• Selamat datang di website PT Fiqry Jaya Manunggal. Semoga anda senantiasa sehat afiat. Kami siap melayani anda
Beranda » Training » Engineering » Introduction to FEED (Front End Engineering Design)
zoom preview activate zoom

Introduction to FEED (Front End Engineering Design)

Rp 7.950.000
Stok Tersedia
Kategori Engineering, Project

18 – 20 Juni, 2025

Hotel Kimaya Braga, Bandung

Instructor: Ir. Deddy Nugraha

Tentukan pilihan yang tersedia!

Introduction to FEED (Front End Engineering Design)

BACKGROUND:

Front End Engineering Design (FEED) is a crucial phase in the development of large-scale engineering projects, particularly in industries like oil and gas, petrochemicals, power, and infrastructure. This phase occurs after the conceptual design and before the detailed engineering phase. FEED focuses on defining the project’s technical requirements and laying the groundwork for a successful execution by ensuring all necessary aspects are well-understood and documented.

FEED helps establish a well-defined scope, budget, schedule, and identifies risks, resulting in greater success during implementation, start-up, and beyond. By undertaking FEED at the beginning of your project, you can minimize your overall project risks.

Through a FEED, you can realize:

  • Lower lifecycle costs
  • Reduced project technical, schedule and cost risks
  • Faster time to achieve plant startup and turnover
  • Reduced EHS and compliance risks
  • Improved risk identification and mitigation

 

OBJECTIVES:

  • Understand the purpose and importance of the Front End Engineering Design (FEED) phase in project development.
  • Recognize the key differences between FEED, conceptual design, and detailed engineering.
  • Identify the major components and deliverables of the FEED phase, such as process flow diagrams (PFDs), equipment layouts, and preliminary cost estimates.
  • Grasp the basic steps involved in defining project scope and objectives during FEED.
  • Appreciate the role of FEED in minimizing risks, controlling costs, and ensuring project alignment with business goals.
  • Gain insights into how FEED influences subsequent project phases, including procurement and construction.
  • Learn best practices and basic strategies for applying FEED principles in real-world scenarios.

Course Outline

Introduction and Overview

Understanding FEED

  • Definition and purpose of FEED.
  • Role of FEED in the project lifecycle.
  • Key differences between FEED, conceptual design, and detailed engineering.

Key Elements of FEED

  • Overview of project scope and objectives.
  • Importance of aligning FEED with business and project goals.
  • Key deliverables of a FEED phase.

Simplified FEED Processes

Basics of Project Scope Definition

  • How to define project requirements.
  • Essential inputs for a successful FEED phase.

Introduction to FEED Deliverables

  • Overview of typical FEED outputs:
    • Process flow diagrams (PFDs).
    • Equipment lists and layouts.
    • Preliminary cost estimates.

Activity: Exercise on reviewing sample FEED deliverables.

FEED Best Practices and Practical Applications

Simplified Risk and Cost Overview

  • Basics of identifying risks in FEED.
  • Importance of preliminary cost estimation.

Transition from FEED to Execution

  • How FEED influences the detailed engineering phase.
  • Brief introduction to integrating FEED with procurement and construction.

Case Studies and Summary

  • Real-world examples of successful FEED implementation.
  • Key lessons learned from common FEED challenges.

Activity: Wrap-up discussion on how to apply FEED concepts in small-scale projects.

About The Course Leader

Ir. Deddy Nugraha, is a Senior Rotating Engineer and Asset Reliability specialist. Graduated from Mechanical Engineering Department, ITB (1990), and had advanced training in France and USA, for Gas turbine maintenance and repair. He brings extensive expertise in RCA and troubleshooting for Turbomachinery Equipment, as well as in Reliability philosophy, and serves as a SERIP instructor at Chevron-Riau. Additionally, he holds the position of General Secretary for both the Indonesian Reliability Society (ISR) and KMI.

Many consulting works has been conducted including in PT. Indonesia Power (Tambak Lorok, Suralaya, Perak), PT.IPMOMI Paiton, and, PT. PGN SBU TSJ and PT. Pertamina Gas, PT. HKS Humpus, and PT. Vale Indonesia. Operational excellence at PGN and railway safety management at the Minister of Transportation. Reliability Data collection in Geothermal Power plant Kamojang.

Introduction to FEED (Front End Engineering Design)

Produk Terkait

Project Management Using MS Project

LATAR BELAKANG Aktivitas proyek dapat terjadi di segala bidang di perusahaan, baik proyek fisik (infrastruktur) seperti proyek pembelian peralatan, pemasangan fasilitas, pendirian pabrik baru maupun non fisik seperti proyek pengembangan produk baru,perancangan struktur organisasi, pembuatan sistem informasi manajemen dan peningkatan produktivitas perusahaan. Realitas di lapangan menunjukkan bahwa sering terjadi kegagalan dalam menjalankan proyek disebabkan oleh…

Rp 7.950.000
Tersedia

Perhitungan Heat Rate Pembangkit Menggunakan In-house Software

PENDAHULUAN: Heat rate merupakan salah satu parameter kinerja pada pembangkit. Pemahaman heat rate sangat diperlukan bagi karyawan yang bekerja di pembangkit. Pemahaman pengukuran parameter untuk menentukan heat rate, interprestasi data, menganalisis hasil perhitungan, menentukan heat rate pembangkit, bahkan menentukan perbaikan heat rate amat diperlukan. Sumber masalah kinerja pembangkit atau degradasi kinerja pembangkit dapat juga diketahui…

Rp 7.950.000
Tersedia

Non-Destructive Examination (NDE)

BACKGROUND: Non-Destructive Examination (NDE) adalah metode inspeksi yang digunakan secara luas di berbagai industri, termasuk minyak dan gas, manufaktur, dan pembangkit listrik. Pengujian ini dilakukan tanpa merusak material atau komponen, sehingga penting untuk menjaga integritas operasional peralatan. NDE memberikan informasi tentang kondisi internal dan eksternal material, memungkinkan deteksi cacat lebih dini untuk meminimalkan risiko kegagalan….

Rp 7.950.000
Tersedia

Training dan Sertifikasi BNSP: Pengendalian Pencemaran Udara

BACKGROUND: Penanggung Jawab Operasional Instalasi Pengendalian Pencemaran Udara (POIPPU) adalah personil yang memiliki tugas dan tanggung jawab terhadap penyusunan rencana, pengoperasian dan pengoptimasian pengoperasian peralatan pengendalian pencemaran udara, perawatan peralatan pengendalian pencemaran udara, serta melaksanakan tanggap darurat dalam pengendalian pencemaran udara. Peraturan POIPPU: Berdasarkan Peraturan Menteri Lingkungan Hidup Dan Kehutanan Republik Indonesia Nomor. P.6/MENLHK/Setjen/Kum.1/2/2018 Tentang Standar…

Rp 8.950.000
Tersedia

Engineering Cost Estimate

BACKGROUND: Definisi Cost Engineering menurut AACE (American Association of Cost Engineer) adalah “suatu bidang engineering, yang meliputi penerapan prinsip-prinsip ilmiah dan teknik, dengan menggunakan pengalaman dan pertimbangan engineering dalam masalah estimasi biaya, pengendalian biaya dan ekonomi teknik“. Pada saat cost engineering belum berkembang perhitungan biaya konstruksi selalu mengalami penyimpangan yang cukup besar. Merespon semua kondisi…

Rp 7.950.000
Tersedia

Technical Project Documentation Management

BACKGROUND: Every good project produces documentation that is well organized and easy to find. Return when information is needed to proceed to the next project phase or operation/maintenance process. It can be done manually although using software is much better. Nevertheless, it is very important that it shall exist & well managed   OBJECTIVES: This…

Rp 5.500.000
Tersedia
Index