Study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor

In order to improve thermal efficiency of automobile engine, it is necessary to reduce the cooling loss. A method for analyzing local cooling loss (heat flux) using coaxial type thin film temperature sensor has been developed. Recently, results of heat flux analysis using the sensor composed of ther...

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Main Authors: Daijiro ISHII, Yuji MIHARA, Takeshi YOKOMORI
Format: Article
Language:Japanese
Published: The Japan Society of Mechanical Engineers 2019-11-01
Series:Nihon Kikai Gakkai ronbunshu
Subjects:
Online Access:https://www.jstage.jst.go.jp/article/transjsme/85/879/85_19-00262/_pdf/-char/en
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author Daijiro ISHII
Yuji MIHARA
Takeshi YOKOMORI
author_facet Daijiro ISHII
Yuji MIHARA
Takeshi YOKOMORI
author_sort Daijiro ISHII
collection DOAJ
description In order to improve thermal efficiency of automobile engine, it is necessary to reduce the cooling loss. A method for analyzing local cooling loss (heat flux) using coaxial type thin film temperature sensor has been developed. Recently, results of heat flux analysis using the sensor composed of thermocouple materials standardized based on ANSI and JIS have been reported, but structure and measurement accuracy of its sensor are not clear enough. In this study, the measurement accuracy of sensor A composed of K type materials and sensor B whose body is combustion chamber material (aluminum alloy) was compared using numerical analysis (two-dimensional coordinate heat conduction equation when the sensor is embedded in combustion chamber). As a result, it was important to use same material as combustion chamber for sensor body to measure wall surface instantaneous temperature with high accuracy. Additionally, results of one-dimensional (axial direction) heat flux analysis when the material of the combustion chamber and the material of the sensor body are different had error, it was considered to effect of heat flow (temperature difference) in radial direction due to different thermal conductivity. Therefore, it was confirmed that newly proposed two-dimensional heat flux analysis method using temperature distribution in axial and radial direction can analyze more accurately than one-dimension. These numerical analysis results showed same tendency as measured verifications results.
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spelling doaj.art-b06da168366a48608fb3dc40789985e52022-12-22T02:52:20ZjpnThe Japan Society of Mechanical EngineersNihon Kikai Gakkai ronbunshu2187-97612019-11-018587919-0026219-0026210.1299/transjsme.19-00262transjsmeStudy on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensorDaijiro ISHII0Yuji MIHARA1Takeshi YOKOMORI2Graduate School of Tokyo City UniversityResearch Center for High Efficiency Hydrogen Engine and Engine Tribology HEET, Engine Research Laboratories, Tokyo City UniversityFaculty of Science and Technology, Keio UniversityIn order to improve thermal efficiency of automobile engine, it is necessary to reduce the cooling loss. A method for analyzing local cooling loss (heat flux) using coaxial type thin film temperature sensor has been developed. Recently, results of heat flux analysis using the sensor composed of thermocouple materials standardized based on ANSI and JIS have been reported, but structure and measurement accuracy of its sensor are not clear enough. In this study, the measurement accuracy of sensor A composed of K type materials and sensor B whose body is combustion chamber material (aluminum alloy) was compared using numerical analysis (two-dimensional coordinate heat conduction equation when the sensor is embedded in combustion chamber). As a result, it was important to use same material as combustion chamber for sensor body to measure wall surface instantaneous temperature with high accuracy. Additionally, results of one-dimensional (axial direction) heat flux analysis when the material of the combustion chamber and the material of the sensor body are different had error, it was considered to effect of heat flow (temperature difference) in radial direction due to different thermal conductivity. Therefore, it was confirmed that newly proposed two-dimensional heat flux analysis method using temperature distribution in axial and radial direction can analyze more accurately than one-dimension. These numerical analysis results showed same tendency as measured verifications results.https://www.jstage.jst.go.jp/article/transjsme/85/879/85_19-00262/_pdf/-char/enintermal combustion enginethin film temperature sensorwall temperatureheat fluxcooling loss
spellingShingle Daijiro ISHII
Yuji MIHARA
Takeshi YOKOMORI
Study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor
Nihon Kikai Gakkai ronbunshu
intermal combustion engine
thin film temperature sensor
wall temperature
heat flux
cooling loss
title Study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor
title_full Study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor
title_fullStr Study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor
title_full_unstemmed Study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor
title_short Study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor
title_sort study on heat flux analysis method and accuracy on combustion chamber wall in internal combustion engine using coaxial type thin film temperature sensor
topic intermal combustion engine
thin film temperature sensor
wall temperature
heat flux
cooling loss
url https://www.jstage.jst.go.jp/article/transjsme/85/879/85_19-00262/_pdf/-char/en
work_keys_str_mv AT daijiroishii studyonheatfluxanalysismethodandaccuracyoncombustionchamberwallininternalcombustionengineusingcoaxialtypethinfilmtemperaturesensor
AT yujimihara studyonheatfluxanalysismethodandaccuracyoncombustionchamberwallininternalcombustionengineusingcoaxialtypethinfilmtemperaturesensor
AT takeshiyokomori studyonheatfluxanalysismethodandaccuracyoncombustionchamberwallininternalcombustionengineusingcoaxialtypethinfilmtemperaturesensor