摘要
In the applications of primary spectrum pyrometry,based on the dynamic range and the minimum sensibility of the sensor,the application issues,such as the measurement range and the measurement partition,were investigated through theoretical analyses. For a developed primary spectrum pyrometer,the theoretical predictions of measurement range and the distributions of measurement partition were presented through numerical simulations. And the measurement experiments of high-temperature blackbody and standard temperature lamp were processed to further verify the above theoretical analyses and numerical results. Therefore the research in the paper provides the helpful supports for the applications of primary spectrum pyrometer and other radiation pyrometers.
In the applications of primary spectrum pyrometry,based on the dynamic range and the minimum sensibility of the sensor,the application issues,such as the measurement range and the measurement partition,were investigated through theoretical analyses. For a developed primary spectrum pyrometer,the theoretical predictions of measurement range and the distributions of measurement partition were presented through numerical simulations. And the measurement experiments of high-temperature blackbody and standard temperature lamp were processed to further verify the above theoretical analyses and numerical results. Therefore the research in the paper provides the helpful supports for the applications of primary spectrum pyrometer and other radiation pyrometers.
基金
Supported by the National Natural Science Foundation of China (Grant Nos. 50606033 and 50674079)
关键词
primary
spectrum
pyrometry
radiation
temperature
measurement
temperature
EMISSIVITY
measurement
range
measurement
partition
primary
spectrum
pyrometry,
radiation
temperature
measurement,
temperature,
emissivity,
measurement
range,
measurement
partition
In
the
applications
of
primary
spectrum
pyrometry,
based
on
the
dynamic
range
and
the
minimum
sensibility
of
the
sensor,
the
application
issues,
such
as
the
measurement
range
and
the
measurement
partition,
were
investigated
through
theoretical
analyses.
For
a
developed
primary
spectrum
pyrometer,
the
theoretical
predictions
of
measurement
range
and
the
distributions
of
measurement
partition
were
presented
through
numerical
simulations.
And
the
measurement
experiments
of
high-temperature
blackbody
and
standard
temperature
lamp
were
processed
to
further
verify
the
above
theoretical
analyses
and
numerical
results.
Therefore
the
research
in
the
paper
provides
the
helpful
supports
for
the
applications
of
primary
spectrum
pyrometer
and
other
radiation
pyrometers.……