MP4 | Video: h264, 1280×720 | Audio: AAC, 44.1 KHz
Language: English | Size: 857 MB | Duration: 2h 14m
Selection Criteria, Types And Performance Of Compressors, Compressed Air Performance Evaluation and Optimization.
What you’ll learn
You will learn how the Energy Consumption cost can be reduced up to 50% and up to 90% in some cases for compressed air systems,
Type of Compressors, their comparison and selection criteria according to specific requirement. Compressor performance and capacity assessment.
Energy Management System, Monitoring and targeting, Baseline for energy consumption, Energy Efficiency, case studies.
Compressed Air System Leakage calculations and testing, checklist for efficient compressed air system, Cause & effect diagrams and 5Y for system diagnosis
Requirements
Desire to learn
Description
This is an instant course to learn how one can save maximum up to 90% money on energy conservation for some tools & machine. This course provides power saving percentage in numbers for each factor affecting the compressed air system performance. Compressed air system components, factors affecting efficient compressed air system like location of the compressor, air intake, pressure drops, moisture, elevation (altitude level), cooling water circuit and cooling towers, water requirement for cooling towers, Efficacy of inter and after coolers, Pressure settings and throttling, power savings on pressure setting chart on pressure reduction, Efficient operation of multiple compressors connected to one header, minimum pressure drop in different sizes of pipes and fittings (Elbow, valve, tee etc.), Power saving by speed control and vane control, Power consumption chart for electric and pneumatic tools. Energy Definitions and energy management cycle as per ISO5001, Energy monitoring and targeting, Rationale for monitoring targeting and reporting, data and information analysis, Energy Aspect and Impact Analysis. Calculations and formulae for energy loss due to line leakage in terms of percentage leakage, quantity of leakage per hour and power lost in kilowatts due to line leakages. Explanation of compressor cut in pressure, cut out pressure, loading time, idle time and total cycle time. case study of air leakage and monetary loss. Planned and unplanned leakages, cost of leakage with respect to line diameter, relation between header pressure and leakages, effect of leakage on complete compressed air system performance, the most common potential areas for leakage, methods to detect the leakage. Classification of compressors, basic working principals and differences for all type of compressors, capacity range, Comprehensive comparison chart for- Reciprocating and rotary air compressors, Centrifugal and axial flow air compressors, reciprocation and centrifugal air compressors. other parameters for selection of compressor like oil free output, variable speed, natural gas compressors, portability and add on features. Compressor performance, capacity of compressor (FAD), compressor efficiency definitions, volumetric efficiency, isothermal efficiency, adiabatic efficiency, mechanical efficiency. calculations and formulae for isothermal, adiabatic and volumetric efficiencies, Compressor capacity assessment, simple method of capacity assessment in shop floor with example and comparison with rated capacity. Base line study for energy consumption for air compressors, calculation and formulae for base line calculations, observation sheet for energy consumption, explanation of sudden rise in energy consumption and tracking of root cause, definition of baseline calculations as dynamic document, Explanation of 5Y and fish bone analysis with examples. Check list for energy efficiency in compressed air systems, thumb rules for relation in-between energy consumption in certain conditions, misuses of compressed air, best practices to avid leakage, leakage plug in and air consumption.
Who this course is for
Industrial Manufacturing
Energy Saving
Compressed air users
Compressors
Industrial Plumbing work
Homepage
https://www.udemy.com/course/save-money-in-multiple-folds-by-energy-conservation/
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