes through data processor Analyzed and processed, when close to warning numerical value, light warning lamp, carrying out some or some pollutant data to the external world will surpass Target is prompted;When more than warning numerical value, alarm sounds device, to the extraneous report for carrying out some or some pollutant superscalar datas It is alert;And in BIM model displays, situation and pollutant numerical value to indoor regional are shown, personnel easy to operation Operation.
When using indoor monitoring device, the passage of whole indoor monitoring device is arrived by the position needed by roller combination 7, then Top plate 4 is lifted by 2 fixed hoists 5 on lower plywood 6, riser is lifted by other 1 fixed hoist 5 3, top plate 4, riser 3 are lifted to the height of needs.Gas sampler 2 is opened, room air is sampled, Ran Houtong Cross rubber tube and be transported to finishing pollution detector 1, formaldehyde therein, benzene,toluene,xylene, ammonia and TOVC are monitored.
The undeclared part being directed to is same as the prior art or is realized using prior art.
General principle, principal character and advantage of the present utility model has been shown and described above.The technical staff of the industry It should be appreciated that above-described embodiment does not limit the utility model in any form, it is all by the way of equivalent substitution or equivalent transformation The technical scheme obtained, all falls within the scope of protection of the utility model.

Claims (5)

  1. A kind of 1. indoor decoration pollution monitoring system based on BIM technology, it is characterised in that:Including indoor monitoring subsystem, number Data preprocess and transmission subsystem and monitoring and processing center;Described indoor monitoring subsystem is provided with Formaldehyde unit, benzene Monitoring unit, toluene monitoring unit, dimethylbenzene monitoring unit, ammonia monitoring unit and indoor organic gas material TOVC monitorings are single Member;Described data prediction and transmission subsystem include real-time data acquisition device, data pre-processor, wireless launcher and nothing Line receiver;Described indoor monitoring subsystem, real-time data acquisition device, data pre-processor, wireless launcher, wireless receiving Device is sequentially connected;Described monitoring includes data storage, data processor, warning lamp, alarm and BIM moulds with processing center Escope;The described data prediction and wireless receiver of transmission subsystem, monitoring and processing center data storage, Data processor is sequentially connected;Described data processor is connected to warning lamp, alarm and BIM model displays;
    Described indoor monitoring subsystem is disposed in the interior in monitor;Described indoor monitoring device includes finishing pollution detector (1), gas sampler (2), riser (3), top plate (4), fixed hoist (5), lower plywood (6) combine (7) with roller; Described finishing pollution detector (1) is JC-4 type detectors, and Formaldehyde unit, benzene are provided with finishing pollution detector (1) Monitoring unit, toluene monitoring unit, dimethylbenzene monitoring unit, ammonia monitoring unit and TOVC monitoring unit, finishing pollution detection Instrument (1) is connected by sebific duct with 2 gas samplers (2) respectively, and finishing pollution detector (1) is located above top plate (4);Institute The gas sampler (2) stated is located above riser (3);Described top plate (4) is by 2 fixed hoists (5) with Laminate (6) connects, and top plate (4) offers the plate hole for placing riser (3);Described riser (3) is by fixed Lift (5) is connected with lower plywood (6);Described lower plywood (6) bottom is provided with some groups of rollers and combines (7);Described roller Combination (7) includes steering gear, spring pitman, wheel shaft and roller;Described lower plywood (6), steering gear, spring pitman, wheel Axle is sequentially connected;It is connected in the middle part of described wheel shaft with spring pitman, axle ends are connected with roller.
  2. A kind of 2. indoor decoration pollution monitoring system based on BIM technology according to claim 1, it is characterised in that:Institute The riser (3) stated is wood based panel.
  3. A kind of 3. indoor decoration pollution monitoring system based on BIM technology according to claim 1, it is characterised in that:Institute The fixed hoist (5) stated is hydraulic lifter.
  4. A kind of 4. indoor decoration pollution monitoring system based on BIM technology according to claim 1, it is characterised in that:Institute The quantity for the roller combination (7) stated is 4,6 or 8 groups.
  5. A kind of 5. indoor decoration pollution monitoring system based on BIM technology according to claim 1, it is characterised in that:Institute The roller outer wrap for the roller combination (7) stated has rubber layer or plastic layer.
CN201720934113.8U 2017-07-30 2017-07-30 A kind of indoor decoration pollution monitoring system based on BIM technology Expired - Fee Related CN207081707U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720934113.8U CN207081707U (en) 2017-07-30 2017-07-30 A kind of indoor decoration pollution monitoring system based on BIM technology

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720934113.8U CN207081707U (en) 2017-07-30 2017-07-30 A kind of indoor decoration pollution monitoring system based on BIM technology

Publications (1)

Publication Number Publication Date
CN207081707U true CN207081707U (en) 2018-03-09

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Application Number Title Priority Date Filing Date
CN201720934113.8U Expired - Fee Related CN207081707U (en) 2017-07-30 2017-07-30 A kind of indoor decoration pollution monitoring system based on BIM technology

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109884251A (en) * 2019-03-18 2019-06-14 天津市宇驰检测技术有限公司 Finishing pollution detection method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109884251A (en) * 2019-03-18 2019-06-14 天津市宇驰检测技术有限公司 Finishing pollution detection method
CN109884251B (en) * 2019-03-18 2021-10-22 天津市宇驰检测技术有限公司 Decoration pollution detection method

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Granted publication date: 20180309

Termination date: 20180730