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classification of orifices and flow through orifice | fluid mechanics| etution
classification of orifices and flow through orifice | fluid mechanics | etution
#orifice
#classificationoforifice
#fluidmechanics
published: 08 Jun 2018
-
ORIFICE EXPLAIN IN HINDI
Hello friends
Welcome to my YouTube channel 😊
Friends aaj ka topic hai ORIFICE ...
iss video mai apko ORIFICE KI DEFINITION WITH EXAMPLES EXPLAIN KI GYI HAI SAATH HI CLASSIFICATION OF ORIFICE ( ACCORDING TO SHAPE,SIZE,SHAPE OF EDGE ,NATURE OF DISCHARGE ) EXPLAIN KI GYI HAI...
AND VENA CONTRACTA WITH EXAMPLES ...
SO I Hope apko aaj ka video bhut pasand aayega ...
Agar apko video acha lage to LIKE SHARE AND COMMENTS KRE AND DON'T FORGET TO SUBSCRIBE ☺️
THANKS FOR WATCHING ☺️
published: 18 May 2019
-
The Differential Pressure Flow Measuring Principle (Orifice-Nozzle-Venturi)
http://bit.ly/2uipbBd - Illustration of the differential pressure flow measuring principle.
published: 26 Nov 2009
-
Orifice Plate Meter || Orifice meter in hindi || Orifice meter kya hai || orifice meter derivation
#GearInstitute
#OrificePlate
#FluidMechanics
An orifice plate is a device used for measuring flow rate, for reducing pressure or for restricting flow (in the latter two cases it is often called a restriction plate ).
An orifice plate is a thin plate with a hole in it, which is usually placed in a pipe. When a fluid (whether liquid or gaseous) passes through the orifice, its pressure builds up slightly upstream of the orifice[1]:85–86 but as the fluid is forced to converge to pass through the hole, the velocity increases and the fluid pressure decreases. A little downstream of the orifice the flow reaches its point of maximum convergence, the vena contracta (see drawing to the right) where the velocity reaches its maximum and the pressure reaches its minimum. Beyond that, the flow expan...
published: 14 Apr 2020
-
Orifice and its classification
A textbook of fluid mechanics by Dr RK bansal is available at https://amzn.to/2NsC2vR
published: 30 Apr 2019
-
Complete Otoscope Orifice Exam ASMR
Doctor Andrew Michaels gives you a complete medical exam for all your Orifices and facial holes. An orifice is any opening, mouth, hole or vent, as in a pipe, a plate, or a body. Body orifice, any opening in the body of a human or animal.
My Otoscope Exam is a tribute to Jellybean Green ASMR, and you might notice my JBG Pin that I am wearing as a tie tack. Check her out at: https://www.youtube.com/watch?v=a-k_hs8J-SQ
If you'd like to donate to help the channel grow we do accept paypal at: https://www.paypal.com/donate/?token=B_iPGhoRIv-HJf4HWJ8HzxNh4DucJ4PrXFL8xIBQ4UTtAZSsM5DrbLTKWV9PM8OoKPTIG0&country.x;=US&locale.x;=US
All donations will be used to buy props and equipment for the channel.
Autonomous sensory meridian response (ASMR) is a term used for an experience characterized by a...
published: 21 May 2019
-
Basics of Differential Flow Devices - Venturi Tubes, Orifice Plates, and Flow Nozzles
This video explains how Venturi tubes, orifice plates, and flow nozzles work as flow meters.
The differential flow meter is the most common device for measuring fluid flow through pipes. Flow rates and pressure differential of fluids, such as gases vapors and liquids, are explored using the orifice plate flow meter.
The differential flow meter, whether Venturi tube, flow nozzle, or orifice plate style, is an in line instrument that is installed between two pipe flanges.
The orifice plate flow meter is comprised the circular metal disc with a specific hole diameter that reduces the fluid flow in the pipe. Pressure taps are added on each side at the orifice plate to measure the pressure differential.
According to the Laws of Conservation of Energy, the fluid entering the pipe must equa...
published: 01 Dec 2015
-
Fluid Mechanics | Module 4 | Orifice Meter (Lecture 29)
Subject --- Fluid Mechanics
Topic --- Module 4 | Orifice Meter (Lecture 29)
Faculty --- Venugopal Sharma
GATE Academy Plus is an effort to initiate free online digital resources for the first time in India and particularly Mr. Umesh Dhande, Founder and Director of GATE ACADEMY creative in order to shape the best career of Engineering student approaching to B.Tech/B.E. courses.
Check out our facebook page for more details. https://www.facebook.com/GATE.ACADEMY.PLUS
Watch out the below mentioned playlists for other videos on these subjects :
1. Analog Electronics --- https://bit.ly/2IEFMq5
2. Basic Electrical Engineering --- https://bit.ly/2MuVK8c
3. Electronic Devices & Circuits --- https://bit.ly/2NcEBBF
4. Engineering Graphics --- https://bit.ly/2IEGRhD
5. Engineering Mathematics ---...
published: 24 Jul 2018
18:53
classification of orifices and flow through orifice | fluid mechanics| etution
classification of orifices and flow through orifice | fluid mechanics | etution
#orifice
#classificationoforifice
#fluidmechanics
classification of orifices and flow through orifice | fluid mechanics | etution
#orifice
#classificationoforifice
#fluidmechanics
https://wn.com/Classification_Of_Orifices_And_Flow_Through_Orifice_|_Fluid_Mechanics|_Etution
classification of orifices and flow through orifice | fluid mechanics | etution
#orifice
#classificationoforifice
#fluidmechanics
- published: 08 Jun 2018
- views: 14476
8:40
ORIFICE EXPLAIN IN HINDI
Hello friends
Welcome to my YouTube channel 😊
Friends aaj ka topic hai ORIFICE ...
iss video mai apko ORIFICE KI DEFINITION WITH EXAMPLES EXPLAIN KI GYI HAI ...
Hello friends
Welcome to my YouTube channel 😊
Friends aaj ka topic hai ORIFICE ...
iss video mai apko ORIFICE KI DEFINITION WITH EXAMPLES EXPLAIN KI GYI HAI SAATH HI CLASSIFICATION OF ORIFICE ( ACCORDING TO SHAPE,SIZE,SHAPE OF EDGE ,NATURE OF DISCHARGE ) EXPLAIN KI GYI HAI...
AND VENA CONTRACTA WITH EXAMPLES ...
SO I Hope apko aaj ka video bhut pasand aayega ...
Agar apko video acha lage to LIKE SHARE AND COMMENTS KRE AND DON'T FORGET TO SUBSCRIBE ☺️
THANKS FOR WATCHING ☺️
https://wn.com/Orifice_Explain_In_Hindi
Hello friends
Welcome to my YouTube channel 😊
Friends aaj ka topic hai ORIFICE ...
iss video mai apko ORIFICE KI DEFINITION WITH EXAMPLES EXPLAIN KI GYI HAI SAATH HI CLASSIFICATION OF ORIFICE ( ACCORDING TO SHAPE,SIZE,SHAPE OF EDGE ,NATURE OF DISCHARGE ) EXPLAIN KI GYI HAI...
AND VENA CONTRACTA WITH EXAMPLES ...
SO I Hope apko aaj ka video bhut pasand aayega ...
Agar apko video acha lage to LIKE SHARE AND COMMENTS KRE AND DON'T FORGET TO SUBSCRIBE ☺️
THANKS FOR WATCHING ☺️
- published: 18 May 2019
- views: 6913
4:50
The Differential Pressure Flow Measuring Principle (Orifice-Nozzle-Venturi)
http://bit.ly/2uipbBd - Illustration of the differential pressure flow measuring principle.
http://bit.ly/2uipbBd - Illustration of the differential pressure flow measuring principle.
https://wn.com/The_Differential_Pressure_Flow_Measuring_Principle_(Orifice_Nozzle_Venturi)
http://bit.ly/2uipbBd - Illustration of the differential pressure flow measuring principle.
- published: 26 Nov 2009
- views: 1527053
13:14
Orifice Plate Meter || Orifice meter in hindi || Orifice meter kya hai || orifice meter derivation
#GearInstitute
#OrificePlate
#FluidMechanics
An orifice plate is a device used for measuring flow rate, for reducing pressure or for restricting flow (in the...
#GearInstitute
#OrificePlate
#FluidMechanics
An orifice plate is a device used for measuring flow rate, for reducing pressure or for restricting flow (in the latter two cases it is often called a restriction plate ).
An orifice plate is a thin plate with a hole in it, which is usually placed in a pipe. When a fluid (whether liquid or gaseous) passes through the orifice, its pressure builds up slightly upstream of the orifice[1]:85–86 but as the fluid is forced to converge to pass through the hole, the velocity increases and the fluid pressure decreases. A little downstream of the orifice the flow reaches its point of maximum convergence, the vena contracta (see drawing to the right) where the velocity reaches its maximum and the pressure reaches its minimum. Beyond that, the flow expands, the velocity falls and the pressure increases. By measuring the difference in fluid pressure across tappings upstream and downstream of the plate, the flow rate can be obtained from Bernoulli's equation using coefficients established from extensive research
Orifice plates are most commonly used to measure flow rates in pipes, when the fluid is single-phase (rather than being a mixture of gases and liquids, or of liquids and solids) and well-mixed, the flow is continuous rather than pulsating, the fluid occupies the entire pipe (precluding silt or trapped gas), the flow profile is even and well-developed and the fluid and flow rate meet certain other conditions. Under these circumstances and when the orifice plate is constructed and installed according to appropriate standards, the flow rate can easily be determined using published formulae based on substantial research and published in industry, national and international standards.[2]
An orifice plate is called a calibrated orifice if it has been calibrated with an appropriate fluid flow and a traceable flow measurement device.
Plates are commonly made with sharp-edged circular orifices and installed concentric with the pipe and with pressure tappings at one of three standard pairs of distances upstream and downstream of the plate; these types are covered by ISO 5167 and other major standards. There are many other possibilities. The edges may be rounded or conical, the plate may have an orifice the same size as the pipe except for a segment at top or bottom which is obstructed, the orifice may be installed eccentric to the pipe, and the pressure tappings may be at other positions. Variations on these possibilities are covered in various standards and handbooks. Each combination gives rise to different coefficients of discharge which can be predicted so long as various conditions are met, conditions which differ from one type to another.[2]
Once the orifice plate is designed and installed, the flow rate can often be indicated with an acceptably low uncertainty simply by taking the square root of the differential pressure across the orifice's pressure tappings and applying an appropriate constant.
Orifice plates are also used to reduce pressure or restrict flow, in which case they are often called restriction plates
Pipe orifice is a device used for measuring the rate of flow of a fluid through a pipe. ... Discharge in orifice meter Let d1 = diameter at section 1 p1 = pressure at section 1 v1 = velocity at section 1 A1= area at section1 d2, p2, v2, A2 are the corresponding values at section 2
orifice meter experiment,fluid dynamics,orifice meter,fluid mechanics,difference between venturimeter and orifice meter in hindi,vena contracta in orifice meter in hindi,orifice meter derivation in hindi,orifice meter derivation,gear institute,orifice meter discharge derivation,orifice plate,orifice meter working,orifice meter kya hota hai,orifice plate flow meter,orifice plate flow meter in hindi,orifice plate flow meter calculation
https://wn.com/Orifice_Plate_Meter_||_Orifice_Meter_In_Hindi_||_Orifice_Meter_Kya_Hai_||_Orifice_Meter_Derivation
#GearInstitute
#OrificePlate
#FluidMechanics
An orifice plate is a device used for measuring flow rate, for reducing pressure or for restricting flow (in the latter two cases it is often called a restriction plate ).
An orifice plate is a thin plate with a hole in it, which is usually placed in a pipe. When a fluid (whether liquid or gaseous) passes through the orifice, its pressure builds up slightly upstream of the orifice[1]:85–86 but as the fluid is forced to converge to pass through the hole, the velocity increases and the fluid pressure decreases. A little downstream of the orifice the flow reaches its point of maximum convergence, the vena contracta (see drawing to the right) where the velocity reaches its maximum and the pressure reaches its minimum. Beyond that, the flow expands, the velocity falls and the pressure increases. By measuring the difference in fluid pressure across tappings upstream and downstream of the plate, the flow rate can be obtained from Bernoulli's equation using coefficients established from extensive research
Orifice plates are most commonly used to measure flow rates in pipes, when the fluid is single-phase (rather than being a mixture of gases and liquids, or of liquids and solids) and well-mixed, the flow is continuous rather than pulsating, the fluid occupies the entire pipe (precluding silt or trapped gas), the flow profile is even and well-developed and the fluid and flow rate meet certain other conditions. Under these circumstances and when the orifice plate is constructed and installed according to appropriate standards, the flow rate can easily be determined using published formulae based on substantial research and published in industry, national and international standards.[2]
An orifice plate is called a calibrated orifice if it has been calibrated with an appropriate fluid flow and a traceable flow measurement device.
Plates are commonly made with sharp-edged circular orifices and installed concentric with the pipe and with pressure tappings at one of three standard pairs of distances upstream and downstream of the plate; these types are covered by ISO 5167 and other major standards. There are many other possibilities. The edges may be rounded or conical, the plate may have an orifice the same size as the pipe except for a segment at top or bottom which is obstructed, the orifice may be installed eccentric to the pipe, and the pressure tappings may be at other positions. Variations on these possibilities are covered in various standards and handbooks. Each combination gives rise to different coefficients of discharge which can be predicted so long as various conditions are met, conditions which differ from one type to another.[2]
Once the orifice plate is designed and installed, the flow rate can often be indicated with an acceptably low uncertainty simply by taking the square root of the differential pressure across the orifice's pressure tappings and applying an appropriate constant.
Orifice plates are also used to reduce pressure or restrict flow, in which case they are often called restriction plates
Pipe orifice is a device used for measuring the rate of flow of a fluid through a pipe. ... Discharge in orifice meter Let d1 = diameter at section 1 p1 = pressure at section 1 v1 = velocity at section 1 A1= area at section1 d2, p2, v2, A2 are the corresponding values at section 2
orifice meter experiment,fluid dynamics,orifice meter,fluid mechanics,difference between venturimeter and orifice meter in hindi,vena contracta in orifice meter in hindi,orifice meter derivation in hindi,orifice meter derivation,gear institute,orifice meter discharge derivation,orifice plate,orifice meter working,orifice meter kya hota hai,orifice plate flow meter,orifice plate flow meter in hindi,orifice plate flow meter calculation
- published: 14 Apr 2020
- views: 8856
11:42
Orifice and its classification
A textbook of fluid mechanics by Dr RK bansal is available at https://amzn.to/2NsC2vR
A textbook of fluid mechanics by Dr RK bansal is available at https://amzn.to/2NsC2vR
https://wn.com/Orifice_And_Its_Classification
A textbook of fluid mechanics by Dr RK bansal is available at https://amzn.to/2NsC2vR
- published: 30 Apr 2019
- views: 15469
30:14
Complete Otoscope Orifice Exam ASMR
Doctor Andrew Michaels gives you a complete medical exam for all your Orifices and facial holes. An orifice is any opening, mouth, hole or vent, as in a pipe, ...
Doctor Andrew Michaels gives you a complete medical exam for all your Orifices and facial holes. An orifice is any opening, mouth, hole or vent, as in a pipe, a plate, or a body. Body orifice, any opening in the body of a human or animal.
My Otoscope Exam is a tribute to Jellybean Green ASMR, and you might notice my JBG Pin that I am wearing as a tie tack. Check her out at: https://www.youtube.com/watch?v=a-k_hs8J-SQ
If you'd like to donate to help the channel grow we do accept paypal at: https://www.paypal.com/donate/?token=B_iPGhoRIv-HJf4HWJ8HzxNh4DucJ4PrXFL8xIBQ4UTtAZSsM5DrbLTKWV9PM8OoKPTIG0&country.x;=US&locale.x;=US
All donations will be used to buy props and equipment for the channel.
Autonomous sensory meridian response (ASMR) is a term used for an experience characterized by a static-like or tingling sensation on the skin that typically begins on the scalp and moves down the back of the neck and upper spine. It has been compared with auditory-tactile synesthesia. ASMR signifies the subjective experience of "low-grade euphoria" characterised by "a combination of positive feelings and a distinct static-like tingling sensation on the skin". It is most commonly triggered by specific acoustic, visual and digital media stimuli, and less commonly by intentional attentional control.
The introduction animation was by :
Open Animation by Sam Mercer
itsonly5am.com
itsonly5amprods@gmail.com
Sam has also started his own Youtube channel to promote his work at: https://www.youtube.com/channel/UCq5NSG0OJ5s2XKLx6pvmaSw
Please stop by if you can and subscribe to show support.
The intro music was by Jason Shaw of Audionautix.com at:
https://www.youtube.com/watch?v=1dciubGRKQA
Used with full permission.
Filmed on my new Sony a5100 DSLR camera at 60fps.
https://wn.com/Complete_Otoscope_Orifice_Exam_Asmr
Doctor Andrew Michaels gives you a complete medical exam for all your Orifices and facial holes. An orifice is any opening, mouth, hole or vent, as in a pipe, a plate, or a body. Body orifice, any opening in the body of a human or animal.
My Otoscope Exam is a tribute to Jellybean Green ASMR, and you might notice my JBG Pin that I am wearing as a tie tack. Check her out at: https://www.youtube.com/watch?v=a-k_hs8J-SQ
If you'd like to donate to help the channel grow we do accept paypal at: https://www.paypal.com/donate/?token=B_iPGhoRIv-HJf4HWJ8HzxNh4DucJ4PrXFL8xIBQ4UTtAZSsM5DrbLTKWV9PM8OoKPTIG0&country.x;=US&locale.x;=US
All donations will be used to buy props and equipment for the channel.
Autonomous sensory meridian response (ASMR) is a term used for an experience characterized by a static-like or tingling sensation on the skin that typically begins on the scalp and moves down the back of the neck and upper spine. It has been compared with auditory-tactile synesthesia. ASMR signifies the subjective experience of "low-grade euphoria" characterised by "a combination of positive feelings and a distinct static-like tingling sensation on the skin". It is most commonly triggered by specific acoustic, visual and digital media stimuli, and less commonly by intentional attentional control.
The introduction animation was by :
Open Animation by Sam Mercer
itsonly5am.com
itsonly5amprods@gmail.com
Sam has also started his own Youtube channel to promote his work at: https://www.youtube.com/channel/UCq5NSG0OJ5s2XKLx6pvmaSw
Please stop by if you can and subscribe to show support.
The intro music was by Jason Shaw of Audionautix.com at:
https://www.youtube.com/watch?v=1dciubGRKQA
Used with full permission.
Filmed on my new Sony a5100 DSLR camera at 60fps.
- published: 21 May 2019
- views: 662306
2:32
Basics of Differential Flow Devices - Venturi Tubes, Orifice Plates, and Flow Nozzles
This video explains how Venturi tubes, orifice plates, and flow nozzles work as flow meters.
The differential flow meter is the most common device for measur...
This video explains how Venturi tubes, orifice plates, and flow nozzles work as flow meters.
The differential flow meter is the most common device for measuring fluid flow through pipes. Flow rates and pressure differential of fluids, such as gases vapors and liquids, are explored using the orifice plate flow meter.
The differential flow meter, whether Venturi tube, flow nozzle, or orifice plate style, is an in line instrument that is installed between two pipe flanges.
The orifice plate flow meter is comprised the circular metal disc with a specific hole diameter that reduces the fluid flow in the pipe. Pressure taps are added on each side at the orifice plate to measure the pressure differential.
According to the Laws of Conservation of Energy, the fluid entering the pipe must equal the mass leaving the pipe during the same period of time. The velocity of the fluid leaving the orifice is greater than the velocity of the fluid entering the orifice. Applying Bernoulli's principle, the increased fluid velocity results in a decrease in pressure.
As the fluid flow rate increases through the pipe, back pressure on the incoming side increases due to the restriction of flow created by the orifice plate.
The pressure of the fluid at the downstream side at the orifice plate is less than the incoming side due to the accelerated flow.
With a known differential pressure and velocity of the fluid, the volume metric flow rate can be determined. The flow rate “Q”, of a fluid through an orifice plate increases in proportion to the square root the pressure difference on each side multiplied by the K factor. For example if the differential pressure increases by 14 PSI with the K factor of one, the flow rate is increased by 3.74.
For more information contact:
Ives Equipment
(877) 768-1600
www.ivesequipment.com
Video courtesy of www.eicc.edu, funded through a Department of Labor grant under creativecommons.org/licenses/by/4.0/.
https://wn.com/Basics_Of_Differential_Flow_Devices_Venturi_Tubes,_Orifice_Plates,_And_Flow_Nozzles
This video explains how Venturi tubes, orifice plates, and flow nozzles work as flow meters.
The differential flow meter is the most common device for measuring fluid flow through pipes. Flow rates and pressure differential of fluids, such as gases vapors and liquids, are explored using the orifice plate flow meter.
The differential flow meter, whether Venturi tube, flow nozzle, or orifice plate style, is an in line instrument that is installed between two pipe flanges.
The orifice plate flow meter is comprised the circular metal disc with a specific hole diameter that reduces the fluid flow in the pipe. Pressure taps are added on each side at the orifice plate to measure the pressure differential.
According to the Laws of Conservation of Energy, the fluid entering the pipe must equal the mass leaving the pipe during the same period of time. The velocity of the fluid leaving the orifice is greater than the velocity of the fluid entering the orifice. Applying Bernoulli's principle, the increased fluid velocity results in a decrease in pressure.
As the fluid flow rate increases through the pipe, back pressure on the incoming side increases due to the restriction of flow created by the orifice plate.
The pressure of the fluid at the downstream side at the orifice plate is less than the incoming side due to the accelerated flow.
With a known differential pressure and velocity of the fluid, the volume metric flow rate can be determined. The flow rate “Q”, of a fluid through an orifice plate increases in proportion to the square root the pressure difference on each side multiplied by the K factor. For example if the differential pressure increases by 14 PSI with the K factor of one, the flow rate is increased by 3.74.
For more information contact:
Ives Equipment
(877) 768-1600
www.ivesequipment.com
Video courtesy of www.eicc.edu, funded through a Department of Labor grant under creativecommons.org/licenses/by/4.0/.
- published: 01 Dec 2015
- views: 109519
20:35
Fluid Mechanics | Module 4 | Orifice Meter (Lecture 29)
Subject --- Fluid Mechanics
Topic --- Module 4 | Orifice Meter (Lecture 29)
Faculty --- Venugopal Sharma
GATE Academy Plus is an effort to initiate free online...
Subject --- Fluid Mechanics
Topic --- Module 4 | Orifice Meter (Lecture 29)
Faculty --- Venugopal Sharma
GATE Academy Plus is an effort to initiate free online digital resources for the first time in India and particularly Mr. Umesh Dhande, Founder and Director of GATE ACADEMY creative in order to shape the best career of Engineering student approaching to B.Tech/B.E. courses.
Check out our facebook page for more details. https://www.facebook.com/GATE.ACADEMY.PLUS
Watch out the below mentioned playlists for other videos on these subjects :
1. Analog Electronics --- https://bit.ly/2IEFMq5
2. Basic Electrical Engineering --- https://bit.ly/2MuVK8c
3. Electronic Devices & Circuits --- https://bit.ly/2NcEBBF
4. Engineering Graphics --- https://bit.ly/2IEGRhD
5. Engineering Mathematics --- https://bit.ly/2tSsOzt
6. Exclusive --- https://bit.ly/2KAw0XM
7. Fluid Mechanics --- https://bit.ly/2tHaQRk
8. Signals and Systems --- https://bit.ly/2Khihsy
https://wn.com/Fluid_Mechanics_|_Module_4_|_Orifice_Meter_(Lecture_29)
Subject --- Fluid Mechanics
Topic --- Module 4 | Orifice Meter (Lecture 29)
Faculty --- Venugopal Sharma
GATE Academy Plus is an effort to initiate free online digital resources for the first time in India and particularly Mr. Umesh Dhande, Founder and Director of GATE ACADEMY creative in order to shape the best career of Engineering student approaching to B.Tech/B.E. courses.
Check out our facebook page for more details. https://www.facebook.com/GATE.ACADEMY.PLUS
Watch out the below mentioned playlists for other videos on these subjects :
1. Analog Electronics --- https://bit.ly/2IEFMq5
2. Basic Electrical Engineering --- https://bit.ly/2MuVK8c
3. Electronic Devices & Circuits --- https://bit.ly/2NcEBBF
4. Engineering Graphics --- https://bit.ly/2IEGRhD
5. Engineering Mathematics --- https://bit.ly/2tSsOzt
6. Exclusive --- https://bit.ly/2KAw0XM
7. Fluid Mechanics --- https://bit.ly/2tHaQRk
8. Signals and Systems --- https://bit.ly/2Khihsy
- published: 24 Jul 2018
- views: 125468