SlideShare une entreprise Scribd logo
1  sur  15
Télécharger pour lire hors ligne
Erbil Polytechnic University
Koya Technical Institute
Petroleum Technology
Operation and Control
Report
Fluid Mechanic Lab.
Test no: (9)
Test name:
(Flow meter Demonstration)
Supervised by:
Karwan A. Ali
Date of Test: 1/02/2018
Date of Submit:08/02/2018
Prepared by: Muhammed Shwan Ali
Title Page number
Aim 3
Introduction 3
Apparatus 4 - 6
Procedure 6 - 7
Calculation 8-11
Discussion 12-15
Reference 15
Aim of the experiment:-
. Compression between different flow meter types.
. Determining the discharge coefficient.
Introduction:-
Fluid mechanics has developed an analytical discipline from the
application of the classical laws of static, dynamics and
thermodynamics, to situation in which fluids can be treated as
continuous media. The particular laws involved are those of
conservation of mass; these laws may be
simplified in an attempt to describe
quantitatively the behavior of the fluids.
The hydraulic bench service module, F1-
10, provides the necessary facilities to
support a comprehensive range of
hydraulic models each of which is
designed to demonstrate a particular
aspect of hydraulic theory. The specific
hydraulic model that is concerned for this
experiment is the flow meter test rig (F1-
21). This consists of venture meter,
variable area meter, and orifice plate installed in a series of
configurations to allow for direct comparisons.
OrificeNozzleVenturi
Apparatus:-
The apparatus is discharged to demonstrate three basics
types of flow meter.
-Rota meter
Rota meter:-
A Rota meter with the following characteristics is used to measure
flow rate:
- Plastic measuring tub
- Interchangeable stainless steel float
- Max. Flow rate 26 lit/min
The flow rate can be read from the upper edge of the conical
attachment.
Air particles on dirt particles on the float may affect measurement
precision.
To flush the out. Operate the test stand a maximum flow rate first.
To do so, open all cocks fully.
Nozzle and Orifice plate:
The orifice plate housing is made of transparent plastic allowing
visible functioning of the orifice plate. The flow causes a pressure
loss between inlet and outlet. Two tapings allow measurement of
inlet and outlet pressure. This differential pressure (p1-p2) is
proportional to the volume flow rate:
Q=Cd A2
√
2𝑔 (ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2
Venturi meter:
The venturi housing is made of transparent plastic allowing visible
functioning of the venturi.
The pressure in the venturi inversely propositional to the velocity
in the venturi according to Bernoulli’s law.
Two tapings allow measurement of the inlet pressure and the
pressure at the smallest area.
This differential pressure (p1-p2) is proportional to the volume flow
rate:
Q=Cd A2
√
2𝑔 (ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2
Procedure:-
- Arrange the experimentation set-up on the Hydraulic Bench
such that the discharge routs the water into the channel.
- Makes hose connection between Hydraulic Bench and unit
- Connect measurement lines
- Open all valves at pipe section and 6-tube manometer, let the
water flow for 1 minute
- Close flow control valve
- Clos drain valve of the 6-tube manometer to vent the
measurement lines
- Clos flow valve of the 6-tube manometer
- Close water inlet
- Disconnect measurement lines
- Open vent and drain valves to discharge level tubes of the 6-tube
manometer
- Close vent and drain valves
- Open flow control valve slowly
- Connect measurement lines again
- Open water inlet slowly
- Adjust the heights of the water in the manometer tubes with the
help of flow control valve until water becomes visible
-Set the flow rate and measurement scale with the inlet and outlet
control valves
-Determine volumetric flow rate. To do so. Use stopwatch to
establish time t required for raising the level in the volumetric tank
of the Hydraulic Bench.
Calculation:-
1/ Volume=25L →25000cm3
g=9.81m/s2
→981cm/s2
Time=110.69s
Qact=
𝑉𝑜𝑙𝑢𝑚𝑒
𝑇𝑖𝑚𝑒
→
25000
110.69
=225.855 cm3
/s
*Venturi meter:-
A1=5.309cm3
A2=2.011 cm3
g=9.81m/s2
→981cm/s2
P= hy h=
𝑝
𝑦
Qmesu=A2√
2𝑔(
𝑝1−𝑝2
𝑦
)
(1−
𝐴2
2
𝐴1
2)
→ Qmesu=A2
√
2𝑔(ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2)
Qmesu=2.011
√
2(981)(32.4−28.1)
(1−
2.0112
5.3092 )
=199.58484
Cd Venturi =
𝑄 𝑎𝑐𝑡
𝑄 𝑚𝑒𝑠𝑢
→
225.855
199.58484
= 1.1316
Orifice:-
A1=21.16cm2
A2=3.142cm2
P= hy h=
𝑝
𝑦
Qmesu=A2√
2𝑔(
𝑝1−𝑝2
𝑦
)
(1−
𝐴2
2
𝐴1
2)
→ Qmesu=A2
√
2𝑔(ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2)
Qmesu=3.142
√
2(981)(32−27)
(1−
3.1422
21.162 )
=311.5cm3
/s
Cd Orifice =
𝑄 𝑎𝑐𝑡
𝑄 𝑚𝑒𝑠𝑢
→
225.855
311.5
= 0.725056
2/ Volume=25L →25000 cm3
,g=9.81m/s2
→981cm/s2
Time=73.45s
Qact=
𝑉𝑜𝑙𝑢𝑚𝑒
𝑇𝑖𝑚𝑒
→
25000
73.45
= 340.3675 cm3
/s
*Venturi meter:-
A1=5.309cm3
A2=2.011 cm3
g=9.81m/s2
→981cm/s2
P= hy h=
𝑝
𝑦
Qmesu=A2√
2𝑔(
𝑝1−𝑝2
𝑦
)
(1−
𝐴2
2
𝐴1
2)
→ Qmesu=A2
√
2𝑔(ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2)
Qmesu=2.011
√
2(981)(34.2−24.9)
(1−
2.0112
5.3092 )
=293.5181
Cd Venturi =
𝑄 𝑎𝑐𝑡
𝑄 𝑚𝑒𝑠𝑢
→
340.3675
293.5181
= 1.1584
Orifice:-
A1=21.16cm2
A2=3.142cm2
Time=73.45s
P= hy h=
𝑝
𝑦
Qmesu=A2√
2𝑔(
𝑝1−𝑝2
𝑦
)
(1−
𝐴2
2
𝐴1
2)
→ Qmesu=A2
√
2𝑔(ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2)
Qmesu= 3.142
√
2(981)(33.7−22.2)
(1−
3.1422
21.162 )
=476.959cm3
/s
Cd Orifice =
𝑄 𝑎𝑐𝑡
𝑄 𝑚𝑒𝑠𝑢
→
340.3675
476.959
= 0.71362
No.3/ Volume=25L →25000 cm3
,g=9.81m/s2
→981cm/s2
Time=51.61s
Qact=
𝑉𝑜𝑙𝑢𝑚𝑒
𝑇𝑖𝑚𝑒
→
25000
51.61
= 484.4022 cm3
/s
*Venturi meter:-
A1=5.309cm3
A2=2.011 cm3
g=9.81m/s2
→981cm/s2
P= hy h=
𝑝
𝑦
Qmesu= A2√
2𝑔(
𝑝1−𝑝2
𝑦
)
(1−
𝐴2
2
𝐴1
2)
→ Qmesu = A2
√
2𝑔(ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2)
Qmesu=2.011 √
2(981)(38−19.8)
(1−
2.0112
5.3092)
= 410.6096
Cd Venturi =
𝑄 𝑎𝑐𝑡
𝑄 𝑚𝑒𝑠𝑢
→
484.4022
410.6096
= 1.17971
Orifice:-
A1=21.16cm2
A2=3.142cm2
Time=51.61s
P= hy h=
𝑝
𝑦
Qmesu=A2√
2𝑔(
𝑝1−𝑝2
𝑦
)
(1−
𝐴2
2
𝐴1
2)
→ Qmesu=A2
√
2𝑔(ℎ1−ℎ2)
(1−
𝐴2
2
𝐴1
2)
Qmesu=3.142 √
2(981)(37.2−14.2)
(1−
3.1422
21.162)
=675.26cm3
Cd Orifice =
𝑄 𝑎𝑐𝑡
𝑄 𝑚𝑒𝑠𝑢
→
484.4022
675.26
= 0.71735
Table of calculation:-
Discussion:-
1/ is the ratio of the actual discharge to the ideal
discharge, assuming unit coefficients of contraction
and velocity, equal to the product of these coefficients.
--Coefficient of discharge is stated as the ratio between the actual
flow discharge and theoretical flow discharge. It is also referred to
as the ratio of mass flow rate at nozzle's discharge edge to the
No.
Qact
)/s3
(cm
Rotameter Venture meter Orifice meter
Qrot
(liter/min)
Qact
)/s3
(cm
Qi
)/s3
(cm Cd
Qi
)/s3
(cm Cd
1 225.855 9.9 165 199.58484 1.1316 311.5 0.725056
2 340.3675 16 266.6667 293.5181 1.1584 476.959 0.71362
3 484.4022 22.2 370 410.6096 1.17971 675.2 0.71735
standard nozzle which enlarges an exact working fluid maintained
at the similar initial conditions and pressures.
It has no dimensions and depends directly on the rate of flow and
velocity of working fluid. It is symbolized by Cd and its value is
different for each fluid depending on the kind of measurement of
flow. In nozzle flow measurement, the efficiency of Cd is higher
when compared to the flow measurement at the orifice. The
discharge coefficient is raised by increasing the overall pressure
ratio and reducing the convergence semi angle. Also, the range of
Cd is commonly superior in supercritical series.
Express the relation of discharge coefficient.
2/
0
50
100
150
200
250
300
350
400
450
500
5 7 9 11 13 15 17 19 21 23 25
Qrot
Qact
3/ Venturi
0
50
100
150
200
250
300
350
400
450
500
550
600
1.11 1.115 1.12 1.125 1.13 1.135 1.14 1.145 1.15 1.155 1.16 1.165 1.17 1.175 1.18 1.185 1.19 1.195 1.2
Qact
Cd
Orifice
Reference:-
www.piratesbay.com
www.scribd.com
www.merriam-webster.com
0.708
0.71
0.712
0.714
0.716
0.718
0.72
0.722
0.724
0.726
0.728
0.73
225.855 275.855 325.855 375.855 425.855 475.855
Cd
Qact

Contenu connexe

Tendances

helium porosimeter (Reservoir lab)
helium porosimeter (Reservoir lab)helium porosimeter (Reservoir lab)
helium porosimeter (Reservoir lab)Bakhtiar Mahmood
 
Fluid mechanics Lab Report
Fluid mechanics Lab ReportFluid mechanics Lab Report
Fluid mechanics Lab ReportMuhammad Bilal
 
Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...
Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...
Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...Shaoor Kamal
 
Lab 1 the dryness fraction of the steam(mech)
Lab 1   the dryness fraction of the steam(mech)Lab 1   the dryness fraction of the steam(mech)
Lab 1 the dryness fraction of the steam(mech)lizwi nyandu
 
Flow rate and pressure head
Flow rate and pressure headFlow rate and pressure head
Flow rate and pressure headMusa Sabri
 
Drilling Lab - pH Meter Measurement
Drilling Lab - pH Meter MeasurementDrilling Lab - pH Meter Measurement
Drilling Lab - pH Meter MeasurementMuhammadSRaniYah
 
Fluid Mechanic Lab - Venturi Meter
Fluid Mechanic Lab - Venturi MeterFluid Mechanic Lab - Venturi Meter
Fluid Mechanic Lab - Venturi MeterMuhammadSRaniYah
 
Fluid mechanics 1 lab assignment of hafiz luqman
Fluid mechanics 1 lab assignment of hafiz luqmanFluid mechanics 1 lab assignment of hafiz luqman
Fluid mechanics 1 lab assignment of hafiz luqmanHafiz Luqman Khalil
 

Tendances (20)

Flow through pipes ppt
Flow through pipes pptFlow through pipes ppt
Flow through pipes ppt
 
Fluid mechanics (lab)
Fluid mechanics (lab)Fluid mechanics (lab)
Fluid mechanics (lab)
 
Fm lab manual
Fm lab manualFm lab manual
Fm lab manual
 
Pressurized mud-balance2
Pressurized mud-balance2Pressurized mud-balance2
Pressurized mud-balance2
 
helium porosimeter (Reservoir lab)
helium porosimeter (Reservoir lab)helium porosimeter (Reservoir lab)
helium porosimeter (Reservoir lab)
 
Core plug test
 Core plug test  Core plug test
Core plug test
 
Fluid mechanics Lab Report
Fluid mechanics Lab ReportFluid mechanics Lab Report
Fluid mechanics Lab Report
 
Impact of jet
Impact of jetImpact of jet
Impact of jet
 
(Mud Filtration)
(Mud Filtration)(Mud Filtration)
(Mud Filtration)
 
Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...
Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...
Rheology of Fluids Hydraulic Calculations & Drilling Fluid (Mud) Filtration T...
 
Lab 1 the dryness fraction of the steam(mech)
Lab 1   the dryness fraction of the steam(mech)Lab 1   the dryness fraction of the steam(mech)
Lab 1 the dryness fraction of the steam(mech)
 
Exp 10 flow_rate
Exp 10 flow_rateExp 10 flow_rate
Exp 10 flow_rate
 
Mud Filtration Test
Mud Filtration TestMud Filtration Test
Mud Filtration Test
 
Flow rate and pressure head
Flow rate and pressure headFlow rate and pressure head
Flow rate and pressure head
 
01 kern's method.
01 kern's method.01 kern's method.
01 kern's method.
 
mud filtration
mud filtrationmud filtration
mud filtration
 
Drilling Lab - pH Meter Measurement
Drilling Lab - pH Meter MeasurementDrilling Lab - pH Meter Measurement
Drilling Lab - pH Meter Measurement
 
Fluid Mechanic Lab - Venturi Meter
Fluid Mechanic Lab - Venturi MeterFluid Mechanic Lab - Venturi Meter
Fluid Mechanic Lab - Venturi Meter
 
porosity by saturation
porosity by saturationporosity by saturation
porosity by saturation
 
Fluid mechanics 1 lab assignment of hafiz luqman
Fluid mechanics 1 lab assignment of hafiz luqmanFluid mechanics 1 lab assignment of hafiz luqman
Fluid mechanics 1 lab assignment of hafiz luqman
 

Similaire à exp.9 flow meter demonstration

Flow measurement basics
Flow measurement basicsFlow measurement basics
Flow measurement basicsSalman1011
 
Boiler doc 04 flowmetering
Boiler doc 04   flowmeteringBoiler doc 04   flowmetering
Boiler doc 04 flowmeteringMars Tsani
 
Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...
Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...
Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...IRJET Journal
 
Venturi and orificemeter - Ed Ryan Ruales
Venturi and orificemeter - Ed Ryan RualesVenturi and orificemeter - Ed Ryan Ruales
Venturi and orificemeter - Ed Ryan RualesEd Ryan Ruales
 
Flow Analysis of Butterfly Valve Using CFD
Flow Analysis of Butterfly Valve Using CFDFlow Analysis of Butterfly Valve Using CFD
Flow Analysis of Butterfly Valve Using CFDIJMER
 
Ijmer 46055056
Ijmer 46055056Ijmer 46055056
Ijmer 46055056IJMER
 
Air flow and charge motion study of engine intake port
Air flow and charge motion study of engine intake portAir flow and charge motion study of engine intake port
Air flow and charge motion study of engine intake portTunAnh309
 

Similaire à exp.9 flow meter demonstration (20)

Fluid mechanic lab experiment
Fluid mechanic lab experimentFluid mechanic lab experiment
Fluid mechanic lab experiment
 
Flow measurement basics
Flow measurement basicsFlow measurement basics
Flow measurement basics
 
Boiler doc 04 flowmetering
Boiler doc 04   flowmeteringBoiler doc 04   flowmetering
Boiler doc 04 flowmetering
 
T2
T2T2
T2
 
Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...
Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...
Comparison of Pressure Drop Characteristics of Swing Plate and Dual Plate Che...
 
FLOW(NEW).pptx .
FLOW(NEW).pptx                          .FLOW(NEW).pptx                          .
FLOW(NEW).pptx .
 
Venturi and orificemeter - Ed Ryan Ruales
Venturi and orificemeter - Ed Ryan RualesVenturi and orificemeter - Ed Ryan Ruales
Venturi and orificemeter - Ed Ryan Ruales
 
Minor losses valve
Minor losses  valveMinor losses  valve
Minor losses valve
 
pipe friction for turbulent
pipe friction for turbulentpipe friction for turbulent
pipe friction for turbulent
 
pipe friction for turbulent
pipe friction for turbulentpipe friction for turbulent
pipe friction for turbulent
 
pipe friction for laminar
pipe friction for laminarpipe friction for laminar
pipe friction for laminar
 
Mech CE6461 FMM lab_manual
Mech CE6461 FMM lab_manualMech CE6461 FMM lab_manual
Mech CE6461 FMM lab_manual
 
Minor losses valve
Minor losses valveMinor losses valve
Minor losses valve
 
pipe friction for laminar
pipe friction for laminarpipe friction for laminar
pipe friction for laminar
 
Minor losses elbow
Minor losses elbowMinor losses elbow
Minor losses elbow
 
Exp 10 flow rate
Exp 10 flow rateExp 10 flow rate
Exp 10 flow rate
 
Flow visualization
Flow visualizationFlow visualization
Flow visualization
 
Flow Analysis of Butterfly Valve Using CFD
Flow Analysis of Butterfly Valve Using CFDFlow Analysis of Butterfly Valve Using CFD
Flow Analysis of Butterfly Valve Using CFD
 
Ijmer 46055056
Ijmer 46055056Ijmer 46055056
Ijmer 46055056
 
Air flow and charge motion study of engine intake port
Air flow and charge motion study of engine intake portAir flow and charge motion study of engine intake port
Air flow and charge motion study of engine intake port
 

Plus de Muhammed Fuad Al-Barznji

5980 dual column floor frames system support
5980 dual column floor frames system support5980 dual column floor frames system support
5980 dual column floor frames system supportMuhammed Fuad Al-Barznji
 
Important Conversion Factors in Petroleum Technology
Important Conversion Factors in Petroleum Technology Important Conversion Factors in Petroleum Technology
Important Conversion Factors in Petroleum Technology Muhammed Fuad Al-Barznji
 
Drilling engineering laboratory manual by Muhammed Jamal Awl
Drilling engineering laboratory manual by Muhammed Jamal AwlDrilling engineering laboratory manual by Muhammed Jamal Awl
Drilling engineering laboratory manual by Muhammed Jamal AwlMuhammed Fuad Al-Barznji
 
Funnel viscosity discussion by Muhammed Fuad Rashid
Funnel viscosity discussion by Muhammed Fuad RashidFunnel viscosity discussion by Muhammed Fuad Rashid
Funnel viscosity discussion by Muhammed Fuad RashidMuhammed Fuad Al-Barznji
 
Reservoir Rock Properties Laboratory Manual Exp (#4)
Reservoir Rock Properties Laboratory Manual Exp (#4)Reservoir Rock Properties Laboratory Manual Exp (#4)
Reservoir Rock Properties Laboratory Manual Exp (#4)Muhammed Fuad Al-Barznji
 
Reservoir Rock Properties Laboratory Manual Exp (#3)
 Reservoir Rock Properties Laboratory Manual Exp (#3) Reservoir Rock Properties Laboratory Manual Exp (#3)
Reservoir Rock Properties Laboratory Manual Exp (#3)Muhammed Fuad Al-Barznji
 
Reservoir Rock Properties Laboratory Manual Exp (#2)
Reservoir Rock Properties Laboratory Manual Exp (#2)Reservoir Rock Properties Laboratory Manual Exp (#2)
Reservoir Rock Properties Laboratory Manual Exp (#2)Muhammed Fuad Al-Barznji
 
Reservoir Rock Properties Laboratory Manual Exp (#1)
Reservoir Rock Properties Laboratory Manual Exp (#1)Reservoir Rock Properties Laboratory Manual Exp (#1)
Reservoir Rock Properties Laboratory Manual Exp (#1)Muhammed Fuad Al-Barznji
 
Our exp8 static_and_dynamic_pressure_(1)_(recovered)
Our exp8 static_and_dynamic_pressure_(1)_(recovered)Our exp8 static_and_dynamic_pressure_(1)_(recovered)
Our exp8 static_and_dynamic_pressure_(1)_(recovered)Muhammed Fuad Al-Barznji
 
Discussion by ahmad_jalal_for_center_of_pressure_
Discussion by ahmad_jalal_for_center_of_pressure_Discussion by ahmad_jalal_for_center_of_pressure_
Discussion by ahmad_jalal_for_center_of_pressure_Muhammed Fuad Al-Barznji
 
Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_
Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_
Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_Muhammed Fuad Al-Barznji
 

Plus de Muhammed Fuad Al-Barznji (20)

Mud dilution experiment
Mud dilution experimentMud dilution experiment
Mud dilution experiment
 
Exp2 mud weight
Exp2 mud weightExp2 mud weight
Exp2 mud weight
 
5980 dual column floor frames system support
5980 dual column floor frames system support5980 dual column floor frames system support
5980 dual column floor frames system support
 
Surface Tension
Surface TensionSurface Tension
Surface Tension
 
Exp no.03 hydrostatics pressure
Exp no.03 hydrostatics pressureExp no.03 hydrostatics pressure
Exp no.03 hydrostatics pressure
 
Dead weight piston gauge
Dead weight piston gaugeDead weight piston gauge
Dead weight piston gauge
 
Sample preparation for tensile test 2
Sample preparation for tensile test  2Sample preparation for tensile test  2
Sample preparation for tensile test 2
 
Measurement units and conversion factors
Measurement units and conversion factorsMeasurement units and conversion factors
Measurement units and conversion factors
 
Metric standard (unit convesions)
Metric standard (unit convesions)Metric standard (unit convesions)
Metric standard (unit convesions)
 
Important Conversion Factors in Petroleum Technology
Important Conversion Factors in Petroleum Technology Important Conversion Factors in Petroleum Technology
Important Conversion Factors in Petroleum Technology
 
Drilling engineering laboratory manual by Muhammed Jamal Awl
Drilling engineering laboratory manual by Muhammed Jamal AwlDrilling engineering laboratory manual by Muhammed Jamal Awl
Drilling engineering laboratory manual by Muhammed Jamal Awl
 
Funnel viscosity discussion by Muhammed Fuad Rashid
Funnel viscosity discussion by Muhammed Fuad RashidFunnel viscosity discussion by Muhammed Fuad Rashid
Funnel viscosity discussion by Muhammed Fuad Rashid
 
Reservoir Rock Properties Laboratory Manual Exp (#4)
Reservoir Rock Properties Laboratory Manual Exp (#4)Reservoir Rock Properties Laboratory Manual Exp (#4)
Reservoir Rock Properties Laboratory Manual Exp (#4)
 
Reservoir Rock Properties Laboratory Manual Exp (#3)
 Reservoir Rock Properties Laboratory Manual Exp (#3) Reservoir Rock Properties Laboratory Manual Exp (#3)
Reservoir Rock Properties Laboratory Manual Exp (#3)
 
Reservoir Rock Properties Laboratory Manual Exp (#2)
Reservoir Rock Properties Laboratory Manual Exp (#2)Reservoir Rock Properties Laboratory Manual Exp (#2)
Reservoir Rock Properties Laboratory Manual Exp (#2)
 
Reservoir Rock Properties Laboratory Manual Exp (#1)
Reservoir Rock Properties Laboratory Manual Exp (#1)Reservoir Rock Properties Laboratory Manual Exp (#1)
Reservoir Rock Properties Laboratory Manual Exp (#1)
 
Types of reservoir (gas reservoir)
Types of reservoir (gas reservoir)Types of reservoir (gas reservoir)
Types of reservoir (gas reservoir)
 
Our exp8 static_and_dynamic_pressure_(1)_(recovered)
Our exp8 static_and_dynamic_pressure_(1)_(recovered)Our exp8 static_and_dynamic_pressure_(1)_(recovered)
Our exp8 static_and_dynamic_pressure_(1)_(recovered)
 
Discussion by ahmad_jalal_for_center_of_pressure_
Discussion by ahmad_jalal_for_center_of_pressure_Discussion by ahmad_jalal_for_center_of_pressure_
Discussion by ahmad_jalal_for_center_of_pressure_
 
Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_
Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_
Dicussion by ahmad_jalal_hasan_for_dynamic_and_static_pressure_
 

Dernier

Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...Call Girls in Nagpur High Profile
 
Processing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxProcessing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxpranjaldaimarysona
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVRajaP95
 
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSHARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSRajkumarAkumalla
 
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Serviceranjana rawat
 
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).pptssuser5c9d4b1
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingrakeshbaidya232001
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...ranjana rawat
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )Tsuyoshi Horigome
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130Suhani Kapoor
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Christo Ananth
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxupamatechverse
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...Call Girls in Nagpur High Profile
 
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...ranjana rawat
 
Microscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptxMicroscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptxpurnimasatapathy1234
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSKurinjimalarL3
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escortsranjana rawat
 
(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...ranjana rawat
 

Dernier (20)

9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
 
Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
 
Processing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxProcessing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptx
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
 
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICSHARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
HARDNESS, FRACTURE TOUGHNESS AND STRENGTH OF CERAMICS
 
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
 
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writing
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
 
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCRCall Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptx
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
 
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
 
Microscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptxMicroscopic Analysis of Ceramic Materials.pptx
Microscopic Analysis of Ceramic Materials.pptx
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
 
(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANVI) Koregaon Park Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
 

exp.9 flow meter demonstration

  • 1. Erbil Polytechnic University Koya Technical Institute Petroleum Technology Operation and Control Report Fluid Mechanic Lab. Test no: (9) Test name: (Flow meter Demonstration) Supervised by: Karwan A. Ali Date of Test: 1/02/2018 Date of Submit:08/02/2018 Prepared by: Muhammed Shwan Ali
  • 2. Title Page number Aim 3 Introduction 3 Apparatus 4 - 6 Procedure 6 - 7 Calculation 8-11 Discussion 12-15 Reference 15
  • 3. Aim of the experiment:- . Compression between different flow meter types. . Determining the discharge coefficient. Introduction:- Fluid mechanics has developed an analytical discipline from the application of the classical laws of static, dynamics and thermodynamics, to situation in which fluids can be treated as continuous media. The particular laws involved are those of conservation of mass; these laws may be simplified in an attempt to describe quantitatively the behavior of the fluids. The hydraulic bench service module, F1- 10, provides the necessary facilities to support a comprehensive range of hydraulic models each of which is designed to demonstrate a particular aspect of hydraulic theory. The specific hydraulic model that is concerned for this experiment is the flow meter test rig (F1- 21). This consists of venture meter, variable area meter, and orifice plate installed in a series of configurations to allow for direct comparisons. OrificeNozzleVenturi
  • 4. Apparatus:- The apparatus is discharged to demonstrate three basics types of flow meter. -Rota meter Rota meter:- A Rota meter with the following characteristics is used to measure flow rate: - Plastic measuring tub
  • 5. - Interchangeable stainless steel float - Max. Flow rate 26 lit/min The flow rate can be read from the upper edge of the conical attachment. Air particles on dirt particles on the float may affect measurement precision. To flush the out. Operate the test stand a maximum flow rate first. To do so, open all cocks fully. Nozzle and Orifice plate: The orifice plate housing is made of transparent plastic allowing visible functioning of the orifice plate. The flow causes a pressure loss between inlet and outlet. Two tapings allow measurement of inlet and outlet pressure. This differential pressure (p1-p2) is proportional to the volume flow rate: Q=Cd A2 √ 2𝑔 (ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2 Venturi meter: The venturi housing is made of transparent plastic allowing visible functioning of the venturi.
  • 6. The pressure in the venturi inversely propositional to the velocity in the venturi according to Bernoulli’s law. Two tapings allow measurement of the inlet pressure and the pressure at the smallest area. This differential pressure (p1-p2) is proportional to the volume flow rate: Q=Cd A2 √ 2𝑔 (ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2 Procedure:- - Arrange the experimentation set-up on the Hydraulic Bench such that the discharge routs the water into the channel. - Makes hose connection between Hydraulic Bench and unit - Connect measurement lines - Open all valves at pipe section and 6-tube manometer, let the water flow for 1 minute - Close flow control valve
  • 7. - Clos drain valve of the 6-tube manometer to vent the measurement lines - Clos flow valve of the 6-tube manometer - Close water inlet - Disconnect measurement lines - Open vent and drain valves to discharge level tubes of the 6-tube manometer - Close vent and drain valves - Open flow control valve slowly - Connect measurement lines again - Open water inlet slowly - Adjust the heights of the water in the manometer tubes with the help of flow control valve until water becomes visible -Set the flow rate and measurement scale with the inlet and outlet control valves -Determine volumetric flow rate. To do so. Use stopwatch to establish time t required for raising the level in the volumetric tank of the Hydraulic Bench.
  • 8. Calculation:- 1/ Volume=25L →25000cm3 g=9.81m/s2 →981cm/s2 Time=110.69s Qact= 𝑉𝑜𝑙𝑢𝑚𝑒 𝑇𝑖𝑚𝑒 → 25000 110.69 =225.855 cm3 /s *Venturi meter:- A1=5.309cm3 A2=2.011 cm3 g=9.81m/s2 →981cm/s2 P= hy h= 𝑝 𝑦 Qmesu=A2√ 2𝑔( 𝑝1−𝑝2 𝑦 ) (1− 𝐴2 2 𝐴1 2) → Qmesu=A2 √ 2𝑔(ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2) Qmesu=2.011 √ 2(981)(32.4−28.1) (1− 2.0112 5.3092 ) =199.58484 Cd Venturi = 𝑄 𝑎𝑐𝑡 𝑄 𝑚𝑒𝑠𝑢 → 225.855 199.58484 = 1.1316 Orifice:- A1=21.16cm2 A2=3.142cm2 P= hy h= 𝑝 𝑦 Qmesu=A2√ 2𝑔( 𝑝1−𝑝2 𝑦 ) (1− 𝐴2 2 𝐴1 2) → Qmesu=A2 √ 2𝑔(ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2)
  • 9. Qmesu=3.142 √ 2(981)(32−27) (1− 3.1422 21.162 ) =311.5cm3 /s Cd Orifice = 𝑄 𝑎𝑐𝑡 𝑄 𝑚𝑒𝑠𝑢 → 225.855 311.5 = 0.725056 2/ Volume=25L →25000 cm3 ,g=9.81m/s2 →981cm/s2 Time=73.45s Qact= 𝑉𝑜𝑙𝑢𝑚𝑒 𝑇𝑖𝑚𝑒 → 25000 73.45 = 340.3675 cm3 /s *Venturi meter:- A1=5.309cm3 A2=2.011 cm3 g=9.81m/s2 →981cm/s2 P= hy h= 𝑝 𝑦 Qmesu=A2√ 2𝑔( 𝑝1−𝑝2 𝑦 ) (1− 𝐴2 2 𝐴1 2) → Qmesu=A2 √ 2𝑔(ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2) Qmesu=2.011 √ 2(981)(34.2−24.9) (1− 2.0112 5.3092 ) =293.5181 Cd Venturi = 𝑄 𝑎𝑐𝑡 𝑄 𝑚𝑒𝑠𝑢 → 340.3675 293.5181 = 1.1584
  • 10. Orifice:- A1=21.16cm2 A2=3.142cm2 Time=73.45s P= hy h= 𝑝 𝑦 Qmesu=A2√ 2𝑔( 𝑝1−𝑝2 𝑦 ) (1− 𝐴2 2 𝐴1 2) → Qmesu=A2 √ 2𝑔(ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2) Qmesu= 3.142 √ 2(981)(33.7−22.2) (1− 3.1422 21.162 ) =476.959cm3 /s Cd Orifice = 𝑄 𝑎𝑐𝑡 𝑄 𝑚𝑒𝑠𝑢 → 340.3675 476.959 = 0.71362 No.3/ Volume=25L →25000 cm3 ,g=9.81m/s2 →981cm/s2 Time=51.61s Qact= 𝑉𝑜𝑙𝑢𝑚𝑒 𝑇𝑖𝑚𝑒 → 25000 51.61 = 484.4022 cm3 /s *Venturi meter:- A1=5.309cm3 A2=2.011 cm3 g=9.81m/s2 →981cm/s2 P= hy h= 𝑝 𝑦 Qmesu= A2√ 2𝑔( 𝑝1−𝑝2 𝑦 ) (1− 𝐴2 2 𝐴1 2) → Qmesu = A2 √ 2𝑔(ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2)
  • 11. Qmesu=2.011 √ 2(981)(38−19.8) (1− 2.0112 5.3092) = 410.6096 Cd Venturi = 𝑄 𝑎𝑐𝑡 𝑄 𝑚𝑒𝑠𝑢 → 484.4022 410.6096 = 1.17971 Orifice:- A1=21.16cm2 A2=3.142cm2 Time=51.61s P= hy h= 𝑝 𝑦 Qmesu=A2√ 2𝑔( 𝑝1−𝑝2 𝑦 ) (1− 𝐴2 2 𝐴1 2) → Qmesu=A2 √ 2𝑔(ℎ1−ℎ2) (1− 𝐴2 2 𝐴1 2) Qmesu=3.142 √ 2(981)(37.2−14.2) (1− 3.1422 21.162) =675.26cm3 Cd Orifice = 𝑄 𝑎𝑐𝑡 𝑄 𝑚𝑒𝑠𝑢 → 484.4022 675.26 = 0.71735
  • 12. Table of calculation:- Discussion:- 1/ is the ratio of the actual discharge to the ideal discharge, assuming unit coefficients of contraction and velocity, equal to the product of these coefficients. --Coefficient of discharge is stated as the ratio between the actual flow discharge and theoretical flow discharge. It is also referred to as the ratio of mass flow rate at nozzle's discharge edge to the No. Qact )/s3 (cm Rotameter Venture meter Orifice meter Qrot (liter/min) Qact )/s3 (cm Qi )/s3 (cm Cd Qi )/s3 (cm Cd 1 225.855 9.9 165 199.58484 1.1316 311.5 0.725056 2 340.3675 16 266.6667 293.5181 1.1584 476.959 0.71362 3 484.4022 22.2 370 410.6096 1.17971 675.2 0.71735
  • 13. standard nozzle which enlarges an exact working fluid maintained at the similar initial conditions and pressures. It has no dimensions and depends directly on the rate of flow and velocity of working fluid. It is symbolized by Cd and its value is different for each fluid depending on the kind of measurement of flow. In nozzle flow measurement, the efficiency of Cd is higher when compared to the flow measurement at the orifice. The discharge coefficient is raised by increasing the overall pressure ratio and reducing the convergence semi angle. Also, the range of Cd is commonly superior in supercritical series. Express the relation of discharge coefficient. 2/ 0 50 100 150 200 250 300 350 400 450 500 5 7 9 11 13 15 17 19 21 23 25 Qrot Qact
  • 14. 3/ Venturi 0 50 100 150 200 250 300 350 400 450 500 550 600 1.11 1.115 1.12 1.125 1.13 1.135 1.14 1.145 1.15 1.155 1.16 1.165 1.17 1.175 1.18 1.185 1.19 1.195 1.2 Qact Cd