|
Offering Training
|
|
|
Reliability Centered Maintenance
|
|
|
DESCRIPTION
|
|
|
This
course teaches the fundamentals of Reliability-Centered Maintenance (RCM).
The course is not process specific but gives the participant the fundamental
tools and knowledge required to participate in any RCM analysis process. As
an intermediate level course, the course will use statistical analysis,
life-cycle cost analysis, and an understanding of equipment failure
characteristics to achieve an optimal maintenance program that meets specified
safety, environmental, and economic goals. Participants will learn to
preserve equipment functions by identifying appropriate preventive
maintenance (PM) tasks, predictive maintenance (PdM) tasks, failure finding
tasks and other actions that protect against failure or mitigate the
consequences of failure. Examples and exercises give participants hands on
experience to help them begin to master RCM concepts.
|
|
|
WHO SHOULD ATTEND
|
|
|
·
Maintenance Manager/ Superintendent/
Supervisor/ Engineer
·
Plant Manager/ Superintendent/ Supervisor/
Engineer
·
Operation Manager/ Superintendent/ Supervisor/
Engineer
·
Everybody or professional who want to get
benefit or broaden knowledge from this course
|
|
|
SUMMARY OUTLINE
|
|
|
INTRODUCTION TO RCM CONCEPTS
1. RCM
terminology
2. Fundamental
RCM philosophies
RCM ANALYSIS PREPARATION
1. Identifying
and allocating resources for a RCM program
2. Preparing for
an RCM analysis
3. Techniques
for prioritizing systems for analysis
FMECA FOR RCM
1. Failure Modes
and Effects analysis for RCM
2. Evaluating
failure consequences
STATISTICS IN RCM
1. Statistical
principles used in RCM
2. Use of
Weibull analysis in RCM processes
SELECTING MAINTENANCE TASKS
1. How to select
preventive maintenance tasks and intervals
2. How to select
predictive maintenance tasks and intervals
3. How to select
failure finding tasks and intervals
OTHER FUNCTION PRESERVATION STRATEGIES
1. What other
function protective actions are available
2. When
run-to-failure is appropriate
PACKAGING AND IMPLEMENTING RCM RESULTS
1. Packaging and
implementing RCM analysis results
2. When to use a
subject matter expert team
3. Barriers to
implementation and getting buy-in
from all
levels
|
|
|
COURSE METHOD
|
COURSE SPEAKER
|
|
v
Presentation
v
Discuss
v
Case
Study
v
Evaluation
v Simulation
|
Lukmandono,
ST,MT (PhD Cand) and Team
Pengalaman sebagai praktisi, dan aktif sebagai akademisi
di UGM Yogyakarta, Pengalaman Trainer
dan Konsultan untuk perusahaan Swasta dan BUMN
|
|
TIME & VENUE
|
COURSE FEE
|
|
Hotel
Jentra Jl. Dagen 85 Malioboro
Yogyakarta
Telp
(0274580789)
21-24
Mei 2013
4 days
08
am – 04 pm
|
IDR 7,000,000.00 per participant non residential
Course fees can be transferred to the following account
number :
CV JP CONSULTANT : MANDIRI Bank Yogyakarta Branch Acc. No. 1370007857077
Disc 5% untuk Peserta Minimal 2 orang dari
perusahaan yangsama.
|
|
FACILITY
|
INFORMATION AND REGISTRATION
|
|
¨ Module / Handout
¨ Certificate
¨ Souvenir
¨ Training Kit
|
JP Consultant
Kalibayem No. 436 Ngestiharjo Kasihan Bantul Yogyakarta
Phone :
02743326339
Email : jpconsultantyogyakarta@gmail.com
Website
: www.jptrainingcenter.com
Contact
: Sari (08122758271)
Damiri (081944111699)
Tina (085741853818)
|
HUBUNGI JP CONSULTANT TRAINING Email:jpconsultantyogyakarta@gmail.com (HP : 0858 0192 3155/ 0853 7699 2793 WA : 0822 4260 1950 ; Pin BB : duta 123 )dengan Judul PELATIHAN SDM, ENGINEERING, KONSULTASI, INHOUSE TRAINING, REGULER TRAINING, SERTIFIKASI DEPNAKERTRANS RI, QUALITY, PURNAKARYA DAN PURNATUGAS,ISO 9000, ISO 14001:2004, ISO 18001:2007, INFORMASI training 2018, jadwal training 2018, INFOSEMINAR,SIO DEPNAKERTRANS RI
Reliability Centered Maintenance - Yogyakarta
Power System Protection and Relay Coordination - Yogyakarta
|
Offering Training
|
|
|
Power System Protection and Relay
Coordination
|
|
|
DESCRIPTION
|
|
|
The
training in the principles and methods used to perform protective device
coordination studies for low voltage through distribution level power systems
with or without software. This is one of the few courses that is not merely a
software training course. Specifically designed for industrial and government
engineers that want knowledge of the principles of protective device
coordination but also practical knowledge of how to achieve reasonable and
economical device coordination.
The
only course which can cover both national codes and standards and government
criteria that affect coordination philosophies. Covers concepts, procedures,
and guidance not covered in other courses in the industry. Examples will
include critical systems fed from emergency generators and uninterruptible
power supplies (UPS).
|
|
|
WHO SHOULD ATTEND
|
|
|
Utility
engineers, consultants (especially those involved with IPP/DG design),
equipment/control engineers, generator packager and manufacturer engineers as
well as others who specify protective relays and develop settings for these
devices.
|
|
|
SUMMARY OUTLINE
|
|
|
1. System
Analysis
v
Fault Current and Load Flow Calculations Using
Computer Software
v
Remote Effects Of Faults
v
Hand calculation method discussion
2. Protective
Device Coordination Principles
v
Graphical Tools and Time/Current Curve
Interpretation
v
Load Flow and Unbalanced Fault Effects
v
Cold Load Pickup
v
Grounding System Constraints
v
Coordination Economics
v
Asymmetrical Current Impacts
v
Coordination Time Intervals of Relays
v
Transformer Effects on Coordination
3. Equipment
and Device Characteristics
v
Fuses –including current limiting fuses
v
Molded case and Insulated Case Breakers
v
Solid-State Trip Low Voltage Breakers
v
Equipment Damage Characteristics
v
Proper Protective Device Selection
v
Circuit Breaker Ratings and Selection
v
Low Voltage Cable Protection
v
Shielded Cable Protection
v
Overhead Conductor Protection
v
Motor Protection
v
Generator Protection
v
Transformer Protection
v
Panelboard and Switchgear Protection
v
Inverse Time/Overcurrent Protective Relays and
v
Instantaneous Trip Devices
v
Series Rated Breakers
v
Differential and Voltage Constrained Relays
v
Reclosing relays, reclosers, and
sectionalizers
v
Current transformer characteristics and
selection
4. Ground
Fault Protection
v
Arcing Ground Fault Magnitudes
v
Ground Fault Protection Schemes
v
Interaction Of Ground Fault Relays And Phase
v
Overcurrent Devices
5. Emergency
Power System Design
v
Weak Source Systems
v
Generator Fault Characteristics
v
Uninterruptible Power Supply Fault
Characteristics
v
Transfer and Static Switch Limitations
v
Improving Emergency Circuit Design
6. Common
Coordination Problems, Errors, And Misconceptions
7. Preliminary
System One-line Development for a Coordinated System
Lessons Learned and “ Rules of Thumb” to spot uncoordinated
systems and methods to develop a coordinated system design
8. Criteria
Impacting Coordination
v
NESC, IEEE Std C2,
v
NFPA 70-National Electrical Code
v
Arc Flash Protection of Employees
9. Switchgear And Relay Commissioning
Including Optional Hands-On Student Calibration of a Relay
|
|
|
COURSE METHOD
|
COURSE SPEAKER
|
|
v
Presentation
v
Discuss
v
Case
Study
v
Evaluation
v Simulation
|
Teguh Santoso, Ir
Teguh Santoso experienced more than 27 years in Electrical.
|
|
TIME & VENUE
|
COURSE FEE
|
|
Jentra
Dagen Hotel Jalan Dagen 85 (Malioboro) Yogyakarta
27
– 30 May 2013
4 days
08
am – 04 pm
|
IDR 7,000,000.00 per participant non residential
Course fees can be transferred to the following account
number :
CV JP CONSULTANT : MANDIRI Bank Yogyakarta Branch Acc. No. 1370007857077
|
|
FACILITY
|
INFORMATION AND REGISTRATION
|
|
¨ Module / Handout
¨ Certificate
¨ Souvenir
¨ Training Kit
|
JP Consultant
Kalibayem No. 436 Ngestiharjo Kasihan Bantul Yogyakarta
Phone :
02743326339
Email : jpconsultantyogyakarta@gmail.com
Contact
: Sari (08122758271)
Damiri (081944111699)
Tina
(085741853818)
|
Langganan:
Postingan (Atom)