CN208297144U - Thermal Test Dummy - Google Patents

Thermal Test Dummy Download PDF

Info

Publication number
CN208297144U
CN208297144U CN201821020172.5U CN201821020172U CN208297144U CN 208297144 U CN208297144 U CN 208297144U CN 201821020172 U CN201821020172 U CN 201821020172U CN 208297144 U CN208297144 U CN 208297144U
Authority
CN
China
Prior art keywords
sensor
dummy
warm body
warm
temperature
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201821020172.5U
Other languages
Chinese (zh)
Inventor
崔燚
刘鑫鑫
戴铮
居世超
李德庆
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Comac Shanghai Aircraft Design & Research Institute
Commercial Aircraft Corp of China Ltd
Original Assignee
Comac Shanghai Aircraft Design & Research Institute
Commercial Aircraft Corp of China Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Comac Shanghai Aircraft Design & Research Institute, Commercial Aircraft Corp of China Ltd filed Critical Comac Shanghai Aircraft Design & Research Institute
Priority to CN201821020172.5U priority Critical patent/CN208297144U/en
Application granted granted Critical
Publication of CN208297144U publication Critical patent/CN208297144U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Investigating Or Analyzing Materials Using Thermal Means (AREA)

Abstract

A warm body test dummy does not consider dominant sweating of a human body, is more suitable for researching and analyzing the hot neutral environment of an aircraft cabin, is more targeted, reduces the complexity of a system, and improves the maintainability of the system. The artificial body surface of warm body test contains a plurality of independent heat accuse regions, be provided with heating element in a plurality of independent heat accuse regions to through constant power controller independent control, the heating volume of output invariant for simulate human metabolism calorific capacity warm body test artificial body in a plurality of independent heat accuse regions, set up a plurality of sensor test bases with the mode that human center is axial symmetry among a plurality of sensor test bases, dispose the sensor cluster that is used for going on determining microenvironment wind speed, microenvironment temperature, skin surface temperature, microenvironment humidity and radiant heat with the mode that human center is axial symmetry.

Description

Warm body tests dummy
Technical field
The utility model relates to a kind of warm bodies to test dummy, and it is easypro to relate more specifically to a kind of heat for civil aircraft cabin The warm body of adaptive evaluation tests dummy.
Background technique
With the progress of science and technology, improvement of living standard, civil aircraft is used as high speed, efficiently common carriage, by Gradually become popular trip mode, consequent is being continuously increased for passenger number, and passenger is for compartment environment comfort It is more and more with the concern of health.
Civil aircraft compartment environment is different from common buildings, in view of the working principle of aircraft air-conditioning system, adjustable model It encloses smaller, belongs to neutral environment, have the characteristics that low wind speed, heterogeneous radiation, and office of the passenger as aircraft cabin environment The obstruction of portion's heat source and air flow field, it is more obvious with the interaction of environment.
Therefore, in the research of compartment environment, empty cabin data is only used only and do not have convincingness, and live test then has There are a series of disadvantages such as subjectivity is strong, individual difference is big, experimental enviroment is limited, the time is not flexible, at high cost, poor repeatability, also Need to face leads to test because experimental design is not thorough the risk that fetched data can not be used.It is carried out using dummy instead of true man Test is a kind of practical ways.
Cadaver test is as the novel biophysical tests method having gradually developed the 1940s, in the whole world In range, the dummy researched and developed has more than 100 kinds, is mainly used for clothes, traffic safety, fire-fighting, building, environment, aerospace etc. Field.Additionally, there are the different types such as thermal manikin, sweating manikin, breathing dummy, combustion dummy man.By dummy, can simulate Hot, wet between human body and environment exchanges out, its stature size is similar to normal adult human, can keep away in thermal environment research Exempting from individual difference bring in live test influences, and precision is high, favorable repeatability.
But there are the following problems by dummy at present on the market:
(1) starting point that thermal manikin designs on the market at present is chiefly used in the test of the thermal resistance and dampness of apparel industry, makes It is functionally mismatched with civil aircraft cabin thermal comfort objective examination and evaluation at these dummies.Deficient function, as human body dissipates Heat, which will cause, has " hot plumage " phenomenon in human peripheral's microenvironment, influence the flowing of human peripheral's air, the evaluation of cabin thermal comfort Need to obtain human body surface wind speed;
(2) the different posture bring heterogeneous radiations of aircraft, so that the radiant heat of passenger near the window accounts for human body and environment The large percentage of heat exchange, therefore, influencing brought by radiant heat at this time cannot be ignored;
(3) current thermal manikin can only simulate human skin surface's steady temperature by electric heating wire, by heating amount Variation estimates the heat dissipation capacity of human body to carry out thermal comfort assessment, can not obtain temperature, wind speed, humidity and radiation individual event parameter Value, and then can not also analyze correlation between different parameters;
(4) functional redundancy.For example, perspiration function, in the corresponding neutral environment in cabin, people is in rest or slight fortune Emotionally condition, skin surface are that not aobvious sweating is existing, and people is within the scope of non-evaporative heat loss, and the perspiration function of dummy is not suitable for Aircraft cabin Environmental Studies.
Therefore, the unique environments such as neutral, low wind speed, the non-uniform irradiation in civil aircraft cabin, knot how to be directed to Studies of Human Body Heat physiological reaction is closed, a set of warm body test dummy for being suitable for civil aircraft cabin is built and becomes as technology urgently to be resolved Problem.
Utility model content
The utility model is made to solve above-mentioned technical problem, and its purpose is to provide one kind to be suitable for civil aircraft cabin Thermal comfort evaluation warm body test dummy.
To achieve the goals above, the first aspect of the utility model provides a kind of warm body test dummy, is used for thermal comfort Property evaluation, characterized in that warm body test dummy's body surface includes multiple independent thermal control regions, the multiple independent thermal control It is provided with heating element in region, and by constant power controller independent control, constant heating amount is exported, for simulating human body Metabolism calorific value, in the multiple independent thermal control region of the warm body test dummy, axisymmetricly with human body center Mode multiple sensor Test benchs are set, in the multiple sensor Test bench, axisymmetricly with human body center Mode is configured with for surveying to microenvironment wind speed, microenvironment temperature, skin surface temperature, microenvironment humidity and radiations heat energy Fixed clusters of sensors.
It is constituted according to as described above, in the warm body test dummy of the utility model, according to the activity condition of human body, in conjunction with The data of activity condition and metabolism heat control warm body test dummy by constant power controller and generate heat, it is false to warm up body test People will receive the influence from civil aircraft cabin indoor air velocity, temperature, humidity and heat radiation etc., cause to warm up on the basis of spontaneous heating The Surface skin temperature that body tests dummy reduces, the human body obtained by the body surface skin temperature and sensor measurement measured Surrounding wind speed, temperature, humidity, radiations heat energy etc. are analyzed and are calculated to sensible heat gain from human bodies amount and latent heat heat dissipation capacity, in turn Whether analysis human body is in thermal comfort state.
Therefore, the warm body test dummy of the utility model can not consider the dominant perspiration of human body, be more suitable for aircraft cabin heat The research and analysis of neutral environment more targetedly reduce the complexity of system, improve the maintainability of system.
The warm body test dummy of the second aspect of the utility model is the warm body test in the first aspect of the utility model On the basis of dummy, characterized in that the clusters of sensors includes: the air velocity transducer being measured to microenvironment wind speed;It is right The first temperature sensor that microenvironment temperature is measured;The second temperature sensor that skin surface temperature is measured;It is right The humidity sensor that microenvironment humidity is measured;And to the sensible heat portion that radiations heat energy is measured.
The warm body test dummy of the third aspect of the utility model is the warm body test in the second aspect of the utility model On the basis of dummy, characterized in that the air velocity transducer is hot-wire omnidirectional anemobiagraph, and first temperature sensor is to visit Exposed temperature sensor, the second temperature sensor is patch type temperature sensor, and the sensible heat portion is radiant heat flux Meter.
The warm body test dummy of the fourth aspect of the utility model is the warm body test in the third aspect of the utility model On the basis of dummy, characterized in that the multiple sensor Test bench includes the circular sensor Test bench of multiple indents With the circular sensor Test bench of multiple dimples, hot-wire omnidirectional anemobiagraph and the exposed temperature sensor of probe It is installed on the circular sensor Test bench of the multiple indent, and is arranged to only sensor probe and is exposed to skin surface, The patch type temperature sensor is pasted onto the center position in the multiple thermal control region of the warm body test dummy, described Radiation heatflowmeter is installed on the circular sensor Test bench of the multiple dimple, and is arranged to flush with skin.
It is constituted according to as described above, since hot-wire omnidirectional anemobiagraph and the exposed temperature sensor of probe are set It is set to only sensor probe to be exposed to skin surface (exposed mode of popping one's head in), the patch type temperature sensor is pasted onto described The center position in the multiple thermal control region of warm body test dummy, the radiation heatflowmeter are arranged to (use with flushing Diaphragm type), therefore, it can be reduced the interference to flow field around.
The warm body test dummy of 5th aspect of the utility model is the warm body test in the second aspect of the utility model On the basis of dummy, characterized in that the humidity sensor respectively installs one in the upper trunk of warm body test dummy and head.
It is constituted according to as described above, can ensure that the accuracy of humidity sensor measurement.
The warm body test dummy of 6th aspect of the utility model is the warm body test in the second aspect of the utility model On the basis of dummy, characterized in that the resolution ratio of first temperature sensor and the second temperature sensor is less than or equal to 0.1 DEG C, measurement accuracy is more than or equal to ± 0.5 DEG C.
It is constituted according to as described above, neutral environment can be belonged to for aircraft cabin environment, accurately measure skin table Face temperature and microenvironment temperature.
The warm body test dummy of 7th aspect of the utility model is the warm body test in the second aspect of the utility model On the basis of dummy, characterized in that the measurement range of the air velocity transducer is 0~5m/s, model of the measurement accuracy in 0-1m/s It is more than or equal to ± 0.05m/s in enclosing, ± 0.1m/s is more than or equal in the range of 1-5m/s.
The characteristics of being constituted according to as described above, the low wind speed of aircraft cabin, high turbulence can be directed to, it is ensured that air velocity transducer Measurement accuracy in measurement range.
The eighth aspect of the utility model warm body test dummy be the utility model first aspect to the 7th aspect In either on the basis of the warm body test dummy in face, characterized in that dummy's shell of the warm body test dummy is using leading The small carbon fibre composite of good in thermal property, high temperature resistant, thermal capacity is made.
It is constituted according to as described above, due to using the carbon fibre composite of good heat conductivity, can be effectively ensured The temperature consistency of isolated area.
The warm body test dummy of 9th aspect of the utility model is the warm body test in the eighth aspect of the utility model On the basis of dummy, characterized in that the heating element is electric heating film, and is arranged to get around the multiple sensor of body surface Test bench.
It is constituted according to as described above, can be avoided heating element and the measuring accuracy of body surface sensor is impacted.
Detailed description of the invention
Fig. 1 (a) and Fig. 1 (b) is the schematic diagram for indicating the warm body test dummy of the utility model, wherein Fig. 1 (a) is shown Be warm body test dummy under the sitting posture state thermal control region overall schematic, Fig. 1 (b) shows Fig. 1's (a) The partial schematic diagram in the thermal control region of (head and neck) near the head zone of warm body test dummy.
Fig. 2 is that the wiring of the sensor and miniature several acquisition systems in the warm body test dummy for indicate the utility model is illustrated Figure.
(symbol description)
1 warm body tests dummy
2 hot-wire omnidirectional anemobiagraphs
The 3 exposed temperature sensors of probe
4 radiation heatflowmeters
5 patch type temperature sensors
6 humidity sensors
7 miniature data acquisition equipments
8 constant power controllers
9 electric heating films
Specific embodiment
Hereinafter, being carried out with reference first to Fig. 1 (a) and Fig. 1 (b) to the overall structure of the warm body test dummy 1 of the utility model It is described in detail.Wherein, Fig. 1 (a) is the overall schematic in the thermal control region of the warm body test dummy 1 under sitting posture state, Fig. 1 It (b) is that the warm body of Fig. 1 (a) tests the partial schematic diagram in the thermal control region of (head and neck) near the head zone of dummy 1.
In Fig. 1 (a), warming up body test dummy 1 includes multiple independent thermal control regions, in the present embodiment, such as comprising 16 independent thermal control regions are head thermal control region, neck thermal control region, upper body trunk thermal control region, left upper arm thermal control respectively Region, right upper arm thermal control region, left forearm thermal control region, right forearm thermal control region, left hand thermal control region, right hand thermal control region, Buttocks thermal control region, left thigh thermal control region, right thigh thermal control region, left leg thermal control region, right leg thermal control region, left foot Thermal control region and right crus of diaphragm thermal control region.Wherein: upper arm, forearm and the hand of warm body test dummy can by shoulder joint, elbow joint and Wrist joints moving;Buttocks, (left and right) thigh, (left and right) shank and (left and right) foot keep standard sitting posture, both can be movable, It can be inactive;Buttocks, (left and right) thigh and the shape-designing of upper trunk back are at the form squeezed by seat.Body is warmed up as a result, to survey Examination dummy 1 is designed to be similar to true man's geometric shape as far as possible.
Dummy's shell of warm body test dummy 1 is made of the small material of good heat conductivity, high temperature resistant, thermal capacity, such as It is made of carbon fibre composite.
Multiple (16) independent thermal control regions (in the present embodiment, are e.g. covered in interior table by heating element The sectional electric heating film 9 in face or other heating methods with equivalent efficacy), realize that simulation human body is in neutral environment Eubolism calorific value under non-perspiration state.
In addition, in order to which drawing is clear, illustrating only the heating unit of the trunk front on human body in Fig. 1 (a) and Fig. 1 (b) Part (electric heating film 9), thermal control is using invariable power opened loop control heating method, the heating unit in independent each thermal control region Part (electric heating film 9) exports constant heating amount, by 8 independent control of constant power controller to simulate each region of human body surface Eubolism heat dissipation capacity.
In addition, it may be desirable to, the setting (pasting for electric heating film 9) of heating element will get around the test of body surface sensor Pedestal (B1, B2) avoids the measuring accuracy to body surface sensor from impacting.
Multiple (16) thermal control regions of warm body test dummy 1 by human body center axisymmetricly in a manner of be arranged in several The sensor Test bench B1 of recessed circle, for installing air velocity transducer (for example, hot-wire omnidirectional anemobiagraph 2) and the first temperature Sensor (for example, exposed temperature sensor 3 of popping one's head in), to measure the wind speed and temperature in human peripheral's microenvironment.In addition, compared with Ideally, above-mentioned air velocity transducer (hot-wire omnidirectional anemobiagraph 2) and above-mentioned first temperature sensor (exposed temperature of popping one's head in Degree sensor 3) ensure that only sensor probe is exposed to skin surface during installation.
In addition, the center in multiple (16) thermal control regions of warm body test dummy 1 is pasted with second temperature sensor (for example, patch type temperature sensor 5), for measuring human skin temperature.Here, due to the material for using good heat conductivity Therefore the temperature consistency of isolated area can be effectively ensured in (carbon fibre composite).
In addition, at the region (sunny regions) that can be by sunlight of warm body test dummy 1, for example, head, At neck, shoulder, upper arm, shirtfront and thigh, in being arranged symmetrically the sensible heat portion being measured to radiations heat energy (for example, radiation Heat-flow meter 4).Using the circular sensor Test bench B2 of dimple, flush the surface in sensible heat portion with skin.
Furthermore, it is contemplated that the indoor moisture distribution of humidity sensor measurement error and cabin, it may be desirable to, it is surveyed in warm body The upper trunk and head for trying dummy 1 respectively install a humidity sensor 6, for the measurement of humidity data and the confirmation of consistency.
Above-mentioned each sensor (air velocity transducer, the first temperature sensor, second temperature sensor, sensible heat portion, humidity sensor Device) quantity can test dummy 1 in warm body and make preceding determination, and be adjusted according to test demand.
In addition, shell temperature can change in smaller range since aircraft cabin environment belongs to neutral environment, therefore, It is required that the resolution ratio of the first temperature sensor and second temperature sensor is less than or equal to 0.1 DEG C, measurement accuracy is more than or equal to ± 0.5 ℃。
In addition, the characteristics of being directed to the low wind speed of aircraft cabin, high turbulence, in order to guarantee survey of the sensor in measurement range Accuracy of measurement, it is desirable that the most suitable 0~5m/s of the measurement range of air velocity transducer selects measurement range when air velocity transducer that cannot deviate Too much, it also requires measurement accuracy to be more than or equal to ± 0.05m/s in the range of 0-1m/s, is more than or equal in the range of 1-5m/s ±0.1m/s。
In addition, air velocity transducer, the first temperature sensor and humidity sensor 7 are using exposed mode of popping one's head in, second temperature Sensor uses patch type, and radiation heatflowmeter 4 with skin by the way of flushing, to reduce the interference to flow field around.
Fig. 2 is that the wiring of the sensor and miniature several acquisition systems in the warm body test dummy for indicate the utility model is illustrated Figure.
As shown in Fig. 2, being set to the air velocity transducer of the circular sensor Test bench B1 of indent (for example, hot-wire is complete Aerovane 2) and the first temperature sensor (for example, exposed temperature sensor 3 of popping one's head in), it is pasted onto the of dummy's skin surface Two temperature sensors (for example, patch type temperature sensor 5) and be set to dimple circular sensor Test bench B2 sense Hot portion's (for example, radiation heatflowmeter 4) acquires with the miniature data being arranged at the housing hollow center for warming up body test dummy 1 respectively Equipment 7 connects, and the signal of each sensor is whole to outer computer by network cable transmission after being modulated by miniature data acquisition equipment 7 End.
Since human thermal comfort is influenced by the various aspects of many factors, it is studied as the utility model multiple The comprehensive function of factor just has real meaning.The factor for the influence thermal comfort approved in the world at present mainly has: human body Activity condition, clothing situation, air themperature, humidity, wind speed and heat radiation six factors, the activity condition of human body is mainly and human body Metabolism heat it is closely bound up, wear clothes situation major embodiment thermal resistance on.
In the test of warm body test dummy 1, firstly, according to the activity condition of human body, combining movement situation and metabolic heat The data of amount control warm body test dummy 1 by constant power controller 8 and generate heat, warm up body test dummy 1 in the base of spontaneous heating It on plinth, will receive from civil aircraft cabin indoor air velocity, temperature, humidity and the influence of heat radiation, lead to warm body test 1 surface of dummy Skin temperature reduces, human peripheral's wind speed for being obtained by the body surface skin temperature and sensor measurement measured, temperature, wet Degree, radiations heat energy etc. are analyzed and are calculated to sensible heat gain from human bodies amount and latent heat heat dissipation capacity, and then analyze whether human body is in Thermal comfort state.
Therefore, the warm body test dummy 1 of the utility model does not consider the dominant perspiration of human body, is more suitable for aircraft cabin and hankers The research and analysis of property environment more targetedly reduce the complexity of system, improve the maintainability of system.
In addition, the warm body test dummy 1 of the utility model controls human skin temperature compared with traditional warm body tests dummy Degree is that steady state value is different, and the warm body test dummy 1 of the utility model uses each region heat production of invariable power opened loop control human body, i.e. generation It thanks to heat, human body comfort is reflected from one aspect by the variation of human skin temperature.Since the warm body of the utility model is surveyed Not only obtain heating amount from human body heat balance point judges human body comfort to examination dummy 1, but leads on the basis of spontaneous heating It crosses and test microenvironment wind speed, microenvironment temperature, skin surface temperature, microenvironment humidity and radiations heat energy is installed in skin surface Clusters of sensors therefore can obtain the objective measurement for influencing each factor of thermal comfort, and these factors are not single Solely exist in the environment, the comprehensive function that be the factor acted on by other factors of measured value reflection as a result, passing through parameter Change and measurement in a closed series, using big data analysis can complete multifactor impact factor of thermal comfort analysis and synthesis heat Comfort Evaluation.
Those skilled in the art will be readily apparent other advantage and modification.Therefore, on its is wider range of, The utility model is not limited to detail and representative embodiment shown and described herein.Therefore, it can not take off Modification is made under the premise of spirit or scope from the general inventive concept as defined by the appended claims and its equivalent.
For example, in the present embodiment, testing dummy to be suitable for the warm body that the thermal comfort in civil aircraft cabin is evaluated For be illustrated, but the utility model is not limited to this, and the warm body test dummy of the utility model is readily applicable to pair Thermal comfort evaluation is carried out in other spaces.
For example, in the present embodiment, to air velocity transducer, the first temperature sensor and humidity sensor 7 using probe Exposed mode, second temperature sensor use patch type, and radiation heatflowmeter 4 has carried out illustrating by the way of flushing with skin It is bright, but the utility model is not limited to this, brings interference to flow field around as long as can be reduced, and can use other any appropriate Mode.

Claims (9)

1. a kind of warm body test dummy (1), evaluates for thermal comfort, which is characterized in that
Warm body test dummy's (1) body surface includes multiple independent thermal control regions,
It is provided with heating element in the multiple independent thermal control region, and passes through constant power controller (8) independent control, output Constant heating amount, for simulating the metabolism calorific value of human body,
In the multiple independent thermal control region of warm body test dummy (1), by human body center axisymmetricly in a manner of Multiple sensor Test benchs are set,
In the multiple sensor Test bench, by human body center axisymmetricly in a manner of configured with for microenvironment wind The clusters of sensors that speed, microenvironment temperature, skin surface temperature, microenvironment humidity and radiations heat energy are measured.
2. warm body test dummy (1) as described in claim 1, which is characterized in that
The clusters of sensors includes: the air velocity transducer being measured to microenvironment wind speed;Microenvironment temperature is measured The first temperature sensor;The second temperature sensor that skin surface temperature is measured;Microenvironment humidity is measured Humidity sensor (6);And to the sensible heat portion that radiations heat energy is measured.
3. warm body test dummy (1) as claimed in claim 2, which is characterized in that
The air velocity transducer is hot-wire omnidirectional anemobiagraph (2),
First temperature sensor is the exposed temperature sensor (3) of probe,
The second temperature sensor is patch type temperature sensor (5),
The sensible heat portion is radiation heatflowmeter (4).
4. warm body test dummy (1) as claimed in claim 3, which is characterized in that
The multiple sensor Test bench includes that the circular sensor Test bench (B1) of multiple indents and multiple dimples are round Sensor Test bench (B2),
Hot-wire omnidirectional anemobiagraph (2) and the exposed temperature sensor (3) of probe are installed on the multiple indent circle The sensor Test bench (B1) of shape, and be arranged to only sensor probe and be exposed to skin surface,
The patch type temperature sensor (5) is pasted onto the multiple independent thermal control region of the warm body test dummy At heart position,
The radiation heatflowmeter (4) is installed on the circular sensor Test bench (B2) of the multiple dimple, and be arranged to Skin flushes.
5. warm body test dummy (1) as claimed in claim 2, which is characterized in that
The humidity sensor (6) respectively installs one in the upper trunk of warm body test dummy (1) and head.
6. warm body test dummy (1) as claimed in claim 2, which is characterized in that
The resolution ratio of first temperature sensor and the second temperature sensor is less than or equal to 0.1 DEG C, and measurement accuracy is greater than Equal to ± 0.5 DEG C.
7. warm body test dummy (1) as claimed in claim 2, which is characterized in that
The measurement range of the air velocity transducer is 0~5m/s,
Measurement accuracy is more than or equal to ± 0.05m/s in the range of 0-1m/s, and ± 0.1m/ is more than or equal in the range of 1-5m/s s。
8. the warm body as described in any one of claims 1 to 7 tests dummy (1), which is characterized in that
Dummy's shell of warm body test dummy (1) carbon fiber composite small using good heat conductivity, high temperature resistant, thermal capacity Material is made.
9. warm body test dummy (1) as claimed in claim 8, which is characterized in that
The heating element is electric heating film (9), and is arranged to get around the multiple sensor Test bench of body surface.
CN201821020172.5U 2018-06-29 2018-06-29 Thermal Test Dummy Active CN208297144U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821020172.5U CN208297144U (en) 2018-06-29 2018-06-29 Thermal Test Dummy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821020172.5U CN208297144U (en) 2018-06-29 2018-06-29 Thermal Test Dummy

Publications (1)

Publication Number Publication Date
CN208297144U true CN208297144U (en) 2018-12-28

Family

ID=64702262

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821020172.5U Active CN208297144U (en) 2018-06-29 2018-06-29 Thermal Test Dummy

Country Status (1)

Country Link
CN (1) CN208297144U (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109935155A (en) * 2019-04-17 2019-06-25 天津商业大学 A kind of experimental provision that can simulate human body heat condition
CN111402665A (en) * 2020-05-07 2020-07-10 湖南科技大学 System for simulating human body sweating based on fire scene condition and working method
CN113267528A (en) * 2021-05-19 2021-08-17 东华大学 Device and method for evaluating dynamic heat and moisture transfer performance of clothes
CN114354684A (en) * 2022-01-10 2022-04-15 北京服装学院 Simulation method for latent sweat of warm-up dummy
RU219031U1 (en) * 2023-04-17 2023-06-22 Задорожный Артем Анатольевич THERMAL HUMAN SIMULATOR

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109935155A (en) * 2019-04-17 2019-06-25 天津商业大学 A kind of experimental provision that can simulate human body heat condition
CN111402665A (en) * 2020-05-07 2020-07-10 湖南科技大学 System for simulating human body sweating based on fire scene condition and working method
CN111402665B (en) * 2020-05-07 2021-09-28 湖南科技大学 System for simulating human body sweating based on fire scene condition and working method
CN113267528A (en) * 2021-05-19 2021-08-17 东华大学 Device and method for evaluating dynamic heat and moisture transfer performance of clothes
CN114354684A (en) * 2022-01-10 2022-04-15 北京服装学院 Simulation method for latent sweat of warm-up dummy
CN114354684B (en) * 2022-01-10 2024-01-16 北京服装学院 Method for simulating sweat of warm body dummy
RU219051U1 (en) * 2023-04-11 2023-06-26 Задорожный Артем Анатольевич THERMAL HUMAN HEAD SIMULATOR
RU219031U1 (en) * 2023-04-17 2023-06-22 Задорожный Артем Анатольевич THERMAL HUMAN SIMULATOR
RU219228U1 (en) * 2023-05-22 2023-07-05 Артем Анатольевич Задорожный TARGET

Similar Documents

Publication Publication Date Title
CN208297144U (en) Thermal Test Dummy
De Dear et al. Convective and radiative heat transfer coefficients for individual human body segments
Yu et al. Experimental study on convective heat transfer coefficients for the human body exposed to turbulent wind conditions
Fiala et al. A computer model of human thermoregulation for a wide range of environmental conditions: the passive system
Sakoi et al. Thermal comfort, skin temperature distribution, and sensible heat loss distribution in the sitting posture in various asymmetric radiant fields
CN107024497A (en) Indoor thermal environment Comfort Evaluation thermal manikin system and its evaluation method
Melikov Breathing thermal manikins for indoor environment assessment: important characteristics and requirements
Oliveira et al. Dynamic clothing insulation. Measurements with a thermal manikin operating under the thermal comfort regulation mode
Li et al. Physiological expression of human thermal comfort to indoor operative temperature in the non-HVAC environment
CN206848198U (en) A kind of indoor thermal environment Comfort Evaluation thermal manikin with temperature measuring equipment
CN105203587B (en) The test method and equipment of down coat warmth retention property
CN105371897A (en) Outdoor thermal comfort monitoring system and monitoring method thereof
Takada et al. Fundamental study of ventilation in air layer in clothing considering real shape of the human body based on CFD analysis
Oliveira et al. Convective heat transfer from a nude body under calm conditions: assessment of the effects of walking with a thermal manikin
Wu et al. Evaluation and modification of the weighting formulas for mean skin temperature of human body in winter conditions
CN112255267A (en) Wearable warm dummy and clothing thermal resistance measuring method
Psikuta Development of an ‘artificial human’for clothing research
Tang et al. A database of clothing overall and local insulation and prediction models for estimating ensembles’ insulation
CN107220417A (en) CFD and human thermal response model coupled system and coupling process
Tang et al. Detailed thermal indicators analysis based on outdoor thermal comfort indices in construction sites in South China
Huizenga et al. An improved multinode model of human physiology and thermal comfort
CN113533427A (en) Bra heat preservation tester
CN205580501U (en) Outdoor thermal comfort degree monitoring system
KR101676611B1 (en) Warmth analysis system of clothes
JP2003050541A (en) Perspiration manikin device and measuring method using this device

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant