SlideShare une entreprise Scribd logo
1  sur  17
L.J. Institute of Engg. & Technology

Temperature
measurement

Name: Sandeep
Singh Vasir

En,no:13032011953
9

Division:ME-C2

Subject in charge:

Sir.Mehul V.Kediya
Temperature measurement

The following characteristics can be used to
measure the temperature

A change in dimentions - expansion or
contraction of material w.r.t. Temp change

A change in electrical resistance of metals and
semi-conductors w.r.t. Temp change

A thermo-electric emf produced due to temp
difference at two junctions of two metal alloy
joined together

A change in intensity and colour of radiation
emitted by the hot body w.r.t to change in
temp
 Temperature is a measure of the
thermal energy in the body.
Normally measured in degrees [°]using
one of the following scales.
1. Fahrenheit.[°F]
2. Celsius or centigrade. [°C]
3. Kelvin .[°K]
Scale
Expansion thermometers

(1)Bimetalic thermometer -solid expansion

(2)Liquid in glass thermometers
(1)Bimetallic Thermometer
Two basic principles of operation
is to be followed in the case of
a bimetallic sensor.
1) A metal tends to undergo a
volumetric dimensional
change
(expansion/contraction),
according to the change in
temperature.
2) Different metals have
different co-efficient of
temperatures. The rate of
volumetric change depends
on this co-efficient of
temperature.
Device consists of a bimetallic strip of two different metals .
•
They are bonded together to form a spiral or a twisted helix.
•
Both these metals are joined together at one end by either
welding or riveting.
•
It is bonded so strong that there will not be any relative
motion between the two.
. The image of a bimetallic strip is shown below.
Working
A change in temperature causes the free end of the strip to
expand or contract due to the different coefficients of
expansion of the two metals.
This movement is linear to the change in temperature and
the deflection of the free end can be read out by attaching a
pointer to it.
This reading will indicate the value of temperature.
Bimetallic strips are available in different forms like helix
type, cantilever, spiral, and also flat type.
Advantages
1) Power source not required
2) Robust, easy to use and cheap.
3) Can be used to 500 °C.
Disadvantages
1) Not very accurate.
2) Limited to applications where manual reading is
acceptable.
3) Not suitable for very low temperatures because the
expansion of metals tend to be too similar, so the device
becomes a rather insensitive thermometer
(2)Liquid – in – Glass
Thermometer
Construction
1.Bulb: The reservoir for containing most of the
thermometric liquid (mercury).
2.Stem: The glass tube having a capillary bore
along which the liquid moves with changes
in temperature.
3. Scale: A narrow-temperature-range scale for
reading a reference temperature .
•
The volume of mercury changes slightly with temperature; the small change
in volume drives the narrow mercury column a relatively long way up the
tube.
•
The space above the mercury may be filled with nitrogen or it may be at
less than atmospheric pressure, a partial vacuum.
Advantages
1) Simplicity in use & low cost.
2) Portable device.
3) Checking physical damage is easy.
4) Power source not require
Disadvantages
1) Can not used for automatic recording.
2) Time lag in measurement.
3) Range is limited to about 300 °C .
Pressure spring thermometers

Liquid filled thermometers 
Vapour pressure
thermometers
Resistance Temperature Detector (RTD)

the resistance of RTD
changes proportionally
When the temp of an
object changes

Platinum, nickel and
copper are the commonly
used sensing elements

Advantages

Very high accuracy, excellent stability and interchangeability

Ability to measure narrow spans, suitable for remote measurement

Disadvantages

Susceptibility to
mechanical damage,
self-heating error,
signal noise

Unsuitability for bare
use in electrically
conducting substance

expensive
Pyrometer

It measures the amount of heat that is radiated from an object.

The device compares the brightness produced by the radiation of the object
whose temp is to be measured

An eye piece at the left side and
an optical lens on the right

A reference lamp

A rheostat to change the
current and brightness

An absorption screen is fitted
between the optical lens and
the reference bulb, so as to
increase the temp range
Working
1.The radiation from the source is emitted and the
optical objective lens captures it.
2.The lens helps in focusing the thermal radiation on to the
reference bulb.
3.The observer watches the process through the eye piece
and corrects it in such a manner that the reference lamp
filament has a sharp focus and the filament is super-imposed
on the temperature source image.
4.The observer starts changing the rheostat values and the
current in the reference lamp changes.
5.This in turn, changes its intensity.
This change in current can be observed in three different ways.
The filament is dark. That is, cooler than the
temperature source.
Filament is bright. That is, hotter than the
temperature source.
Filament disappears. Thus, there is equal
brightness between the filament and
temperature source
•
Advantages
1. Provides a very high accuracy with +/-5º Celsius.
2. The biggest advantage of this device is that, there is no direct
contact between the pyrometer and the object whose
temperature is to be found out.
•
Disadvantages
1. As the measurement is based on the light intensity, the device
can be used only in applications with a minimum temperature of
700º Celsius.
2. The device is not useful for obtaining continuous values of
temperatures at small intervals.

Contenu connexe

Tendances

RTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTORRTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTORkaroline Enoch
 
Speed, Acceleration and Vibration Measurement
Speed, Acceleration and Vibration MeasurementSpeed, Acceleration and Vibration Measurement
Speed, Acceleration and Vibration Measurementprashantborakhede1
 
Temperature measurement
Temperature measurementTemperature measurement
Temperature measurementKarnav Rana
 
Ime unit 5 temperature measurement
Ime unit 5 temperature measurementIme unit 5 temperature measurement
Ime unit 5 temperature measurementParneet Chowdhary
 
Ultrasonic flow measurement
Ultrasonic flow measurementUltrasonic flow measurement
Ultrasonic flow measurementPritesh Parikh
 
Temperature measurement ppt
Temperature measurement pptTemperature measurement ppt
Temperature measurement pptAVISHEK KUMAR
 
Measurements lecture 1
Measurements lecture 1Measurements lecture 1
Measurements lecture 1Rosanna Thomas
 
Generalized measurement system
Generalized measurement systemGeneralized measurement system
Generalized measurement systemprashantborakhede1
 
Temperature measurement (THERMOCOUPLE)
Temperature measurement (THERMOCOUPLE)Temperature measurement (THERMOCOUPLE)
Temperature measurement (THERMOCOUPLE)MananGandhi18
 
optical pyrometer working & application
 optical pyrometer  working & application optical pyrometer  working & application
optical pyrometer working & applicationRonak Patel
 
Unit 5 temperature measurement
Unit 5 temperature measurementUnit 5 temperature measurement
Unit 5 temperature measurementParneet Chowdhary
 
Resistance thermometer circuit
Resistance thermometer circuitResistance thermometer circuit
Resistance thermometer circuitsujeethvarada15
 

Tendances (20)

RTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTORRTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTOR
 
Temperature Measurements
Temperature MeasurementsTemperature Measurements
Temperature Measurements
 
Speed, Acceleration and Vibration Measurement
Speed, Acceleration and Vibration MeasurementSpeed, Acceleration and Vibration Measurement
Speed, Acceleration and Vibration Measurement
 
Thermocouples
ThermocouplesThermocouples
Thermocouples
 
Temperature measurement
Temperature measurementTemperature measurement
Temperature measurement
 
Ime unit 5 temperature measurement
Ime unit 5 temperature measurementIme unit 5 temperature measurement
Ime unit 5 temperature measurement
 
Ultrasonic flow measurement
Ultrasonic flow measurementUltrasonic flow measurement
Ultrasonic flow measurement
 
RTD
RTDRTD
RTD
 
Temperature measurement ppt
Temperature measurement pptTemperature measurement ppt
Temperature measurement ppt
 
Measurements lecture 1
Measurements lecture 1Measurements lecture 1
Measurements lecture 1
 
Rtd and thermocouples
Rtd and thermocouplesRtd and thermocouples
Rtd and thermocouples
 
Generalized measurement system
Generalized measurement systemGeneralized measurement system
Generalized measurement system
 
Pressure Measurement Part II
Pressure Measurement   Part IIPressure Measurement   Part II
Pressure Measurement Part II
 
Temperature measurement (THERMOCOUPLE)
Temperature measurement (THERMOCOUPLE)Temperature measurement (THERMOCOUPLE)
Temperature measurement (THERMOCOUPLE)
 
optical pyrometer working & application
 optical pyrometer  working & application optical pyrometer  working & application
optical pyrometer working & application
 
Pressure measurement
Pressure measurement Pressure measurement
Pressure measurement
 
Unit IV
Unit IVUnit IV
Unit IV
 
Speed measurement, tachometer
Speed measurement, tachometerSpeed measurement, tachometer
Speed measurement, tachometer
 
Unit 5 temperature measurement
Unit 5 temperature measurementUnit 5 temperature measurement
Unit 5 temperature measurement
 
Resistance thermometer circuit
Resistance thermometer circuitResistance thermometer circuit
Resistance thermometer circuit
 

Similaire à Temperature measurement

Temperature measurment devices
Temperature measurment devicesTemperature measurment devices
Temperature measurment devicesdarshit34
 
Temperaturemsmt 130906055901-
Temperaturemsmt 130906055901-Temperaturemsmt 130906055901-
Temperaturemsmt 130906055901-darshit34
 
Thermometer calibration
Thermometer calibrationThermometer calibration
Thermometer calibrationNurul Fadhilah
 
Pressure swing thermometer
Pressure swing thermometerPressure swing thermometer
Pressure swing thermometerVivek5103
 
presentation slide
 presentation slide presentation slide
presentation slideSmit Javiya
 
[جهاز قياس الحرار ه.pptx
[جهاز قياس الحرار ه.pptx[جهاز قياس الحرار ه.pptx
[جهاز قياس الحرار ه.pptxssuser868fa0
 
measurement :Temperature
measurement :Temperature measurement :Temperature
measurement :Temperature Ayman Hasprapo
 
TDU -Unit 04 ELECTRIC HEATING AND WELDING
TDU -Unit  04 ELECTRIC HEATING AND WELDINGTDU -Unit  04 ELECTRIC HEATING AND WELDING
TDU -Unit 04 ELECTRIC HEATING AND WELDINGPremanandDesai
 
Temperature basic
Temperature basic Temperature basic
Temperature basic marcoReud
 
Zeroth law of thermodynamics
Zeroth law of thermodynamicsZeroth law of thermodynamics
Zeroth law of thermodynamicsMohdAreebQureshi
 

Similaire à Temperature measurement (20)

Temperature measurment devices
Temperature measurment devicesTemperature measurment devices
Temperature measurment devices
 
Temperaturemsmt 130906055901-
Temperaturemsmt 130906055901-Temperaturemsmt 130906055901-
Temperaturemsmt 130906055901-
 
M.m.m
M.m.mM.m.m
M.m.m
 
Mmm 123 126-139
Mmm 123 126-139Mmm 123 126-139
Mmm 123 126-139
 
thermometry
thermometrythermometry
thermometry
 
Atom i am
Atom i amAtom i am
Atom i am
 
Thermometer calibration
Thermometer calibrationThermometer calibration
Thermometer calibration
 
TEMPRATURE MEASUREMENT INSTRUMENTS
TEMPRATURE MEASUREMENT INSTRUMENTSTEMPRATURE MEASUREMENT INSTRUMENTS
TEMPRATURE MEASUREMENT INSTRUMENTS
 
Pressure swing thermometer
Pressure swing thermometerPressure swing thermometer
Pressure swing thermometer
 
presentation slide
 presentation slide presentation slide
presentation slide
 
[جهاز قياس الحرار ه.pptx
[جهاز قياس الحرار ه.pptx[جهاز قياس الحرار ه.pptx
[جهاز قياس الحرار ه.pptx
 
heat
heat heat
heat
 
Thermomters
ThermomtersThermomters
Thermomters
 
measurement :Temperature
measurement :Temperature measurement :Temperature
measurement :Temperature
 
Thermal physics
Thermal physicsThermal physics
Thermal physics
 
TDU -Unit 04 ELECTRIC HEATING AND WELDING
TDU -Unit  04 ELECTRIC HEATING AND WELDINGTDU -Unit  04 ELECTRIC HEATING AND WELDING
TDU -Unit 04 ELECTRIC HEATING AND WELDING
 
Temperature basic
Temperature basic Temperature basic
Temperature basic
 
Temperature
TemperatureTemperature
Temperature
 
Industrial Temperature Measurement
Industrial Temperature MeasurementIndustrial Temperature Measurement
Industrial Temperature Measurement
 
Zeroth law of thermodynamics
Zeroth law of thermodynamicsZeroth law of thermodynamics
Zeroth law of thermodynamics
 

Dernier

Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substationstephanwindworld
 
complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...asadnawaz62
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - GuideGOPINATHS437943
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxKartikeyaDwivedi3
 
Indian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptIndian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptMadan Karki
 
Industrial Safety Unit-I SAFETY TERMINOLOGIES
Industrial Safety Unit-I SAFETY TERMINOLOGIESIndustrial Safety Unit-I SAFETY TERMINOLOGIES
Industrial Safety Unit-I SAFETY TERMINOLOGIESNarmatha D
 
System Simulation and Modelling with types and Event Scheduling
System Simulation and Modelling with types and Event SchedulingSystem Simulation and Modelling with types and Event Scheduling
System Simulation and Modelling with types and Event SchedulingBootNeck1
 
Input Output Management in Operating System
Input Output Management in Operating SystemInput Output Management in Operating System
Input Output Management in Operating SystemRashmi Bhat
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...121011101441
 
Introduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxIntroduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxk795866
 
National Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdfNational Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdfRajuKanojiya4
 
home automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasadhome automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasadaditya806802
 
THE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTION
THE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTIONTHE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTION
THE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTIONjhunlian
 
Research Methodology for Engineering pdf
Research Methodology for Engineering pdfResearch Methodology for Engineering pdf
Research Methodology for Engineering pdfCaalaaAbdulkerim
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024Mark Billinghurst
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the weldingMuhammadUzairLiaqat
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptSAURABHKUMAR892774
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHC Sai Kiran
 

Dernier (20)

Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substation
 
complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...
 
young call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Serviceyoung call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Service
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - Guide
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptx
 
Indian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptIndian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.ppt
 
Industrial Safety Unit-I SAFETY TERMINOLOGIES
Industrial Safety Unit-I SAFETY TERMINOLOGIESIndustrial Safety Unit-I SAFETY TERMINOLOGIES
Industrial Safety Unit-I SAFETY TERMINOLOGIES
 
System Simulation and Modelling with types and Event Scheduling
System Simulation and Modelling with types and Event SchedulingSystem Simulation and Modelling with types and Event Scheduling
System Simulation and Modelling with types and Event Scheduling
 
Input Output Management in Operating System
Input Output Management in Operating SystemInput Output Management in Operating System
Input Output Management in Operating System
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...
 
Introduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxIntroduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptx
 
National Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdfNational Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdf
 
home automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasadhome automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasad
 
THE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTION
THE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTIONTHE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTION
THE SENDAI FRAMEWORK FOR DISASTER RISK REDUCTION
 
Research Methodology for Engineering pdf
Research Methodology for Engineering pdfResearch Methodology for Engineering pdf
Research Methodology for Engineering pdf
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the welding
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.ppt
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECH
 

Temperature measurement

  • 1. L.J. Institute of Engg. & Technology  Temperature measurement  Name: Sandeep Singh Vasir  En,no:13032011953 9  Division:ME-C2  Subject in charge:  Sir.Mehul V.Kediya
  • 2. Temperature measurement  The following characteristics can be used to measure the temperature  A change in dimentions - expansion or contraction of material w.r.t. Temp change  A change in electrical resistance of metals and semi-conductors w.r.t. Temp change  A thermo-electric emf produced due to temp difference at two junctions of two metal alloy joined together  A change in intensity and colour of radiation emitted by the hot body w.r.t to change in temp
  • 3.  Temperature is a measure of the thermal energy in the body. Normally measured in degrees [°]using one of the following scales. 1. Fahrenheit.[°F] 2. Celsius or centigrade. [°C] 3. Kelvin .[°K] Scale
  • 4. Expansion thermometers  (1)Bimetalic thermometer -solid expansion  (2)Liquid in glass thermometers
  • 5. (1)Bimetallic Thermometer Two basic principles of operation is to be followed in the case of a bimetallic sensor. 1) A metal tends to undergo a volumetric dimensional change (expansion/contraction), according to the change in temperature. 2) Different metals have different co-efficient of temperatures. The rate of volumetric change depends on this co-efficient of temperature.
  • 6. Device consists of a bimetallic strip of two different metals . • They are bonded together to form a spiral or a twisted helix. • Both these metals are joined together at one end by either welding or riveting. • It is bonded so strong that there will not be any relative motion between the two. . The image of a bimetallic strip is shown below.
  • 7. Working A change in temperature causes the free end of the strip to expand or contract due to the different coefficients of expansion of the two metals. This movement is linear to the change in temperature and the deflection of the free end can be read out by attaching a pointer to it. This reading will indicate the value of temperature. Bimetallic strips are available in different forms like helix type, cantilever, spiral, and also flat type.
  • 8. Advantages 1) Power source not required 2) Robust, easy to use and cheap. 3) Can be used to 500 °C. Disadvantages 1) Not very accurate. 2) Limited to applications where manual reading is acceptable. 3) Not suitable for very low temperatures because the expansion of metals tend to be too similar, so the device becomes a rather insensitive thermometer
  • 9. (2)Liquid – in – Glass Thermometer Construction 1.Bulb: The reservoir for containing most of the thermometric liquid (mercury). 2.Stem: The glass tube having a capillary bore along which the liquid moves with changes in temperature. 3. Scale: A narrow-temperature-range scale for reading a reference temperature .
  • 10. • The volume of mercury changes slightly with temperature; the small change in volume drives the narrow mercury column a relatively long way up the tube. • The space above the mercury may be filled with nitrogen or it may be at less than atmospheric pressure, a partial vacuum. Advantages 1) Simplicity in use & low cost. 2) Portable device. 3) Checking physical damage is easy. 4) Power source not require Disadvantages 1) Can not used for automatic recording. 2) Time lag in measurement. 3) Range is limited to about 300 °C .
  • 11. Pressure spring thermometers  Liquid filled thermometers  Vapour pressure thermometers
  • 12. Resistance Temperature Detector (RTD)  the resistance of RTD changes proportionally When the temp of an object changes  Platinum, nickel and copper are the commonly used sensing elements
  • 13.  Advantages  Very high accuracy, excellent stability and interchangeability  Ability to measure narrow spans, suitable for remote measurement  Disadvantages  Susceptibility to mechanical damage, self-heating error, signal noise  Unsuitability for bare use in electrically conducting substance  expensive
  • 14. Pyrometer  It measures the amount of heat that is radiated from an object.  The device compares the brightness produced by the radiation of the object whose temp is to be measured  An eye piece at the left side and an optical lens on the right  A reference lamp  A rheostat to change the current and brightness  An absorption screen is fitted between the optical lens and the reference bulb, so as to increase the temp range
  • 15. Working 1.The radiation from the source is emitted and the optical objective lens captures it. 2.The lens helps in focusing the thermal radiation on to the reference bulb. 3.The observer watches the process through the eye piece and corrects it in such a manner that the reference lamp filament has a sharp focus and the filament is super-imposed on the temperature source image. 4.The observer starts changing the rheostat values and the current in the reference lamp changes. 5.This in turn, changes its intensity. This change in current can be observed in three different ways.
  • 16. The filament is dark. That is, cooler than the temperature source. Filament is bright. That is, hotter than the temperature source. Filament disappears. Thus, there is equal brightness between the filament and temperature source
  • 17. • Advantages 1. Provides a very high accuracy with +/-5º Celsius. 2. The biggest advantage of this device is that, there is no direct contact between the pyrometer and the object whose temperature is to be found out. • Disadvantages 1. As the measurement is based on the light intensity, the device can be used only in applications with a minimum temperature of 700º Celsius. 2. The device is not useful for obtaining continuous values of temperatures at small intervals.