Method and system for detecting performance of wool dry cleaning and bleaching equipment

By collecting and analyzing the electrical and water energy consumption parameters of the wool dry cleaning and bleaching device, and combining this with a data processor for comprehensive evaluation, the problem of insufficient accuracy in energy consumption testing in existing technologies has been solved, achieving multi-dimensional and accurate evaluation of energy consumption testing and improving energy utilization.

CN120820352AActive Publication Date: 2025-10-21NANTONG JIASHISHI TEXTILE CO LTD
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Patent Information

Application Number
CN202511325963.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-10-21
Estimated Expiration
2045-09-17

AI Technical Summary

Technical Problem

In the existing technology, the energy consumption performance testing methods for automated wool dry cleaning and bleaching equipment are not accurate enough, making it difficult to conduct a comprehensive energy consumption assessment of wool dry cleaning and bleaching equipment at different testing points.

Method used

By collecting no-load and operating parameters of electrical and hydropower energy consumption, and using sensors and measuring instruments to obtain evaluation parameters such as temperature, rotation speed, solute, and water quantity, and combining this with a data processor for comprehensive analysis, the total energy consumption evaluation coefficient is calculated, thereby improving the accuracy of energy consumption testing.

Benefits of technology

This technology enables multi-dimensional and accurate evaluation of energy consumption testing for wool dry cleaning and bleaching equipment, improves the accuracy of energy consumption testing and the multifunctionality of data processing, reduces energy consumption rate, and enhances the accuracy of energy performance testing for the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a wool dry cleaning and bleaching equipment performance detection method and system, and belongs to the technical field of electronic data processing. The method comprises the following steps: obtaining an electric energy consumption evaluation coefficient according to an electric energy consumption no-load state analysis result and an electric energy consumption operation state analysis result in an operation state of the automatic wool dry cleaning and bleaching device, and obtaining a hydraulic energy consumption evaluation coefficient according to a hydraulic energy consumption operation state analysis result in the operation state; and comprehensively analyzing the electric energy consumption evaluation coefficient and the hydraulic energy consumption evaluation coefficient to obtain a total energy consumption evaluation coefficient. By testing the energy consumption performance of the automatic wool dry cleaning and bleaching device, the effect of improving the accuracy of the method for testing the energy consumption performance of the automatic wool dry cleaning and bleaching device is achieved, and the problem that in the prior art, the accuracy of testing the energy consumption performance of the wool dry cleaning and bleaching device is insufficient is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of electronic data processing, and in particular to a performance detection method and system for wool dry cleaning and bleaching equipment. Background Art

[0002] With the pursuit of more efficient and environmentally friendly processing technologies in today's laundry industry, the upgrade of the energy consumption performance accuracy of automated wool dry cleaning and bleaching equipment has an advantage in the development of the entire laundry industry. Therefore, the demand for energy consumption performance test methods of automated wool dry cleaning and bleaching equipment is also increasing. At the same time, the functions of automated wool dry cleaning and bleaching equipment are constantly improving, and the demand for energy consumption performance test methods of automated wool dry cleaning and bleaching equipment will continue to grow.

[0003] The existing performance test system for automated wool dry cleaning and bleaching equipment utilizes an advanced automated control system, which uses computer programming to control the dry cleaning equipment to automatically sort, wash, bleach, dry, and iron clothes. The automated equipment incorporates advanced control technology that precisely controls temperature, pressure, and chemical flow to ensure the safety and effectiveness of the clothes.

[0004] For example, the invention application with publication number: CN116701140A discloses a storage chip performance detection device, method, system and storage medium method, including: a test base for installing the storage chip to be tested; a control unit connected to the test base and with a built-in temperature sensor, for detecting the ambient temperature and performing a performance test on the storage chip according to a preset test procedure to obtain a performance test result, and generating a test log according to the ambient temperature and the performance test result; a storage module connected to the control unit, for storing the test log.

[0005] For example, the invention application with publication number CN112860561A discloses an automated performance testing method and terminal device, including: deploying a recording program on a terminal installed with a test environment, the recording program having a recorder for relaying information transmission between the app and the browser, and copying and passing the information to an intelligent module; the intelligent module contains a txt or database with different ports in the platform, for receiving the information passed by the recorder, and according to the txt or database, converting the control signal information and transmitting it to the setting module; the setting module is used to translate the control signal information into a proxy script of the proxy server that can be recognized by the browser.

[0006] However, in the process of implementing the technical solutions of the invention in the embodiments of the present application, the present application found that the above technology has at least the following technical problems: In the existing technology, the energy consumption performance testing method of the automated wool dry cleaning and bleaching device has the problem of insufficient accuracy in the performance test. It is difficult to conduct accurate and comprehensive energy consumption testing of the automated wool dry cleaning and bleaching device, conduct a comprehensive analysis of the total energy consumption evaluation coefficient of the wool dry cleaning and bleaching device at different detection points, and improve the problem of insufficient accuracy in the energy consumption performance testing method of the automated wool dry cleaning and bleaching device. Summary of the Invention

[0007] The embodiments of the present application provide a method and system for detecting the performance of wool dry cleaning and bleaching equipment, thereby solving the problem in the prior art that the energy consumption performance testing method of the automated wool dry cleaning and bleaching device cannot be improved and the accuracy of the energy consumption test of the wool dry cleaning and bleaching device is improved.

[0008] An embodiment of the present application provides a performance detection method for wool dry cleaning and bleaching equipment, comprising the following steps: collecting and obtaining no-load state analysis results of electric energy consumption; collecting and analyzing electric energy consumption operating performance parameters, analyzing to obtain electric energy consumption characteristic parameters, and comprehensively analyzing the electric energy consumption characteristic parameters to obtain electric energy consumption operating state analysis results; comprehensively analyzing the electric energy consumption no-load state analysis results and the electric energy consumption operating state analysis results to obtain an electric energy consumption evaluation coefficient; collecting and analyzing water energy consumption operating performance parameters to obtain a water energy consumption evaluation coefficient; analyzing the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient to obtain a total energy consumption evaluation coefficient, and obtaining a total energy consumption evaluation result of the automated wool dry cleaning and bleaching device based on the total energy consumption evaluation coefficient.

[0009] Furthermore, the specific process of collecting and obtaining the no-load state analysis results of the electric energy consumption is: analyzing the no-load state of the electric energy consumption of the automatic wool dry cleaning and bleaching device through a voltage sensor, a current sensor and a temperature sensor to obtain the no-load state analysis results of the electric energy consumption.

[0010] Furthermore, the specific process of collecting and analyzing the electric energy consumption operation performance parameters and obtaining the electric energy consumption operation status analysis results is as follows: the electric energy consumption operation performance parameters include temperature evaluation parameters and speed evaluation parameters; deploying temperature sensors and speed measuring instruments in the automated wool dry cleaning and bleaching device; connecting the temperature sensor and speed measuring instrument as front-end data acquisition devices in the automated wool dry cleaning and bleaching device to the back-end data processor, and the back-end data processor will continuously receive the temperature evaluation parameters and speed evaluation parameters collected from the temperature sensor and speed measuring instrument.

[0011] Furthermore, the specific process of collecting and analyzing the electric energy consumption operating performance parameters to obtain the electric energy consumption operating status analysis results is: performing data processing and analysis on the temperature evaluation parameters and the speed evaluation parameters to obtain temperature characteristic parameters and speed characteristic parameters; collecting the generator speed of the device under normal operating conditions at each detection point through a speed measuring instrument to obtain the speed evaluation parameters; performing data processing and analysis on the temperature characteristic parameters and the speed characteristic parameters to obtain the electric energy consumption analysis results.

[0012] Furthermore, the comprehensive analysis of the no-load state analysis results and the running state analysis results of the electric energy consumption to obtain the electric energy consumption evaluation coefficient is as follows: The electric energy consumption evaluation coefficient is obtained by performing a data analysis on the electric energy consumption level under no-load state and the electric energy consumption operation status analysis results to obtain the electric energy consumption evaluation coefficient.

[0013] Furthermore, the specific process of collecting and analyzing the water energy consumption operation performance parameters to obtain the water energy consumption evaluation coefficient is as follows: the water energy consumption operation performance parameters include temperature evaluation parameters and solute evaluation parameters; a conductivity meter is deployed in the device, and the solute evaluation parameters are collected using the conductivity meter; and the solute evaluation parameters and temperature evaluation parameters are processed to obtain the water energy consumption operation performance parameters.

[0014] Furthermore, the specific process of collecting and analyzing the water energy consumption operation performance parameters to obtain the water energy consumption evaluation coefficient is as follows: installing flow meters at the water inlet, water outlet and inside the device, and using the flow meters to collect water volume evaluation parameters; performing data processing on the water volume evaluation parameters of the automated wool dry cleaning and bleaching device through the back-end processor to obtain water volume characteristic parameters, and performing a comprehensive analysis on the water volume characteristic parameters and the water energy consumption operation performance parameters to obtain the water energy consumption evaluation coefficient.

[0015] Furthermore, the specific process of obtaining the total energy consumption evaluation coefficient of the wool dry cleaning and bleaching device is as follows: collecting time data information through a speed measuring instrument, analyzing to obtain the electrical energy consumption operating performance parameters of the automated wool dry cleaning and bleaching device, collecting data information through a flow meter to obtain the water energy consumption operating performance parameters, and comprehensively analyzing to obtain the total energy consumption evaluation coefficient of the automated wool dry cleaning and bleaching device.

[0016] Furthermore, the specific analysis process of the total energy consumption evaluation coefficient is as follows: The back-end processor integrates the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient at different detection points to obtain the total energy consumption evaluation coefficient. The specific formula is: ; Where, is the total energy consumption assessment coefficient of the automated wool dry cleaning and bleaching unit, The energy consumption analysis results of the automatic wool dry cleaning and bleaching device in the no-load state, that is, the energy consumption level in the no-load state is the analysis result of the electric energy consumption operation performance parameter, that is, the electric energy consumption analysis value, for Unit wool weight The maximum water volume evaluation parameter at each detection point is: for Unit wool weight Minimum water volume evaluation parameters at each detection point, is the water energy consumption performance parameter value, T, Indicates the unit wool weight, T is the total wool weight, , This formula comprehensively evaluates the total energy consumption of wool dry cleaning and bleaching equipment, taking into account both electrical and water energy consumption, providing a more robust basis for energy-saving optimization. This formula can then provide targeted treatment solutions for wool of different weights, improving energy utilization and reducing energy losses.

[0017] The embodiment of the present application provides a performance testing system for an automated wool dry cleaning and bleaching device, comprising: an electric energy consumption no-load performance analysis module, an electric energy consumption operation performance analysis module, an electric energy consumption evaluation coefficient module, a water energy consumption evaluation coefficient module and a total energy consumption evaluation coefficient module; wherein, the electric energy consumption no-load performance analysis module is used to analyze the temperature characteristic parameters and the power characteristic parameters of the automated wool dry cleaning and bleaching device in a no-load state to obtain an electric energy consumption no-load state analysis result; the electric energy consumption operation performance analysis module is used to analyze the electric energy consumption characteristic parameters to obtain an electric energy consumption operation state analysis result; the electric energy The energy consumption evaluation coefficient module is used to comprehensively analyze the no-load state analysis results and the operating state analysis results of the electric energy consumption of the automated wool dry cleaning and bleaching device, and comprehensively evaluate and analyze the temperature characteristic parameters and the speed characteristic parameters to obtain the electric energy consumption evaluation coefficient; the water energy consumption evaluation coefficient module is used to comprehensively analyze the water quantity evaluation parameters and the water quality evaluation parameters at each detection point in the wool cleaning and bleaching process to obtain the water energy consumption evaluation coefficient; the total energy consumption evaluation coefficient module is used to comprehensively analyze the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient at each detection point in the wool cleaning and bleaching process to obtain the total energy consumption evaluation coefficient.

[0018] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages: 1. By collecting the no-load state analysis results of the electric energy consumption of the automated wool dry cleaning and bleaching device and the operating state analysis results of the electric energy consumption in the operating state, the electric energy consumption evaluation coefficient of the automated wool dry cleaning and bleaching device is obtained. The operating state analysis results of the water energy consumption in the operating state are collected and analyzed to obtain the water energy consumption evaluation coefficient. The total energy consumption evaluation coefficient is obtained according to the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient. This effectively solves the problem of insufficient accuracy in the energy consumption performance test method of the wool dry cleaning and bleaching device, and improves the accuracy of the energy consumption test method of the wool dry cleaning and bleaching device.

[0019] 2. By comprehensively analyzing the no-load state and operating state of the automated wool dry cleaning and bleaching device, the total energy consumption evaluation coefficient was obtained. Based on the total energy consumption evaluation coefficient, the total energy consumption evaluation results at each detection point in the wool dry cleaning and bleaching process were obtained. The introduction of temperature evaluation parameters, speed evaluation parameters, solute evaluation parameters, and water volume evaluation parameters of the automated wool dry cleaning and bleaching device at each detection point comprehensively and accurately evaluated the energy consumption test method of the wool dry cleaning device from multiple dimensions, thereby improving the accuracy of the energy consumption test method of the wool dry cleaning and bleaching device.

[0020] 3. Through the total energy consumption evaluation results at each detection point in the wool dry cleaning and bleaching process, the influence of the stability of the temperature evaluation parameters at each detection point on the energy consumption performance of the automated wool dry cleaning and bleaching device was clarified, which improved the data integration and analysis capabilities, enhanced the multi-dimensional precision description of the data, clarified the data processing priority and reduced the energy consumption rate, thereby improving the versatility of the data processing of the automated wool dry cleaning and bleaching device, and thus achieving the accuracy of the energy consumption performance test of the automated wool dry cleaning and bleaching device. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 A flow chart of a wool dry cleaning and bleaching equipment performance testing method provided in an embodiment of the present application; Figure 2 A schematic diagram of an electric energy consumption analysis value function of an automated wool dry cleaning and bleaching device provided in an embodiment of the present application; Figure 3 A flow chart of a performance testing system for an automated wool dry cleaning and bleaching device provided in an embodiment of the present application. DETAILED DESCRIPTION

[0022] The embodiments of the present application solve the problem of insufficient accuracy of energy consumption testing of automated wool dry cleaning and bleaching devices in the prior art by providing a method and system for detecting the performance of wool dry cleaning and bleaching equipment. By testing the energy consumption performance of automated wool dry cleaning and bleaching devices, the accuracy of the energy consumption testing method of wool dry cleaning and bleaching devices is improved.

[0023] The technical solution in the embodiment of the present application is to solve the problem that the accuracy of the energy consumption test method of the wool dry cleaning and bleaching device cannot be improved. The overall idea is as follows: By collecting the no-load state analysis results of the electric energy consumption of the automated wool dry cleaning and bleaching device, the electric energy consumption operation state analysis results are obtained, the electric energy consumption operation performance parameters are collected and analyzed, the electric energy consumption operation state analysis results are obtained, and the electric energy consumption operation state analysis results and the electric energy consumption operation performance parameters are comprehensively analyzed to obtain the electric energy consumption evaluation coefficient of the automated wool dry cleaning and bleaching device; the temperature evaluation parameters and the solute evaluation parameters are collected to obtain the water energy consumption operation performance parameters, and the water energy consumption operation performance parameters and the water volume evaluation parameters are comprehensively analyzed to obtain the water energy consumption evaluation coefficient; the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient are comprehensively analyzed to obtain the total energy consumption evaluation coefficient, and thus the total energy consumption evaluation result is obtained according to the total energy consumption evaluation coefficient, thereby improving the accuracy of the energy consumption test of the automated wool dry cleaning and bleaching device.

[0024] In order to better understand the above-mentioned testing method, the above-mentioned technical testing method will be described in detail below in conjunction with the drawings and specific implementation methods of the specification.

[0025] like Figure 1 As shown, it is a flow chart of a performance detection method for wool dry cleaning and bleaching equipment provided in an embodiment of the present application. The method is applied to a performance testing device of an automated wool dry cleaning and bleaching device, and the method includes the following steps: collecting and obtaining no-load state analysis results of electric energy consumption, collecting and analyzing electric energy consumption operation performance parameters, analyzing to obtain electric energy consumption characteristic parameters, and comprehensively analyzing the electric energy consumption characteristic parameters to obtain electric energy consumption operation state analysis results; comprehensively analyzing the electric energy consumption no-load state analysis results and the electric energy consumption operation state analysis results to obtain an electric energy consumption evaluation coefficient; collecting and analyzing the water energy consumption operation performance parameters to obtain a water energy consumption evaluation coefficient; analyzing the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient to obtain a total energy consumption evaluation coefficient, and obtaining the total energy consumption evaluation result of the automated wool dry cleaning and bleaching device according to the total energy consumption evaluation coefficient.

[0026] Furthermore, the specific process of collecting and obtaining the no-load state analysis results of electric energy consumption is as follows: the no-load state of electric energy consumption of the automated wool dry cleaning and bleaching device at each detection point is analyzed by means of voltage sensors, current sensors and temperature sensors, and the no-load state analysis results of electric energy consumption are obtained, that is, the electric energy consumption level under the no-load state.

[0027] In this embodiment, the no-load state means that the automated wool dry cleaning and bleaching device is running in a no-load state without clothes or other loads. In the no-load state, relevant parameter information is collected by analyzing the temperature sensor and the power sensor to determine whether the device is in a normal working state in the no-load state. For example, the balance of the rotating drum is affected, the device generates heat, and the temperature rises. At this time, the no-load state of the device is unstable, and the back-end processor is required to analyze the temperature evaluation parameters and the power evaluation parameters to ensure that the dry cleaning device has reached a stable state.

[0028] The back-end data processor, such as a PLC programmable logic controller, is used to process temperature evaluation parameters, power evaluation parameters, and speed evaluation parameters. Data exchange between the sensor and the PLC is usually achieved through a serial communication port, such as RS-232 or RS-485, or some advanced temperature sensors with network functions are deployed in the device to communicate with the PLC through an Ethernet interface.

[0029] The back-end processor obtains the analysis results of the no-load performance parameters of electric energy consumption after processing, evaluates the analysis results, compares the energy efficiency levels of wool bleaching devices on the market, and sets the electric energy consumption level of the automatic wool dry cleaning and bleaching device in the no-load state between 1-4.

[0030] Furthermore, the electric energy consumption operation performance parameters are collected and analyzed to obtain the electric energy consumption operation status analysis results. The specific process is: the electric energy consumption operation performance parameters include temperature evaluation parameters and speed evaluation parameters; temperature sensors and speed measuring instruments are deployed in the automated wool dry cleaning and bleaching device; the temperature sensors and speed measuring instruments are used as front-end data acquisition devices in the automated wool dry cleaning and bleaching device and are connected to the back-end data processor, and the back-end data processor will continuously receive the temperature evaluation parameters and speed evaluation parameters collected from the temperature sensor and the speed measuring instrument.

[0031] In this embodiment, the operating state, that is, the automatic wool dry cleaning and bleaching device is in a working state when there are clothes or other loads. The device works stably in the loaded operating state. At this time, the temperature evaluation parameters and speed evaluation parameters of the automatic wool dry cleaning and bleaching device in the operating state are collected through the temperature sensor and the speed measuring meter, and are transmitted to the back-end processor for analysis and integration of the collected information.

[0032] Furthermore, the electric energy consumption operating performance parameters are collected and analyzed to obtain the electric energy consumption operating status analysis results. The specific process is: data processing and analysis are performed on the temperature evaluation parameters and the speed evaluation parameters to obtain temperature characteristic parameters and speed characteristic parameters; the speed measuring instrument is used to collect the generator speed of the device under normal operating conditions at each detection point to obtain the speed evaluation parameters; data processing and analysis are performed on the temperature characteristic parameters and the speed characteristic parameters to obtain the electric energy consumption analysis results.

[0033] In this embodiment, the stability analysis of the temperature evaluation coefficient in the wool dry cleaning and bleaching process at each detection point is performed to obtain a temperature characteristic parameter. The temperature characteristic parameter is a standard value for evaluating the stability of the temperature evaluation coefficient, and whether the temperature evaluation coefficient in the wool dry cleaning and bleaching process is stable is judged. The larger the temperature characteristic parameter, the more unstable the temperature evaluation coefficient, and thus the influence of the temperature characteristic parameter on the electric energy consumption analysis result is analyzed according to its size. The speed characteristic parameter is the average speed difference of the wool dry cleaning and bleaching device at each detection point per unit wool weight. The larger the speed characteristic parameter, the greater the energy consumption of the equipment per unit wool weight at this speed, that is, the poor cleaning effect of the equipment and the worse the performance of the device.

[0034] The temperature characteristic parameters are obtained by analyzing the temperature evaluation parameters through formulas, and the speed characteristic parameters are obtained by analyzing the speed evaluation parameters through formulas. The specific formulas are as follows: ; ; is the temperature characteristic parameter under different wool weights at all test points, indicating the stable level of the temperature level difference between the device operating temperature under different wool weights and the device temperature under rated power, that is, the stable level of the temperature evaluation parameter. The smaller the value, the more stable the temperature evaluation parameters are.

[0035] T, It represents the unit weight of wool, and T is the total weight of wool.

[0036] , represents the detection point number, and t is the total number of detection points.

[0037] for Unit wool weight parts The temperature evaluation parameter for each test point represents the temperature difference between the device's operating temperature at each test point and the device's temperature at rated power when the device is using different wool weight ratios. The more stable the temperature difference, the higher the device efficiency and the more stable the power consumption.

[0038] for The speed evaluation parameter under unit wool weight is expressed as The absolute level of the speed difference between the rotational speed per unit wool weight and the rotational speed when the device is in an unloaded state.

[0039] For the device The speed characteristic parameter per unit wool weight is the average absolute speed difference per unit wool weight. A larger average absolute speed difference indicates greater energy consumption. A larger variance in absolute speed difference indicates a possible slowdown due to overload or increased energy consumption due to excessive speed. Because different devices have different speed levels per unit wool weight, set the speed level to a level between 1 and 5.

[0040] By comprehensively analyzing the influence of the temperature characteristic parameters and speed characteristic parameters of the detection points under different wool weights on the electric energy consumption operating performance parameters of the automatic wool dry cleaning and bleaching device, the analysis of the electric energy consumption operating performance parameters is more accurate and complete.

[0041] The temperature characteristic parameters and speed characteristic parameters are processed and analyzed to obtain the specific formula for the electric energy consumption analysis result: ; is the result of electric energy consumption analysis, that is, the electric energy consumption analysis value.

[0042] The smaller the electric energy consumption analysis value is, the smaller the impact of the electric energy consumption analysis value on the total energy consumption evaluation coefficient is.

[0043] It is the weight factor of the comprehensive evaluation of the electric energy consumption analysis results by the preset temperature characteristic parameters obtained from the database, and its value range is (0, 1). When the system is established, a mapping table of temperature characteristic parameters and electric energy consumption analysis values ​​is established, and the real-time temperature characteristic parameters are input into the pre-set mapping set. The temperature characteristic parameters have a weight factor for the comprehensive evaluation of the electric energy consumption analysis results.

[0044] It is the weight factor of the comprehensive evaluation of the electric energy consumption analysis results by the preset speed characteristic parameters obtained from the database, and its value range is (0, 1). When the system is established, a mapping table of the speed characteristic parameters and the electric energy consumption analysis values ​​is established, and the real-time temperature characteristic parameters are input into the pre-set mapping set. The speed characteristic parameters have a weight factor on the comprehensive evaluation of the electric energy consumption analysis results.

[0045] Weighting Factor + =1.

[0046] According to the analysis, the more stable the temperature of the wool dry cleaning and bleaching process is and the smaller the average absolute level of the speed difference per unit wool weight is, that is, the equipment is in normal working condition and the less electrical energy is consumed per unit wool weight, the smaller the electrical energy consumption analysis result is, indicating that the electrical energy consumption of the wool dry cleaning and bleaching device is more stable and the performance of the automated wool dry cleaning and bleaching device is better.

[0047] like Figure 2 As shown, it is a schematic diagram of the electric energy consumption analysis value function of an automated wool dry cleaning and bleaching device provided in an embodiment of the present application. It shows the changing trend of the temperature characteristic parameter and the speed characteristic parameter with the electric energy consumption analysis value. When the temperature characteristic parameter is smaller, the electric energy consumption analysis value tends to the minimum value, which means that the electric energy consumption analysis value has a smaller impact on the electric energy consumption evaluation coefficient, and the performance of the automated wool dry cleaning and bleaching device is better. When the average value of the absolute level of the speed difference under the unit wool weight of the device is smaller, the electric energy consumption analysis value tends to the minimum value, the lower the electric energy consumption of the device, and the better the performance. When the average value of the absolute level of the speed difference under the wool weight is larger, the electric energy consumption analysis value is larger. According to the actual wool dry cleaning and bleaching process, at each detection point under a certain wool weight, the electric energy consumption analysis value changes according to the trend shown in the figure.

[0048] The curve shows the effect when only the temperature characteristic parameter is used as the independent variable. When the speed characteristic parameter is constant, the speed characteristic parameter in the figure is at level 1. When the temperature characteristic parameter changes, the electric energy consumption analysis value changes with the temperature characteristic parameter. The more stable the temperature evaluation parameter is, the smaller the temperature characteristic parameter is. At this time, the electric energy consumption analysis value is smaller. The more stable the temperature evaluation parameter is, the more normal the device is in operation. At this time, the electric energy consumption analysis value is more affected by the average value of the absolute level of the speed difference under the unit wool weight. The greater the weight factor of the comprehensive evaluation of the corresponding speed characteristic parameter on the electric energy consumption analysis result, the smaller the electric energy consumption analysis value.

[0049] Under the combined influence of temperature characteristic parameters and speed characteristic parameters, the smaller the power consumption analysis value is, the better the performance of the device is.

[0050] Furthermore, the electric energy consumption level in the no-load state and the electric energy consumption operating status analysis results are comprehensively analyzed to obtain the electric energy consumption evaluation coefficient. The specific process is: the electric energy consumption evaluation coefficient is jointly affected by the electric energy consumption level in the no-load state and the electric energy consumption operating status analysis results, and the electric energy consumption level in the no-load state and the electric energy consumption operating status analysis results are analyzed to obtain the electric energy consumption evaluation coefficient.

[0051] In this embodiment, the electric energy consumption evaluation coefficient can be obtained by a calculation formula. The specific calculation formula of the electric energy consumption evaluation coefficient is: ; It represents the no-load state analysis result of the electric energy consumption of the automatic wool dry cleaning and bleaching device, that is, the electric energy consumption level in the no-load state. Indicates the results of the power consumption operation status analysis. Different automatic wool dry cleaning and bleaching devices may have different power consumption no-load state analysis results, that is, the power consumption level in the no-load state is different. The higher the power consumption level in the no-load state, the better the performance of the device in the no-load state. The smaller the coefficient, the more stable the electric energy consumption analysis value of the device at the detection point. Comprehensive analysis shows that the smaller the electric energy consumption evaluation coefficient, the better the performance of the automated wool dry cleaning and bleaching device.

[0052] Furthermore, the water energy consumption operation performance parameters are collected and analyzed to obtain the water energy consumption evaluation coefficient. The specific process is as follows: the water energy consumption operation performance parameters include temperature evaluation parameters and solute evaluation parameters; a conductivity meter is deployed in the device, and the solute evaluation parameters are collected using the conductivity meter; the temperature evaluation parameters and solute evaluation parameters are processed to obtain the water energy consumption operation performance parameters.

[0053] In this embodiment, the conductivity analyzer is an instrument used to analyze and detect the solute evaluation parameters of the automated wool dry cleaning and bleaching device, and is used to collect and analyze the concentration of the wool detergent at various detection points in the wool dry cleaning and bleaching device.

[0054] The water energy consumption operating performance parameters can be obtained through the calculation formula. The specific calculation formula for the water energy consumption operating performance parameters is: ; in, is the water energy consumption performance parameter value, for Unit wool weight The solute evaluation parameter at each test point represents the impurity content of dry-cleaning agents at each test point in the actual wool dry-cleaning and bleaching process. Because different wool weights have different effects on dry-cleaning agents, the impurity content at each test point varies with different wool weights. The impurity content of dry-cleaning agents at any wool weight is set to be above 1. The unit is mg / kg, indicating the number of milligrams of dry-cleaning agents per kilogram of wool. For example, when the solute evaluation parameter is e, it means there are e milligrams of dry-cleaning agents per kilogram of wool.

[0055] The larger the solute evaluation parameter, the more impurities the wool dry cleaning agent contains, and the smaller the water energy consumption performance parameter. When the temperature evaluation parameter is constant, the solute evaluation parameter is negatively correlated with the water energy consumption performance parameter. When the solute evaluation parameter under different wool weights is constant, according to the formula, the size of the temperature characteristic parameter is positively correlated with the water energy consumption performance parameter, that is, a relatively stable temperature evaluation parameter, i.e. It has a positive impact on the water energy consumption performance parameters. The more stable the temperature evaluation parameters are, the smaller the water energy consumption performance parameters are. According to the formula analysis, when the temperature evaluation parameters are unstable, the larger the water energy consumption performance parameters are. At this time, the smaller the water energy consumption performance parameters are under stable temperature evaluation parameters, the better the performance of the automated wool dry cleaning and bleaching device.

[0056] If the solute evaluation parameter is taken as a fixed value e and the temperature characteristic parameter is used as the independent variable, the actual value of the water energy consumption performance parameter is ,Table 1 is an example table of water energy consumption operating performance parameter values,Table 1 is as follows: Table 1 Example of water energy consumption operating performance parameter values

[0057] Table 1 shows that the water energy consumption performance parameter increases with the increase of the temperature characteristic parameter. The more unstable the temperature evaluation parameter is, the larger the water energy consumption performance parameter is. The more stable the temperature evaluation parameter is, the smaller the water energy consumption performance parameter is, and the better the device performance is. This is helpful for further evaluating the impact of changes in the temperature characteristic parameter on the water energy consumption evaluation coefficient.

[0058] Furthermore, the specific process of collecting and analyzing the water energy consumption operation performance parameters to obtain the water energy consumption evaluation coefficient is as follows: installing flow meters at the water inlet, water outlet and inside the device, and using the flow meters to collect water volume evaluation parameters; performing data processing on the water volume evaluation parameters of the automated wool dry cleaning and bleaching device through the back-end processor to obtain water volume characteristic parameters, and performing a comprehensive analysis on the water volume characteristic parameters and the water energy consumption operation performance parameters to obtain the water energy consumption evaluation coefficient.

[0059] In this embodiment, the water energy consumption operating performance parameters are collected and analyzed to obtain the water energy consumption evaluation coefficient. The specific calculation formula is: WEC= ; for Unit wool weight The maximum water volume evaluation parameter at each detection point is: for Unit wool weight Minimum water volume evaluation parameters at each detection point is the water energy consumption performance parameter value, T, It represents the weight of wool per unit, T is the total weight of wool, and e is a natural constant. The water quantity evaluation parameters at each test point are analyzed to obtain the water quantity characteristic parameters. The water quantity characteristic parameters represent the water quantity characteristic parameters at each test point. The energy consumption level of the water volume evaluation parameter at each detection point is set between 1 and 4. The larger the level, the better the performance parameter, and it is negatively correlated with the water energy consumption evaluation coefficient. The smaller it is, the smaller the water energy consumption assessment coefficient is, and the better the device performance is.

[0060] Furthermore, the specific process of obtaining the total energy consumption evaluation coefficient of the wool dry cleaning and bleaching device is as follows: collecting time data information through a speed measuring instrument, analyzing to obtain the electrical energy consumption operating performance parameters of the automated wool dry cleaning and bleaching device, collecting data information through a flow meter to obtain the water energy consumption operating performance parameters, and comprehensively analyzing to obtain the total energy consumption evaluation coefficient of the automated wool dry cleaning and bleaching device.

[0061] In this embodiment, the rotation speed measuring instrument collects data parameter information including the automatic wool dry cleaning and bleaching device in operation and no-load state, and the flow meter collects data parameter information including the automatic wool dry cleaning and bleaching device in operation.

[0062] Furthermore, a wool dry cleaning and bleaching equipment performance detection method is characterized in that the specific analysis process of the total energy consumption evaluation coefficient is: The back-end processor integrates the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient at different detection points to obtain the total energy consumption evaluation coefficient. The specific formula is: ; Where, is the total energy consumption assessment coefficient of the automated wool dry cleaning and bleaching unit, The energy consumption analysis results of the automatic wool dry cleaning and bleaching device in the no-load state, that is, the energy consumption level in the no-load state is the analysis result of the electric energy consumption operation performance parameter, that is, the electric energy consumption analysis value, for Unit wool weight The maximum water volume evaluation parameter at each detection point is: for Unit wool weight Minimum water volume evaluation parameters at each detection point, is the water energy consumption performance parameter value, T, Indicates the unit wool weight, T is the total wool weight, , This formula comprehensively evaluates the total energy consumption of wool dry cleaning and bleaching equipment, taking into account both electrical and water energy consumption, providing a more robust basis for energy-saving optimization. This formula can then provide targeted treatment solutions for wool of different weights, improving energy utilization and reducing energy losses.

[0063] The embodiment of the present application provides a performance testing system for an automated wool dry cleaning and bleaching device, characterized in that the performance testing system for the automated wool dry cleaning and bleaching device comprises: an electric energy consumption no-load performance analysis module, an electric energy consumption operation performance analysis module, an electric energy consumption evaluation coefficient module, a water energy consumption evaluation coefficient module and a total energy consumption evaluation coefficient module; wherein the electric energy consumption no-load performance analysis module is used to analyze the temperature characteristic parameters and the power characteristic parameters of the automated wool dry cleaning and bleaching device in a no-load state to obtain the electric energy consumption level in the no-load state; the electric energy consumption operation performance analysis module is used to analyze the electric energy consumption characteristic parameters to obtain the electric energy Energy consumption operation status analysis results; the electric energy consumption evaluation coefficient module is used to comprehensively analyze the electric energy consumption level and electric energy consumption operation status analysis results of the automated wool dry cleaning and bleaching device in the no-load state, and conduct a comprehensive evaluation and analysis of the temperature characteristic parameters and the speed characteristic parameters to obtain the electric energy consumption evaluation coefficient; the water energy consumption evaluation coefficient module is used to comprehensively analyze the water quantity evaluation parameters and water quality evaluation parameters at each detection point in the wool cleaning and bleaching process to obtain the water energy consumption evaluation coefficient; the total energy consumption evaluation coefficient module is used to comprehensively analyze the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient at each detection point in the wool cleaning and bleaching process to obtain the total energy consumption evaluation coefficient. According to the total energy consumption evaluation coefficient, the smaller the total energy consumption evaluation coefficient, the better the total energy consumption evaluation result.

[0064] In summary, the embodiment of the present application monitors the energy consumption performance of the automated dry cleaning and bleaching device, collects the influencing parameters of electricity and water energy, and analyzes them to obtain the electricity consumption evaluation coefficient and the water energy consumption evaluation coefficient respectively. The method for energy consumption performance testing of the automated dry cleaning and bleaching device is more complete, thereby improving the accuracy of the energy consumption performance of the automated wool dry cleaning and bleaching device.

[0065] Those skilled in the art will appreciate that embodiments of the present invention may be provided as methods, systems, or computer program products. Thus, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present invention may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0066] The present invention is described with reference to flowcharts and / or block diagrams of methods, devices (systems), and computer program products according to embodiments of the present invention. It should be understood that each process and / or block in the flowcharts and / or block diagrams, as well as combinations of processes and / or blocks in the flowcharts and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowcharts and / or block diagrams. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0067] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0068] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.

[0069] Although the preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention.

[0070] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to include such changes and modifications.

Claims

1. A wool dry cleaning and bleaching equipment performance testing method, characterized in that: The specific steps include: Collect and obtain the no-load state analysis results of electric energy consumption; Collect and analyze the power consumption operation performance parameters, analyze to obtain the power consumption characteristic parameters, and comprehensively analyze the power consumption characteristic parameters to obtain the power consumption operation status analysis results; Comprehensively analyze the no-load state analysis results and the operating state analysis results of electric energy consumption to obtain the electric energy consumption assessment coefficient; Collect and analyze water energy consumption operation performance parameters to obtain water energy consumption evaluation coefficients; The electric energy consumption assessment coefficient and the water energy consumption assessment coefficient are analyzed to obtain the total energy consumption assessment coefficient, and the total energy consumption assessment result of the automated wool dry cleaning and bleaching device is obtained based on the total energy consumption assessment coefficient.

2. A wool dry cleaning and bleaching equipment performance testing method according to claim 1, characterized in that: The specific process of collecting and obtaining the no-load state analysis results of electric energy consumption is as follows: The no-load state of the electric energy consumption of the automatic wool dry cleaning and bleaching device at each detection point is analyzed by using voltage sensors, current sensors and temperature sensors to obtain the no-load state analysis results, that is, the electric energy consumption level in the no-load state.

3. A wool dry cleaning and bleaching equipment performance testing method according to claim 1, characterized in that: The specific process of collecting and analyzing the power consumption operation performance parameters to obtain the power consumption operation status analysis results is as follows: The electric energy consumption operating performance parameters include temperature evaluation parameters and speed evaluation parameters; Deploy temperature sensors and speed measuring instruments in automated wool dry cleaning and bleaching equipment; The temperature sensor and the speed measuring instrument are used as the front-end data acquisition equipment in the wool dry cleaning and bleaching device and are connected to the back-end data processor. The back-end data processor will continuously receive the temperature evaluation parameters and the speed evaluation parameters at each detection point collected from the temperature sensor and the speed measuring instrument.

4. A wool dry cleaning and bleaching equipment performance testing method as claimed in claim 3, characterized in that: The specific process of collecting and analyzing the power consumption operation performance parameters and obtaining the power consumption operation status analysis results is as follows: Performing data processing and analysis on the temperature evaluation parameters and the speed evaluation parameters to obtain temperature characteristic parameters and speed characteristic parameters; The speed measuring instrument is used to collect the speed of the generator of the device under normal operating conditions at each detection point to obtain the speed evaluation parameters; The temperature characteristic parameters and the speed characteristic parameters are processed and analyzed to obtain the electric energy consumption analysis results.

5. A wool dry cleaning and bleaching equipment performance testing method according to claim 1, characterized in that: The specific process of comprehensively analyzing the no-load state analysis results and the running state analysis results of the electric energy consumption to obtain the electric energy consumption evaluation coefficient is as follows: The electric energy consumption evaluation coefficient is obtained by performing a data analysis on the electric energy consumption level under no-load state and the electric energy consumption operation status analysis results to obtain the electric energy consumption evaluation coefficient.

6. A wool dry cleaning and bleaching equipment performance testing method according to claim 1, characterized in that: The specific process of collecting and analyzing the water energy consumption operation performance parameters to obtain the water energy consumption evaluation coefficient is as follows: The water energy consumption operation performance parameters include temperature assessment parameters and solute assessment parameters; A conductivity meter is deployed in the device to collect solute evaluation parameters at each detection point; The solute evaluation parameters and temperature evaluation parameters are processed to obtain the water energy consumption operation performance parameters.

7. A wool dry cleaning and bleaching equipment performance testing method as claimed in claim 6, characterized in that The specific process of collecting and analyzing the water energy consumption operation performance parameters and obtaining the water energy consumption evaluation coefficient is as follows: Install flow meters at the water inlet, outlet, and inside the equipment, and use the flow meters to collect water flow assessment parameters at each testing point; The water volume assessment parameters of the automated wool dry cleaning and bleaching device at each detection point are processed by the back-end processor to obtain water volume characteristic parameters. The water volume characteristic parameters and water energy consumption operation performance parameters are comprehensively analyzed to obtain the water energy consumption assessment coefficient.

8. A wool dry cleaning and bleaching equipment performance testing method according to claim 1, characterized in that: The specific process of analyzing the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient to obtain the total energy consumption evaluation coefficient is as follows: The temperature evaluation parameters are obtained by collecting data information through the flow meter, and the time data information is collected through the speed measuring instrument. The total energy consumption evaluation coefficient of the automated wool dry cleaning and bleaching device is obtained through comprehensive analysis.

9. A wool dry cleaning and bleaching equipment performance testing method according to claim 1, characterized in that: The specific analysis process of the total energy consumption evaluation coefficient is as follows: The back-end processor integrates the electric energy consumption evaluation coefficient and the water energy consumption evaluation coefficient at different detection points to obtain the total energy consumption evaluation coefficient. The specific formula is: ; Where, is the total energy consumption assessment coefficient of the automated wool dry cleaning and bleaching unit, The energy consumption analysis results of the automatic wool dry cleaning and bleaching device in the no-load state, that is, the energy consumption level in the no-load state is the analysis result of the electric energy consumption operation performance parameter, that is, the electric energy consumption analysis value, for Unit wool weight The maximum water volume evaluation parameter at each detection point is: for Unit wool weight Minimum water volume evaluation parameters at each detection point, is the water energy consumption performance parameter value, T, Indicates the unit wool weight, T is the total wool weight, , Represents the inspection point number, t is the total number of inspection point numbers, and e is a natural constant. This formula comprehensively evaluates the total energy consumption of the wool dry cleaning and bleaching device. Taking into account the electrical energy consumption and water energy consumption provides a more powerful basis for energy-saving optimization, thereby providing corresponding treatment solutions for wool of different weights, improving energy utilization and reducing energy consumption losses.

10. A performance testing system for an automated wool dry cleaning and bleaching device comprising: Electric energy consumption no-load performance analysis module, electric energy consumption operation performance analysis module, electric energy consumption evaluation coefficient module, water energy consumption evaluation coefficient module and total energy consumption evaluation coefficient module; The electric energy consumption no-load performance analysis module is used to analyze the temperature characteristic parameters and power characteristic parameters of the automatic wool dry cleaning and bleaching device in the no-load state to obtain the electric energy consumption level in the no-load state; The electric energy consumption operation performance analysis module is used to analyze the electric energy consumption characteristic parameters to obtain the electric energy consumption operation status analysis results; The electric energy consumption evaluation coefficient module is used to comprehensively analyze the electric energy consumption level and electric energy consumption operation status analysis results of the automatic wool dry cleaning and bleaching device in the no-load state, and comprehensively evaluate and analyze the temperature characteristic parameters and the speed characteristic parameters to obtain the electric energy consumption evaluation coefficient; The water energy consumption evaluation coefficient module is used to comprehensively analyze the water quantity evaluation parameters and water quality evaluation parameters at each detection point in the wool washing and bleaching process to obtain the water energy consumption evaluation coefficient; The total energy consumption evaluation coefficient module is used to comprehensively analyze the electrical energy consumption evaluation coefficient and the water energy consumption evaluation coefficient at each detection point in the wool washing and bleaching process to obtain the total energy consumption evaluation coefficient.

Citation Information

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