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Featured researches published by T. Deuzé.


Metrologia | 2012

Fe?C eutectic fixed-point cells for contact thermometry: an investigation and comparison

C. J. Elliott; J. V. Pearce; G. Failleau; T. Deuzé; S. Briaudeau; M. Sadli; G. Machin

Five iron?carbon (Fe?C) eutectic fixed-point cells have been constructed between NPL and LNE-Cnam to investigate the robustness and to measure the agreement of their melting temperatures. Each cell was constructed with a different selection of materials sourced by NPL and LNE-Cnam. The measured emfs at the Fe?C fixed-point temperature (~1153??C), compared between cells, agree within around 1.98??V (~90?mK), where the most important contribution to the uncertainty of each measurement is the inhomogeneity associated with the measuring Pt/Pd thermocouple. This demonstrates that these cells are suitable for use as secondary fixed-point cells in contact thermometry but the robustness of the presented cells is not found to be sufficient for maintaining their integrity during repeated cycling procedures.


international conference on advancements in nuclear instrumentation measurement methods and their applications | 2013

New temperature references and sensors for the next generation of nuclear power plants

M. Sadli; M. de Podesta; D. del Campo; T. Deuzé; Gordon Edwards; C. J. Elliott; G. Failleau; S. Fourrez; C. García Izquierdo; M. Laurie; S. Mokdad; J. V. Pearce; G. Sutton

In preparation for the new challenges posed by the higher temperature environments which are likely to be encountered in the next generation of nuclear power plants, to maintain the safety and to ensure the long-term reliability of such plants, it is crucial that new temperature sensors and methods for in-situ measurement are investigated and developed. This is the general objective of the first workpackage of the joint research project, ENG08 MetroFission, funded in the framework of the European metrology research program. This paper will review the results obtained in developing and testing new temperature sensors and references during the course of the project. The possible continuation of these activities in the future is discussed.


Measurement Science and Technology | 2015

A pan-European investigation of the Pt-40%Rh/Pt-20%Rh (Land–Jewell) thermocouple reference function

J. V. Pearce; C.J. Elliott; A Greenen; D. del Campo; M. J. Martín; C. García Izquierdo; P. Pavlasek; P Nemecek; G. Failleau; T. Deuzé; M. Sadli; G. Machin

Accurate high temperature measurement has always been problematic for industry. The vast majority of industrial temperature measurements are performed with thermocouples. The development of any new thermocouple types requires the characterization of the relationship between thermocouple output and temperature, i.e. the reference function. An important thermocouple for measuring temperatures above about 1500 °C is the so-called Land–Jewell (Pt-40%Rh/Pt-20%Rh) thermocouple. This was used as a test thermocouple for a new European distributed facility for characterizing thermocouple reference function. The facility is described, and used to generate a demonstrator reference function for the thermocouple. It is found that the demonstrator reference function differs from the de-facto standard reference function of ASTM E1750-09 by several degrees above 1500 °C; a suggested explanation for this is given.


TEMPERATURE: ITS MEASUREMENT AND CONTROL IN SCIENCE AND INDUSTRY, VOLUME 8: Proceedings of the Ninth International Temperature Symposium | 2013

A new technique for direct traceability of contact thermometry Co-C eutectic cells to the ITS-90

G. Failleau; T. Deuzé; F. Bourson; S. Briaudeau; M. Sadli

The eutectic Co-C melting point is a promising system to serve as a thermometric fixed-point in the temperature range above 1084.62 °C (copper freezing point). During the last decade, LNE-Cnam has developed and characterized some fixed-point devices, based on eutectic Co-C alloy, for applications to contact and radiation thermometry. Above 962 °C, the ITS-90 is realized by radiation thermometry by the extrapolation from a Ag, Au or Cu fixed point using the Planck law for radiation. So the only way for assigning a temperature in the scale to a Co-C cell (∼1324 °C) is by radiation thermometry. An indirect method is commonly used to assign a temperature to a high-temperature fixed point (HTFP) cell designed for contact thermometry is to fill a pyrometric cell with the same mixture as the contact thermometry cell. In this case, the temperature assigned to the pyrometric cell is attributed to the contact cell. This paper describes a direct method allowing the determination of the melting temperature realized b...


International Journal of Thermophysics | 2014

Long-Term Monitoring of Thermocouple Stability with Miniature Fixed-Point Cells

C. J. Elliott; G. Failleau; T. Deuzé; M. Sadli; J. V. Pearce; G. Machin


International Journal of Thermophysics | 2015

A Self-Validation Method for High-Temperature Thermocouples Under Oxidizing Atmospheres

S. Mokdad; G. Failleau; T. Deuzé; S. Briaudeau; O. Kozlova; M. Sadli


International Journal of Thermophysics | 2014

Miniature Fixed-Point Cell Approaches for {{\varvec{In\,Situ}}} Monitoring of Thermocouple Stability

G. Failleau; C. J. Elliott; T. Deuzé; J. V. Pearce; G. Machin; M. Sadli


TEMPERATURE: ITS MEASUREMENT AND CONTROL IN SCIENCE AND INDUSTRY, VOLUME 8: Proceedings of the Ninth International Temperature Symposium | 2013

MetroFission: New high-temperature references and sensors for the nuclear industry

M. Sadli; D. del Campo; M. de Podesta; T. Deuzé; G. Failleau; C. J. Elliott; S. Fourrez; C. García; J. V. Pearce


International Journal of Thermophysics | 2011

Comparison of Co–C and Pd–C Eutectic-Point Cells for Thermocouple Calibration Between LNE-Cnam and NMIJ

H. Ogura; J. O. Favreau; T. Deuzé; R Morice


International Journal of Thermophysics | 2014

A New Co–C Eutectic Fixed-Point Cell for Thermocouple Calibration at 1324\,^{\circ }\mathrm{C}

G. Failleau; T. Deuzé; D. Jouin; S. Mokdad; S. Briaudeau; M. Sadli

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G. Failleau

Conservatoire national des arts et métiers

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M. Sadli

Conservatoire national des arts et métiers

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J. V. Pearce

National Physical Laboratory

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C. J. Elliott

National Physical Laboratory

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G. Machin

National Physical Laboratory

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S. Briaudeau

Conservatoire national des arts et métiers

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F. Bourson

Conservatoire national des arts et métiers

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S. Mokdad

Conservatoire national des arts et métiers

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D. Lowe

National Physical Laboratory

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M. de Podesta

National Physical Laboratory

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