Course Objectives of Rotating Equipment Start UP and Maintenance
Have an understanding of the different types of compressors, Pumps, Motors, & Variable Speed Drives
Be able to operate Compressors, Pump, Motor, & Variable Speed Drives as close as possible to the design efficiency
Will be able to monitor Compressors, Pumps, Motors, & Variable Speed Drives' efficiency, availability and reliability
Have learnt about selection, operation and maintenance strategies
Be able to troubleshoot Compressors, Pumps, Motors, & Variable Speed Drives' problem
Compressor Types: positive displacement (reciprocating and rotary). and dynamic (centrifugal and rotary), compressor operating, gas laws
Compressor performance measurement, inlet conditions, compressor performance, energy available for recovery
Positive displacement compressors, reciprocating compressors, reciprocating compressors, diaphragm compressors
Rotary compressors, rotary screw compressor, lobe type air compressor, sliding vane compressor, liquid ring compressors
Dynamic compressors, centrifugal compressors, axial compressors
Air receivers, compressor control, compressor unloading system
Intercoolers and after-coolers, filters and air intake screens
Centrifugal & Axial Compressors
Principal of operation of centrifugal and axial flow compressors, characteristics of centrifugal and axial flow compressor
Surging choking, bleed, valves, variable stator vanes, inlet guide vanes
Compressors System Calculations
Affinity laws for centrifugal compressors
Calculation of air leaks from compressed-air-systems, annual cost of air leakage
Centrifugal compressor power requirement
Compressor selection, calculations of air system requirements
Characteristics of reciprocating compressors and blowers
Selection of air distribution system, water cooling requirement for compressors
Sizing of compressor system components, sizing of air receiver
Calculation of receiver pump-up-time
Pump
Pump definition, pump categories: dynamic and displacement reciprocating & Rotary
Centrifugal pumps: theory of operation of a centrifugal pump, casing and diffusers, radial thrust, hydrostatic pressure tests
Impeller, axial thrust in multistage pumps, hydraulic balancing devices, balancing drums, balancing disks
Centrifugal pumps general performance characteristics, cavitations, net positive suction head and requirements
Types of bearing, ball and roller bearing, stresses during rolling contacts
Statistical nature of bearing life, materials and finish, sizes of bearing, types of rolling bearings, thrust
Bearings
Used oil Analysis: proper lube oil sampling technique, test description and significance, visual and sensory inspections, chemical and physical tests, water content, viscosity, emission spectrographic analysis, infrared analysis, total base number (TBN), total acid number (TAN), particle count, summary
Reciprocating pumps, piston pumps, plunger pump, rotary pumps, screw pumps, lobe pump
Cam pumps, vance pumps, metering pumps
Pump Selection
Engineering of system requirements, fluid type, system head curves, alternate modes of operation, margins, wear, future system changes
Selection of pump and driver, pump characteristics, code requirements, fluid characteristics, pump materials, driver type terms, special considerations, performance testing, pump drivers
Pump specifications, specification types, datasheet, codes and standards, bidding documents, technical specification, commercial terms, special considerations, performance testing, pump drivers
Special control requirements, drawing and data requirements form, quality assurance and quality control, bidding and negotiation
Public and private sector, bid list, evaluation of bids, cost, efficiency, economic life, spare, parts, guarantee/warranty, simple bid evaluation
Basic components, temperature control, seal lubrication/leakage, typical single inside pusher seal
Maintenance recommended on centrifugal pumps, recommended pump maintenance
Vibration Analysis & Predictive Maintenance
Vibration instrumentation, velocity transducer, acceleration transducer, transducer selection, time domain, frequency domain, machinery example, vibration analysis
Vibration causes, forcing frequency causes, unbalance, misalignment, mechanical looseness, bearing defects, gear defects, oil whirl, blade or vane problems electric motor defects, uneven loading, drive-shaft torsion
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