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Featured researches published by Yuto Nakamura.


International Journal of Engine Research | 2018

Three-point MEMS heat flux sensor for turbulent heat transfer measurement in internal combustion engines:

Kazuhito Dejima; Osamu Nakabeppu; Yuto Nakamura; Tomohiro Tsuchiya; Keisuke Nagasaka

A heat flux sensor was developed with micro-electro-mechanical systems (MEMS) technologies for investigating turbulent heat transfer characteristics in engines. The sensor has three thin-film resistance temperature detectors (RTDs) of a square 315 µm on a side on a 900 µm diameter circle in rotational symmetry. The performances of the MEMS systems sensor were tested in an open combustion chamber and a laboratory engine. In the open chamber tests, it was revealed that the MEMS sensor can measure the wall heat fluxes reflecting flow states of gas phase. In addition, the noise was evaluated as 3.8 kW/m2 with the standard deviation against the wall heat flux of a few hundred kW/m2. From these results, it was proved that the MEMS sensor has the potential to observe turbulent heat transfer on the order over 10 kW/m2 in the engine. In the laboratory engine test, the wall heat flux for continuous 200 cycles was measured with a good signal-to-noise ratio. The noise was evaluated as 13.4 kW/m2 with the standard deviation despite the noisy environment. Furthermore, it was proved that the MEMS sensor has the comparable scale with the turbulence in the engine because the three adjacent detectors measured similar but different phase oscillations in the local instantaneous heat fluxes. In addition, a heat flux vector reflecting the state of the local instantaneous heat transfer was visualized by the adjacent three-point measurement. It is expected that the three-point MEMS sensor will be a useful tool for the engine heat transfer research.


Transactions of the JSME (in Japanese) | 2018

Development of metal substrate MEMS sensors for wall heat flux measurement in engines

Kazuhito Dejima; Osamu Nakabeppu; Yuto Nakamura; Tomohiro Tsuchiya; Keisuke Nagasaka


The Proceedings of the International symposium on diagnostics and modeling of combustion in internal combustion engines | 2017

Development of MEMS Heat Flux Vector Sensor for Internal Combustion Engines

Kazuhito Dejima; Osamu Nakabeppu; Keisuke Nagasaka; Yuto Nakamura; Tomohiro Tsuchiya


Transactions of the JSME (in Japanese) | 2016

Thin film resistance sensor for wall heat flux measurement in premixed combustion

Osamu Nakabeppu; Tomohiro Tsuchiya; Yuto Nakamura; Keisuke Nagasaka


The Proceedings of the Thermal Engineering Conference | 2016

Heat Flux Measurement on the wall of a rapid compression and expansion machine using MEMS sensor

Kazuhito Dejima; Osamu Nakabeppu; Keisuke Nagasaka; Yuto Nakamura; Tomohiro Tsuchiya


The Proceedings of the Thermal Engineering Conference | 2016

Development of Heat flux sensor for automobile engine

Tomohiro Tsuchiya; Keisuke Nagasaka; Kazuhito Dejima; Yuto Nakamura; Osamu Nakabeppu


The Proceedings of Mechanical Engineering Congress, Japan | 2016

Heat Flux Sensor on Metal Substrate for Engine

Keisuke Nagasaka; Tomohiro Tsuchiya; Yuto Nakamura; Kazuhito Dejima; Osamu Nakabeppu


The Proceedings of Conference of Kanto Branch | 2016

OS0114 Heat Flux Measurement in Combustion Field by MEMS Sensor on Metal Substrate

Yuto Nakamura; Keisuke Nagasaka; Tomohiro Tuchiya; Osamu Nakabeppu


The Proceedings of Conference of Kanto Branch | 2016

OS0113 Calibration Method of MEMS Sensor for Heat Flux Measurement on Interior Wall of Engine

Tomohiro Tsuchiya; Yuto Nakamura; Keisuke Nagasaka; Osamu Nakabeppu


The Proceedings of the Thermal Engineering Conference | 2015

F212 Wall heat flux measurement in premixed combustion by MEMS sensor

Osamu Nakabeppu; Keisuke Nagasaka; Tomohiro Tsuchiya; Yuto Nakamura

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