CN109949875A - A kind of temperature and humidity amendment prediction technique of ornament materials Form aldehyde release - Google Patents

A kind of temperature and humidity amendment prediction technique of ornament materials Form aldehyde release Download PDF

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Publication number
CN109949875A
CN109949875A CN201910254473.7A CN201910254473A CN109949875A CN 109949875 A CN109949875 A CN 109949875A CN 201910254473 A CN201910254473 A CN 201910254473A CN 109949875 A CN109949875 A CN 109949875A
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China
Prior art keywords
temperature
humidity
concentration
form aldehyde
aldehyde release
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Pending
Application number
CN201910254473.7A
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Chinese (zh)
Inventor
祖公博
安峣
许小星
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Shenzhen Guangtian Group Ltd By Share Ltd
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Shenzhen Guangtian Group Ltd By Share Ltd
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Priority to CN201910254473.7A priority Critical patent/CN109949875A/en
Publication of CN109949875A publication Critical patent/CN109949875A/en
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Abstract

The invention discloses a kind of temperature and humidity of ornament materials Form aldehyde release to correct prediction technique, comprising the following steps: 1), inputs information;2) information, is handled;3), output information;In step 1), the information of input includes thermodynamic temperature T, relative humidity RH, time t and concentration of formaldehyde C0;In step 2, (i) application core algorithm: C=f (T, RH)=f1 (T) f2 (RH) is calculated and is predicted to initial data according to target temperature and humidity, the concentration after being predicted, and it is intracellular to deposit in member.Based on the Form aldehyde release concentration measured under a certain temperature and humidity, under the conditions of predicting other temperature and humidities, material Form aldehyde release concentration, batch data processing: the concentration of formaldehyde data changed over time are read automatically, with corresponding temperature humidity and time, and Form aldehyde release concentration data and change curve under target temperature and humidity are automatically generated.

Description

A kind of temperature and humidity amendment prediction technique of ornament materials Form aldehyde release
Technical field
The present invention relates to formaldehyde examinations to calculate technical field, the temperature and humidity amendment of specially a kind of ornament materials Form aldehyde release Prediction technique.
Background technique
Formaldehyde is one of main noxious pollutant of the interior space, and existing Form aldehyde release concentration is to a certain fixed environment Under the conditions of, i.e. what the material of temperature and humidity measured.
Practical living environment's temperature and humidity is dynamic change, and Form aldehyde release rate and temperature and appropriateness breath manner of breathing It closes, existing method cannot consider the influence of temperature and humidity variation PARA FORMALDEHYDE PRILLS(91,95) release, so we propose after studying for a long time A kind of temperature and humidity amendment prediction technique of ornament materials Form aldehyde release.
Summary of the invention
(1) the technical issues of solving
In view of the deficiencies of the prior art, the present invention provides a kind of temperature and humidity of ornament materials Form aldehyde release to correct prediction technique, Have under the conditions of predicting other temperature and humidities, the advantages that material Form aldehyde release concentration, solves that existing detection is incomplete to ask Topic.
(2) technical solution
The invention provides the following technical scheme: a kind of temperature and humidity of ornament materials Form aldehyde release corrects prediction technique, including following Step:
1) information, is inputted;
2) information, is handled;
3), output information;
In step 1), the information of input includes thermodynamic temperature T, relative humidity RH, time t and concentration of formaldehyde C0
In step 2, (i) application core algorithm: C=f (T, RH)=f1 (T) f2 (RH), according to target temperature and humidity Initial data is calculated and is predicted, the concentration after being predicted, and it is intracellular to deposit in member.
(ii) two layers of circulation is executed: 1) to the different time points concentration data in each group of data, cycle calculations.2) to not Upper one layer of circulation is executed with load-carry duty group.
(iii) to prediction concentrations, emission is calculated to each group of experimental data according to load-carry duty, and deposit in cell array It is interior;
In step 3), (i) the .xls format table that excel is supported is written automatically by algoritic module calculated result in program, output Content includes: time, concentration of formaldehyde, load-carry duty and emission;
(ii) concentration changes with time curve is automatically generated, and difference is indicated to result legend before and after temperature adjustmemt and is compared, journey Sequence can also complete different bearer rate result and compare.
Preferably, the output result of the step 3) can be written into .xls file, and .GIF text can be generated in drawing result Part.
Preferably, information is inputted in the step 1) to read from .csv file, and time, temperature, humidity and concentration is not by It is stored respectively in the form of cellular with load-carry duty.
Table 1
Table 2
(3) beneficial effect
Compared with prior art, the present invention provides a kind of temperature and humidity of ornament materials Form aldehyde release to correct prediction technique, has Below the utility model has the advantages that
1, based on the Form aldehyde release concentration measured under a certain temperature and humidity, under the conditions of predicting other temperature and humidities, material first Aldehyde release concentration.
2, batch data is handled: read the concentration of formaldehyde data changed over time automatically, and accordingly temperature humidity and when Between.
3, prediction result is generated into prediction result table automatically, content includes the concentration of formaldehyde data of prediction, and corresponding Temperature humidity and time.
4, it automatically generates concentration of formaldehyde and changes over time curve, and amendment front and back data are plotted in same picture and are carried out Compare.
Detailed description of the invention
Fig. 1 is that a kind of temperature and humidity of ornament materials Form aldehyde release proposed by the present invention corrects prediction technique schematic illustration;
Fig. 2 is to compare signal before and after a kind of temperature and humidity of ornament materials Form aldehyde release proposed by the present invention corrects prediction technique amendment Figure;
Fig. 3 is that a kind of temperature and humidity of ornament materials Form aldehyde release proposed by the present invention corrects the signal of prediction technique different bearer rate Figure.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other Embodiment shall fall within the protection scope of the present invention.
Please refer to Fig. 1-3, a kind of temperature and humidity amendment prediction technique of ornament materials Form aldehyde release, comprising the following steps:
1) information, is inputted;
2) information, is handled;
3), output information;
In step 1), the information of input includes thermodynamic temperature T, relative humidity RH, time t and concentration of formaldehyde C0
In step 2, (i) application core algorithm: C=f (T, RH)=f1 (T) f2 (RH), according to target temperature and humidity Initial data is calculated and is predicted, the concentration after being predicted, and it is intracellular to deposit in member.
(ii) two layers of circulation is executed: 1) to the different time points concentration data in each group of data, cycle calculations.2) to not Upper one layer of circulation is executed with load-carry duty group.
(iii) to prediction concentrations, emission is calculated to each group of experimental data according to load-carry duty, and deposit in cell array It is interior;
In step 3), (i) the .xls format table that excel is supported is written automatically by algoritic module calculated result in program, output Content includes: time, concentration of formaldehyde, load-carry duty and emission;
(ii) concentration changes with time curve is automatically generated, and difference is indicated to result legend before and after temperature adjustmemt and is compared, journey Sequence can also complete different bearer rate result and compare.
The output result of step 3) can be written into .xls file, and .GIF file can be generated in drawing result.
It inputs information in step 1) to read from .csv file, and time, temperature, humidity and concentration press different bearer rate with member Born of the same parents' form is stored respectively.
Table 1 is data storage specification when input module reads data, and table 2 is to automatically generate the result is that depositing generation specification.
1, based on the Form aldehyde release concentration measured under a certain temperature and humidity, under the conditions of predicting other temperature and humidities, material Expect Form aldehyde release concentration.
2, batch data is handled: read the concentration of formaldehyde data changed over time automatically, and accordingly temperature humidity and when Between.
3, prediction result is generated into prediction result table automatically, content includes the concentration of formaldehyde data of prediction, and corresponding Temperature humidity and time.
4, it automatically generates concentration of formaldehyde and changes over time curve, and amendment front and back data are plotted in same picture and are carried out Compare.
It although an embodiment of the present invention has been shown and described, for the ordinary skill in the art, can be with A variety of variations, modification, replacement can be carried out to these embodiments without departing from the principles and spirit of the present invention by understanding And modification, the scope of the present invention is defined by the appended.

Claims (3)

1. a kind of temperature and humidity of ornament materials Form aldehyde release corrects prediction technique, comprising the following steps:
1) information, is inputted;
2) information, is handled;
3), output information;
In step 1), the information of input includes thermodynamic temperature T, relative humidity RH, time t and concentration of formaldehyde C0;
In step 2, (i) application core algorithm: C=f (T, RH)=f1 (T) f2 (RH), according to target temperature and humidity Initial data is calculated and is predicted, the concentration after being predicted, and it is intracellular to deposit in member;
(ii) two layers of circulation is executed: 1) to the different time points concentration data in each group of data, cycle calculations;
2) upper one layer of circulation is executed to different bearer rate group;
(iii) to prediction concentrations, emission is calculated to each group of experimental data according to load-carry duty, and deposit in cell array;
In step 3), (i) the .xls format table that excel is supported is written automatically by algoritic module calculated result in program, defeated Content includes: time, concentration of formaldehyde, load-carry duty and emission out;
(ii) concentration changes with time curve is automatically generated, and difference is indicated to result legend before and after temperature adjustmemt and is compared, journey Sequence can also complete different bearer rate result and compare.
2. a kind of temperature and humidity of ornament materials Form aldehyde release according to claim 1 corrects prediction technique, it is characterised in that: The output result of the step 3) can be written into xls file, and tif file can be generated in drawing result.
3. a kind of temperature and humidity of ornament materials Form aldehyde release according to claim 1 corrects prediction technique, it is characterised in that: It inputs information in the step 1) to read from csv file, and time, temperature, humidity and concentration press different bearer rate with cellular shape Formula is stored respectively.
CN201910254473.7A 2019-03-31 2019-03-31 A kind of temperature and humidity amendment prediction technique of ornament materials Form aldehyde release Pending CN109949875A (en)

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Cited By (2)

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CN111307739A (en) * 2020-03-12 2020-06-19 杭州老爸标准技术集团有限公司 Formaldehyde detection system and method based on dry spectrophotometry
CN111323539A (en) * 2020-03-12 2020-06-23 杭州老爸标准技术集团有限公司 Formaldehyde detection system with prediction function and method thereof

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CN109540819A (en) * 2018-12-27 2019-03-29 深圳广田集团股份有限公司 The method for predicting ornament materials Form aldehyde release concentration under different temperature and humidity conditions
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CN208170581U (en) * 2018-04-28 2018-11-30 江苏朗逸环保科技有限公司 One kind removing aldehyde purifying control system
CN109540819A (en) * 2018-12-27 2019-03-29 深圳广田集团股份有限公司 The method for predicting ornament materials Form aldehyde release concentration under different temperature and humidity conditions
CN109655518A (en) * 2019-02-25 2019-04-19 珠海格力电器股份有限公司 Formaldehyde electrochemical sensing detection device, calibration method and purifier

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111307739A (en) * 2020-03-12 2020-06-19 杭州老爸标准技术集团有限公司 Formaldehyde detection system and method based on dry spectrophotometry
CN111323539A (en) * 2020-03-12 2020-06-23 杭州老爸标准技术集团有限公司 Formaldehyde detection system with prediction function and method thereof

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Application publication date: 20190628