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Название Flow of fluids through piping systems , valves and pumps
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001 Introduction.en.srt 4.44Кб
001 Introduction.mp4 35.97Мб
002 About Flow Of Fluids Excel Workbook.en.srt 1.42Кб
002 About Flow Of Fluids Excel Workbook.mp4 20.60Мб
003 Before you start this course.en.srt 2.67Кб
003 Before you start this course.mp4 13.35Мб
004 Introduction.en.srt 2.62Кб
004 Introduction.mp4 15.33Мб
005 Viscosity.en.srt 3.47Кб
005 Viscosity.mp4 25.24Мб
006 Kinematic viscosity.en.srt 3.60Кб
006 Kinematic viscosity.mp4 27.66Мб
007 PRACTICE SESSION _ Determining viscosity using Flow of Fluids Excel Workbook.en.srt 5.54Кб
007 PRACTICE SESSION _ Determining viscosity using Flow of Fluids Excel Workbook.mp4 45.69Мб
008 Weight density of liquids.en.srt 527б
008 Weight density of liquids.mp4 1.93Мб
009 PRACTICE SESSION _ Weight density of liquids using Flow of Fluids Excel Workbook.en.srt 3.33Кб
009 PRACTICE SESSION _ Weight density of liquids using Flow of Fluids Excel Workbook.mp4 42.19Мб
010 Specific volume.en.srt 980б
010 Specific volume.mp4 6.51Мб
011 Weight density of gases and vapors.en.srt 1.06Кб
011 Weight density of gases and vapors.mp4 8.38Мб
012 PRACTICE SESSION _ Weight density of gases using Flow of Fluids Excel Workbook.en.srt 4.68Кб
012 PRACTICE SESSION _ Weight density of gases using Flow of Fluids Excel Workbook.mp4 49.38Мб
013 Specific gravity.en.srt 1.35Кб
013 Specific gravity.mp4 4.08Мб
014 PRACTICE SESSION _ Specific gravity using Flow of Fluids Excel Workbook.en.srt 2.42Кб
014 PRACTICE SESSION _ Specific gravity using Flow of Fluids Excel Workbook.mp4 20.74Мб
015 Vapor pressure.en.srt 3.11Кб
015 Vapor pressure.mp4 26.14Мб
016 PRACTICE SESSION_ Determining vapor pressure using Flow of Fluids Excel Workbook.en.srt 6.70Кб
016 PRACTICE SESSION_ Determining vapor pressure using Flow of Fluids Excel Workbook.mp4 87.62Мб
017 More charts and diagrams - The Chemical Engineer's Reference Folder.en.srt 2.08Кб
017 More charts and diagrams - The Chemical Engineer's Reference Folder.mp4 33.23Мб
018 Introduction.en.srt 2.89Кб
018 Introduction.mp4 22.74Мб
019 Mean velocity of flow.en.srt 718б
019 Mean velocity of flow.mp4 3.45Мб
020 PRACTICE SESSION _ Velocity of flow using Flow of Fluids Excel Workbook.en.srt 5.13Кб
020 PRACTICE SESSION _ Velocity of flow using Flow of Fluids Excel Workbook.mp4 70.73Мб
021 Reynolds number (Re).en.srt 1.57Кб
021 Reynolds number (Re).mp4 8.95Мб
022 PRACTICE SESSION _ Reynolds number using Flow of Fluids Excel Workbook.en.srt 1.76Кб
022 PRACTICE SESSION _ Reynolds number using Flow of Fluids Excel Workbook.mp4 14.90Мб
023 Bernoulli's theorem.en.srt 1.83Кб
023 Bernoulli's theorem.mp4 8.75Мб
024 Measurement of pressure.en.srt 1.11Кб
024 Measurement of pressure.mp4 4.03Мб
025 Introduction.en.srt 2.33Кб
025 Introduction.mp4 8.97Мб
026 Friction factor.en.srt 5.89Кб
026 Friction factor.mp4 41.31Мб
027 Friction factor using the Colebrook equation.en.srt 508б
027 Friction factor using the Colebrook equation.mp4 3.15Мб
028 Explicit approximations of Colebrook.en.srt 1.07Кб
028 Explicit approximations of Colebrook.mp4 4.12Мб
029 PRACTICE SESSION_ Friction factor using Flow of Fluids Excel Workbook.en.srt 5.21Кб
029 PRACTICE SESSION_ Friction factor using Flow of Fluids Excel Workbook.mp4 39.85Мб
030 Hazen-Williams formula for flow of water.en.srt 999б
030 Hazen-Williams formula for flow of water.mp4 4.75Мб
031 PRACTICE SESSION_ Hazen-Williams using Flow of Fluids Excel Workbook.en.srt 1.57Кб
031 PRACTICE SESSION_ Hazen-Williams using Flow of Fluids Excel Workbook.mp4 11.09Мб
032 Effect of age and use on pipe friction.en.srt 5.45Кб
032 Effect of age and use on pipe friction.mp4 31.10Мб
033 Introduction.en.srt 1.40Кб
033 Introduction.mp4 5.28Мб
034 Definition of a perfect gas.en.srt 1.65Кб
034 Definition of a perfect gas.mp4 7.60Мб
035 Speed of sound and Mach number.en.srt 1.67Кб
035 Speed of sound and Mach number.mp4 4.52Мб
036 Approaches to compressible flow problems.en.srt 1.79Кб
036 Approaches to compressible flow problems.mp4 4.68Мб
037 Application of the Darcy equation to compressible fluids.en.srt 1.75Кб
037 Application of the Darcy equation to compressible fluids.mp4 6.99Мб
038 Complete isothermal equation.en.srt 1.50Кб
038 Complete isothermal equation.mp4 7.31Мб
039 Simplified isothermal gas pipeline equation.en.srt 1.38Кб
039 Simplified isothermal gas pipeline equation.mp4 9.14Мб
040 Other commonly used equations for compressible flow in long pipelines.en.srt 1.80Кб
040 Other commonly used equations for compressible flow in long pipelines.mp4 12.78Мб
041 Comparison of equations for compressible flow in pipelines.en.srt 4.09Кб
041 Comparison of equations for compressible flow in pipelines.mp4 24.80Мб
042 Modifications to the isothermal flow equation.en.srt 7.18Кб
042 Modifications to the isothermal flow equation.mp4 40.58Мб
043 Limiting flow of gases and vapors.en.srt 6.49Кб
043 Limiting flow of gases and vapors.mp4 31.25Мб
044 PRACTICE SESSION_ Expansion factor _Y_ & ∆P using Flow of Fluids Excel Workbook.en.srt 6.93Кб
044 PRACTICE SESSION_ Expansion factor _Y_ & ∆P using Flow of Fluids Excel Workbook.mp4 52.95Мб
045 Introduction.en.srt 2.52Кб
045 Introduction.mp4 15.44Мб
046 Types of valves used in piping systems.en.srt 830б
046 Types of valves used in piping systems.mp4 9.65Мб
047 Types of fittings used in piping systems.en.srt 931б
047 Types of fittings used in piping systems.mp4 5.53Мб
048 Pressure drop attributed to valves and fittings.en.srt 3.47Кб
048 Pressure drop attributed to valves and fittings.mp4 14.64Мб
049 Relationship of pressure drop to velocity of flow.en.srt 4.32Кб
049 Relationship of pressure drop to velocity of flow.mp4 18.86Мб
050 Hydraulic resistance.en.srt 1.30Кб
050 Hydraulic resistance.mp4 5.92Мб
051 Causes of head loss in valves and fittings.en.srt 1.47Кб
051 Causes of head loss in valves and fittings.mp4 9.41Мб
052 Equivalent length _L_D_.en.srt 1.40Кб
052 Equivalent length _L_D_.mp4 10.02Мб
053 Resistance coefficient _K_.en.srt 2.52Кб
053 Resistance coefficient _K_.mp4 10.19Мб
054 Resistance coef. K for pipelines, valves and fittings in series and in parallel.en.srt 2.02Кб
054 Resistance coef. K for pipelines, valves and fittings in series and in parallel.mp4 9.33Мб
055 Flow coefficient _Cv_.en.srt 1.76Кб
055 Flow coefficient _Cv_.mp4 8.72Мб
056 Use of flow coefficient _Cv_ for piping and components.en.srt 2.59Кб
056 Use of flow coefficient _Cv_ for piping and components.mp4 11.89Мб
057 Flow coefficient Cv for pipelines, valves and fittings in series and in parallel.en.srt 638б
057 Flow coefficient Cv for pipelines, valves and fittings in series and in parallel.mp4 1.95Мб
058 Laminar flow conditions.en.srt 2.48Кб
058 Laminar flow conditions.mp4 25.45Мб
059 Contraction and enlargement.en.srt 1.02Кб
059 Contraction and enlargement.mp4 4.02Мб
060 PRACTICE SESSION_ Contraction & enlargement using Flow of Fluids Excel Workbook.en.srt 4.96Кб
060 PRACTICE SESSION_ Contraction & enlargement using Flow of Fluids Excel Workbook.mp4 27.22Мб
061 Valves with reduced seats.en.srt 2.60Кб
061 Valves with reduced seats.mp4 18.16Мб
062 PRACTICE SESSION_ Valve resistance coef. _K_ using Flow of Fluids Excel Workbook.en.srt 1.76Кб
062 PRACTICE SESSION_ Valve resistance coef. _K_ using Flow of Fluids Excel Workbook.mp4 11.03Мб
063 Resistance of bends.en.srt 6.78Кб
063 Resistance of bends.mp4 29.62Мб
064 PRACTICE SESSION_ Resistance of bends using Flow of Fluids Excel Workbook.en.srt 1.74Кб
064 PRACTICE SESSION_ Resistance of bends using Flow of Fluids Excel Workbook.mp4 12.07Мб
065 Hydraulic resistance of Tees and Wyes.en.srt 2.82Кб
065 Hydraulic resistance of Tees and Wyes.mp4 14.64Мб
066 Hydraulic resistance of Tees and Wyes _ Converging flow.en.srt 1.29Кб
066 Hydraulic resistance of Tees and Wyes _ Converging flow.mp4 7.99Мб
067 Hydraulic resistance of Tees and Wyes _ Diverging flow.en.srt 1.36Кб
067 Hydraulic resistance of Tees and Wyes _ Diverging flow.mp4 6.54Мб
068 PRACTICE SESSION_ Resistance of _T_ and _Y_ using Flow of Fluids Excel Workbook.en.srt 3.10Кб
068 PRACTICE SESSION_ Resistance of _T_ and _Y_ using Flow of Fluids Excel Workbook.mp4 22.41Мб
069 Discharge of fluids through valves, fittings and pipe.en.srt 1.70Кб
069 Discharge of fluids through valves, fittings and pipe.mp4 8.20Мб
070 Introduction.en.srt 5.01Кб
070 Introduction.mp4 27.64Мб
071 Valve components.en.srt 1.98Кб
071 Valve components.mp4 18.12Мб
072 Inherent characteristic curve.en.srt 1.20Кб
072 Inherent characteristic curve.mp4 6.83Мб
073 Installed characteristic curve.en.srt 1.31Кб
073 Installed characteristic curve.mp4 7.05Мб
074 Pressure, Velocity and Energy profiles through a control valve.en.srt 1.68Кб
074 Pressure, Velocity and Energy profiles through a control valve.mp4 8.78Мб
075 Cavitation, Choked Flow and Flashing.en.srt 5.33Кб
075 Cavitation, Choked Flow and Flashing.mp4 33.69Мб
076 Sizing and selection.en.srt 1.66Кб
076 Sizing and selection.mp4 6.05Мб
077 Sizing for INcompressible flow.en.srt 6.65Кб
077 Sizing for INcompressible flow.mp4 43.76Мб
078 Sizing for compressible flow.en.srt 4.29Кб
078 Sizing for compressible flow.mp4 22.76Мб
079 Conversion of Cv to Kv.en.srt 236б
079 Conversion of Cv to Kv.mp4 1.39Мб
080 Introduction.en.srt 2.13Кб
080 Introduction.mp4 9.20Мб
081 Orifices, Nozzles and Venturi Tubes.en.srt 7.48Кб
081 Orifices, Nozzles and Venturi Tubes.mp4 67.44Мб
082 Orifice plate.en.srt 2.69Кб
082 Orifice plate.mp4 11.02Мб
083 Limits of use of orifice plates.en.srt 1.76Кб
083 Limits of use of orifice plates.mp4 7.94Мб
084 Flow nozzle.en.srt 2.80Кб
084 Flow nozzle.mp4 16.07Мб
085 Limits of use of flow nozzles.en.srt 1.47Кб
085 Limits of use of flow nozzles.mp4 10.61Мб
086 Venturi meter.en.srt 2.98Кб
086 Venturi meter.mp4 17.34Мб
087 Limits of use of Venturi meters.en.srt 1.40Кб
087 Limits of use of Venturi meters.mp4 10.80Мб
088 Introduction.en.srt 2.51Кб
088 Introduction.mp4 13.14Мб
089 Differential pressure and pressure loss.en.srt 2.38Кб
089 Differential pressure and pressure loss.mp4 13.27Мб
090 Pressure loss coefficient.en.srt 517б
090 Pressure loss coefficient.mp4 2.18Мб
091 Rate of flow and flow coefficient _C_.en.srt 2.56Кб
091 Rate of flow and flow coefficient _C_.mp4 16.52Мб
092 Discharge coefficient _Cd_ _ Definition.en.srt 741б
092 Discharge coefficient _Cd_ _ Definition.mp4 4.02Мб
093 Discharge coefficient _Cd_ _ Orifice plates.en.srt 2.14Кб
093 Discharge coefficient _Cd_ _ Orifice plates.mp4 13.95Мб
094 Discharge coefficient _Cd_ _ Flow nozzles.en.srt 444б
094 Discharge coefficient _Cd_ _ Flow nozzles.mp4 2.71Мб
095 Discharge coefficient _Cd_ _ Venturi meters.en.srt 968б
095 Discharge coefficient _Cd_ _ Venturi meters.mp4 5.13Мб
096 PRACTICE SESSION_ Discharge coefficient _Cd_ using flow of fluids excel workbook.en.srt 5.05Кб
096 PRACTICE SESSION_ Discharge coefficient _Cd_ using flow of fluids excel workbook.mp4 36.13Мб
097 Flow of gases and Net Expansibility Factor _Y_.en.srt 2.74Кб
097 Flow of gases and Net Expansibility Factor _Y_.mp4 17.52Мб
098 2020-2021-Course-release-schedule.pdf 1.32Мб
098 2020-Affiliate-Program.pdf 1.03Мб
098 2020-Company-profile.pdf 2.42Мб
098 Bonus.pdf 522.82Кб
098 Charts-Diagrams.pdf 1.67Мб
098 Downloadable resources.en.vtt
098 Downloadable resources.mp4 1.19Мб
098 Flow-of-Fluids-Solved-problems.pdf 2.29Мб
098 Pump-catalog.pdf 26.14Мб
098 Summary-of-course-formulas.pdf 4.16Мб
098 Table-of-content-Flow-of-Fluids-Excel-Workbook.pdf 537.17Кб
098 Table-of-content-The-chemical-engineers-reference-folder.pdf 1.47Мб
098 Valve-catalog.pdf 810.37Кб
099 BONUS - WATCH ME.mp4 7.74Мб
100 About this flow problems section.en.srt 2.23Кб
100 About this flow problems section.mp4 10.52Мб
101 Example #1 _ Determining Reynolds Number (Re) and Friction Factor (f).en.srt 6.65Кб
101 Example #1 _ Determining Reynolds Number (Re) and Friction Factor (f).mp4 48.63Мб
102 Example #2 _ Y pattern valve resistance coefficient & equivalent lengths.en.srt 6.12Кб
102 Example #2 _ Y pattern valve resistance coefficient & equivalent lengths.mp4 42.82Мб
103 Example #3 _ Globe valve resistance K, equivalent lengths & flow coefficient Cv.en.srt 4.25Кб
103 Example #3 _ Globe valve resistance K, equivalent lengths & flow coefficient Cv.mp4 23.57Мб
104 Example #4 _ Gate valve resistance coef. _K_ & equivalent lengths _L_D_ & _L_.en.srt 2.93Кб
104 Example #4 _ Gate valve resistance coef. _K_ & equivalent lengths _L_D_ & _L_.mp4 18.82Мб
105 Example #5 _ Sizing lift check valves.en.srt 11.64Кб
105 Example #5 _ Sizing lift check valves.mp4 63.52Мб
106 Example #6 _ Fluid velocity and rate of discharge through a ball valve.en.srt 10.70Кб
106 Example #6 _ Fluid velocity and rate of discharge through a ball valve.mp4 72.00Мб
107 Example #7 _ Laminar flow in valves, fittings and pipe #1.en.srt 16.90Кб
107 Example #7 _ Laminar flow in valves, fittings and pipe #1.mp4 111.27Мб
108 Example #8 _ Laminar flow in valves, fittings and pipe #2.en.srt 9.46Кб
108 Example #8 _ Laminar flow in valves, fittings and pipe #2.mp4 51.82Мб
109 Example #9 _ Determining pressure drop in a piping system.en.srt 10.03Кб
109 Example #9 _ Determining pressure drop in a piping system.mp4 70.52Мб
110 Example #10 _ Sizing an orifice for a given pressure drop and fluid velocity.en.srt 19.90Кб
110 Example #10 _ Sizing an orifice for a given pressure drop and fluid velocity.mp4 122.24Мб
111 Example #11 _ Bernoulli's Theorem - Pressure drop and fluid velocity.en.srt 17.93Кб
111 Example #11 _ Bernoulli's Theorem - Pressure drop and fluid velocity.mp4 101.63Мб
112 Example #12 _ Process air - Pressure drop and velocity.en.srt 7.73Кб
112 Example #12 _ Process air - Pressure drop and velocity.mp4 79.83Мб
113 Example #13 _ Sizing a centrifugal pump for oil pipelines.en.srt 11.14Кб
113 Example #13 _ Sizing a centrifugal pump for oil pipelines.mp4 65.67Мб
114 Example #14 _ Flow of natural gas through pipelines.en.srt 10.71Кб
114 Example #14 _ Flow of natural gas through pipelines.mp4 73.54Мб
115 Example #15 _ Water discharging from a reservoir.en.srt 13.09Кб
115 Example #15 _ Water discharging from a reservoir.mp4 73.74Мб
116 Example #16 _ Gas flow at sonic velocity through pipe.en.srt 12.25Кб
116 Example #16 _ Gas flow at sonic velocity through pipe.mp4 70.75Мб
TutsNode.com.txt 63б
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