Steam Systems Design Sizing Operation Mtce & Optimization

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Free Download Steam Systems Design Sizing Operation Mtce & Optimization
Last updated 3/2024
Created by WR Training
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English | Duration: 141 Lectures ( 8h 14m ) | Size: 4.13 GB

A complete understanding of steam and condensate systems for successful, efficient and safe operation of your plant
What you'll learn:
Understand the science behind modern steam engineering
Acquire a solid foundation for understanding the principles and practices relating to steam
Delve into the physics that lies behind steam
Understand the triple point, saturated steam tables, steam dryness, and what is flash steam
Explore why superheated steam is used, the superheated steam table, and its pros and cons
Learn about the properties that ensure steam works effectively, why noncondensable gasses matter, and what is a waterhammer and why they should be avoided
Understand how heat is transferred, the barriers to heat transfer, and the various equations needed to measure the efficiency of heat transfer
Estimate your steam needs, both in flow and non-flow applications
Calculate your steam consumption
Understand the concept of thermal rating and the factors you will need to consider when interpreting it
Calculate the amount of energy required for tanks and vessels
Understand the principle of operation of submerged steam coils and steam jackets
Understand how the pipes that carry steam affect your plant's efficiency
Understand the difference between warm-up and running loads, and know the calculations needed to measure heat losses
Know and understand what is the steam and condensate loop, the working pressure of a system, and see why pressure-reducing valves are used
Select the appropriate pipe size for saturated and superheated steam systems in accordance with international standards
Know how to use sizing equations, charts and tables to size your steam piping system
Understand the requirements for steam mains and drainage and what to look out for to avoid waterhammer
Understand the concept of steam pipe expansion allowance and discover the various methods of making sure your pipes are properly installed
Know the different types of steam traps, how they work, and the pros and cons of each
Understand why steam traps are important, how they operate and the standards applied to them
Be aware of the considerations for selecting steam traps
Successfully identify issues with steam traps and how they can impact your plant's performance
Demonstrate how little energy steam traps use
Examine routine maintenance, replacement of internal parts, and potentially replacing steam traps
Know the different types of strainers and how they work
Understand the hazards of steam for safe operation of your plant and piping systems
Test your knowledge with a 120+ question quiz
Download a valuable booklet containing steam tables, charts and engineering data
Requirements:
Some engineering or field knowledge is preferable but not mandatory. All the concepts are explained in depth using an easy to understand language to allow students to build their knowledge from the ground up
Having taken our below training courses is a plus but not mandatory
1. Designing Piping Systems: Pipe, Fittings, Flanges & Valves
2. Valves & Control Valves: Principles, Operation & Design
3. Heat Exchangers: Design, Operation & Maintenance
4. Flow of Fluids Through Piping Systems, Valves, Fittings and Pumps
Description:
The productivity and efficiency of a process plant depend as much on the plant equipment as it does on the steam and condensate system.As a result, it is essential that the design of your steam system be optimized, safely operated, properly maintained, and when required, repaired in an effective and timely manner.This course is designed to provide you with a complete understanding of design, sizing, operation, maintenance and optimization of steam and condensate systems.This understanding is a pre-requisite for a successful, efficient and safe operation of your plant and piping systems.The course provides a comprehensive engineering best practice guide covering all aspects of steam and condensate systems, from steam distribution up to the point of use, through the condensate recovery system.The course includes detailed technical descriptions, basic step-by-step instructions, extensive graphics, sizing tables, engineering data, end section quizzes and numerous solved problems to emphasize the key learning points.So with no further ado, check out the free preview videos and the curriculum of the course and we look forward to seeing you in the first section.Thank you for your interest in our online courses. Hope to see you there !WR TrainingSpread the wings of your knowledge
Who this course is for:
Piping Designers
Design Engineers
Process, Mechanical and Chemical Engineers
Operation and Maintenance Engineers
Plant Operators
Maintenance Personnel
Technical Personnel involved in inspection
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Download Free Download : Steam Systems Design Sizing Operation Mtce & Optimization
mp4 | Video: h264,1280X720 | Audio: AAC, 44.1 KHz
Genre:eLearning | Language: English | Size:4.13 GB

Files Included :
1 Course introduction.mp4 (23.67 MB)
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10 Process control.mp4 (30.88 MB)
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11 Condensate removal.mp4 (16.84 MB)
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12 Before you proceed to the next section.mp4 (2.7 MB)
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2 The boiler.mp4 (44.48 MB)
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3 Feedwater.mp4 (15.45 MB)
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4 Blowdown.mp4 (13.79 MB)
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5 Level control.mp4 (32.78 MB)
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6 The flow of steam to the plant.mp4 (22.58 MB)
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7 Steam quality.mp4 (53.6 MB)
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8 Pressure reduction.mp4 (7.84 MB)
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9 Steam at the point of use.mp4 (12.85 MB)
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1 Introduction.mp4 (35.13 MB)
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10 Before you proceed to the next section.mp4 (2.71 MB)
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2 Size of the steam bubbles.mp4 (6.86 MB)
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3 Head of liquid over steam injection point.mp4 (6.24 MB)
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4 Steam bubbles velocity.mp4 (4.84 MB)
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5 Temperature of the liquid.mp4 (5.15 MB)
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6 Sparge pipes.mp4 (5.44 MB)
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7 Example of heat consumption of tanks - part 3.mp4 (71.06 MB)
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8 Steam injectors.mp4 (25.67 MB)
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9 Example of heat consumption of tanks - part 4.mp4 (14.47 MB)
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1 Introduction to steam consumption of pipes.mp4 (11.56 MB)
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2 Steam mains.mp4 (6.27 MB)
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3 Warmin-up load.mp4 (46.29 MB)
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4 Running-up load.mp4 (61.4 MB)
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5 Before you proceed to the next section.mp4 (2.71 MB)
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1 Heat exchangers.mp4 (64.68 MB)
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2 More about shell and tube heat exchangers.mp4 (26.14 MB)
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3 More about plate and frame heat exchangers.mp4 (64.98 MB)
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4 Tracer lines.mp4 (24.93 MB)
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5 Sizing tracer lines.mp4 (28.78 MB)
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1 Introduction.mp4 (39.63 MB)
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10 Sizing a steam pipe Pressure factor method.mp4 (44.69 MB)
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11 Sizing a steam pipe Steam pipeline sizing chart.mp4 (29.09 MB)
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12 Sizing steam pipes on velocity Principles.mp4 (25.02 MB)
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13 Sizing steam pipes on velocity Worked example.mp4 (23.83 MB)
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14 Sizing superheated steam pipes.mp4 (67.6 MB)
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15 Sizing a steam pipe Using formulae and equations.mp4 (13.35 MB)
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16 Before you proceed to the next section.mp4 (2.71 MB)
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2 The working pressure.mp4 (36.7 MB)
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3 Pressure reduction.mp4 (15.49 MB)
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4 Standards and wall thickness.mp4 (19.05 MB)
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5 Pipe material.mp4 (4.87 MB)
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6 Pipe sizing.mp4 (27.99 MB)
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7 Worked example using the Moody chart.mp4 (28.02 MB)
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8 Oversized steam pipes.mp4 (9.13 MB)
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9 Undersized steam pipes.mp4 (14.09 MB)
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1 Introduction to steam mains and drainage.mp4 (19.3 MB)
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2 Piping layout.mp4 (29.43 MB)
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3 Waterhammer (reminder).mp4 (48.93 MB)
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4 Branch lines.mp4 (11.5 MB)
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5 Drop leg.mp4 (5.65 MB)
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6 How to drain steam mains.mp4 (44.11 MB)
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7 Steam leaks.mp4 (7.42 MB)
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8 Before you proceed to the next section.mp4 (2.7 MB)
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1 Allowance for expansion.mp4 (18.16 MB)
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2 Piping flexibility.mp4 (21.54 MB)
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3 Expansion fittings.mp4 (47.6 MB)
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4 Pipe support spacings.mp4 (18.68 MB)
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5 Before you proceed to the next section.mp4 (2.7 MB)
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1 Overview of steam traps.mp4 (8.15 MB)
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2 Floating traps.mp4 (27.57 MB)
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3 Thermostatic traps.mp4 (33.15 MB)
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4 Thermodynamic traps.mp4 (42.69 MB)
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5 Inverted bucket traps.mp4 (37.71 MB)
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6 Testing of steam traps.mp4 (31.19 MB)
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7 Maintenance of steam traps.mp4 (32.63 MB)
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8 Energy losses in steam traps.mp4 (92.07 MB)
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9 Before you proceed to the next section.mp4 (2.71 MB)
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1 Overview of strainers.mp4 (5.19 MB)
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2 Wye strainers.mp4 (18.21 MB)
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3 Basket strainers.mp4 (17.01 MB)
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4 Strainer screens.mp4 (16.21 MB)
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1 Introduction to hazards of steam.mp4 (22.76 MB)
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2 Purging with steam.mp4 (43.11 MB)
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3 Blanketing with steam.mp4 (45.43 MB)
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4 Hazards from condensing steam.mp4 (74.78 MB)
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5 Water from steam.mp4 (41.14 MB)
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6 Thermal expansion.mp4 (16.28 MB)
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7 Stresses in equipment.mp4 (14.09 MB)
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8 Before closing this course.mp4 (2.71 MB)
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1 Download me.mp4 (7.34 MB)
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1 Introduction.mp4 (7.52 MB)
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10 The steam phase diagram.mp4 (52.19 MB)
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11 Flash steam.mp4 (41.69 MB)
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12 Mass and energy conservation.mp4 (20.01 MB)
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13 Before you proceed to the next section.mp4 (2.71 MB)
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2 Triple point.mp4 (42.43 MB)
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3 Ice.mp4 (22.92 MB)
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4 Water.mp4 (10.86 MB)
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5 Steam.mp4 (66.16 MB)
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6 Enthalpy of evaporation.mp4 (9.2 MB)
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7 Enthalpy of saturated steam.mp4 (6.04 MB)
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8 Saturated steam tables.mp4 (36.63 MB)
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9 Dryness fraction.mp4 (32.12 MB)
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1 Introduction.mp4 (62.34 MB)
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2 Superheated steam tables.mp4 (81.73 MB)
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3 Superheated steam for heat transfer applications.mp4 (51.61 MB)
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4 Sizing example.mp4 (35.47 MB)
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5 The effect of reducing steam pressure.mp4 (100.28 MB)
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6 The Mollier chart.mp4 (42.78 MB)
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7 Steam expansion through a turbine.mp4 (42.11 MB)
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8 Before you proceed to the next section.mp4 (2.71 MB)
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1 Introduction.mp4 (3.81 MB)
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2 Correct quantity.mp4 (7.48 MB)
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3 Correct temperature and pressure.mp4 (9.33 MB)
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4 Air and other incondensable gases.mp4 (50.43 MB)
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5 Other sources of air in the steam and condensate systems.mp4 (21.15 MB)
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6 Cleanliness of steam.mp4 (43.52 MB)
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7 Dryness of steam.mp4 (28.96 MB)
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8 Waterhammer.mp4 (42.8 MB)
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9 Before you proceed to the next section.mp4 (2.7 MB)
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1 Modes of heat transfer.mp4 (77.32 MB)
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2 The overall heat transfer coefficient U.mp4 (7.73 MB)
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3 Temperature difference.mp4 (53.14 MB)
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4 Barriers to heat transfer.mp4 (84.46 MB)
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5 Temperature gradients across layers.mp4 (28.68 MB)
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6 Defining the overall heat transfer coefficient U.mp4 (169.58 MB)
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7 Before you proceed to the next section.mp4 (2.71 MB)
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1 Introduction.mp4 (15.21 MB)
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2 Calculation.mp4 (14.6 MB)
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3 Non-flow type applications.mp4 (47.45 MB)
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4 Flow type applications.mp4 (38.33 MB)
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5 Before you proceed to the next section.mp4 (2.72 MB)
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1 Steam flowmeter.mp4 (16.29 MB)
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2 Condensate pump.mp4 (10.49 MB)
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3 Collecting condensate.mp4 (22.71 MB)
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4 Thermal rating.mp4 (28.73 MB)
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5 Before you proceed to the next section.mp4 (2.69 MB)
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1 Introduction.mp4 (7.81 MB)
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2 Energy requirements.mp4 (64.44 MB)
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3 Example of heat consumption of tanks - part 1.mp4 (123.69 MB)
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4 Before you proceed to the next section.mp4 (2.7 MB)
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1 Introduction.mp4 (8.66 MB)
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2 Submerged steam coils.mp4 (39.18 MB)
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3 Example of heat consumption of tanks - part 2.mp4 (109.71 MB)
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4 Other steam coil layouts.mp4 (65.5 MB)
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5 Control valve arrangement.mp4 (86.21 MB)
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6 Steam jackets.mp4 (17.12 MB)
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7 Before you proceed to the next section.mp4 (2.72 MB)
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