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TRAINING NATURAL GAS ENGINEERING PROPERTIES

TRAINING NATURAL GAS ENGINEERING PROPERTIES ESTIMATION AND PIPE LINE NETWORK DESIGN FOR DISTRIBUTION AND PROCESSING

TRAINING ESTIMASI PROPERTI MEKANIK GAS ALAM DAN DESAIN JARINGAN PIPA UNTUK PENDISTRIBUSIAN DAN PROSES

TRAINING PENGGUNAAN PROSES TERMODINAMIKA

TRAINING NATURAL GAS ENGINEERING PROPERTIES

TRAINING NATURAL GAS ENGINEERING PROPERTIES

Training Objective.

After completing this training, you should able to do the following :

  • Apply the concept of thermodynamic including mixing rule (volumetric properties of mixture) to calculate the properties of Natural Gas.
  • Predict the condition of hydrate formation and know the method to prevent it
  • Apply the concept of fluid flow to calculate the parameters used in sizing the Natural Gas lines
  • Recognize the use of non pipe elements and to calculate the parameters which fit the elements to the pipe line.
  • Formulate equations for steady-state analysis
  • Use graph theory to design and estimate, and optimize gas networks
  • Doing troubleshooting of gas networks

Outline Training

  1. Thermodynamic Aspect of Real Gas
    • The Law of Thermodynamics in relation to energy balance
    • Volumetric Properties of Pure Substances: Cubic Equations of State
    • Volumetric Properties of Pure Substances: The Virial Equations
    • Generalized Correlations for Gases
  2. Volumetric Properties of Mixtures
    • Behavior of Ideal Gas
    • Ideal Gas Mixtures
    • Behavior of Real Gases
    • Effect of Non-hidrocarbon component on Z-Factor: Wichert-Azis Correction Method
    • Effect of Non-hidrocarbon component on Z-Factor: Carr-Kobayashi-Burrow Correction Method
    • Effect of Non-hidrocarbon component on Z-Factor: Correction Method for high-molecular weight gases
    • Direct Calculation of Compressiblity Factors using several methods including Papay, Hall-Yarborough, Dranchuk-Abu-Kassem, Dranchuk-Parvis-Robinson and Hankinson-Thomas-Phillips Methods
  3. Properties of Natural Gas I: Thermodynamic Properties of Natural Gas
    • Compressibility of Natural Gases
    • Gas Formation Volume Factor
  4. Properties of Natural Gas II: Estimation of the Viscosity of Gases
    • Carr-Kobayashi-Burrow Method
    • Leo-Gonzalez-Eakin Method
    • Dean and Stiel Method
  5. Gas Hydrates and Their Prevention
    • Water content in natural Gas
    • Water-Hydrocarbon systems: Gas Hydrates
    • Prediction of Conditions for Hydrate Formation
    • van der Waals-Platteeuw Model
    • Gas Expansion-Joule Thomson Cooling
    • Use of Methanol to Prevent Hydrates
    • Hydrate in the Earth
  6. Fundamental of Gas Flow in Pipe line
    • Application of Flow Equation
    • Calculation of Static Bottom Hole Pressure
    • General Flow Equation
    • Flow Equations in Practice: Gas Flow Characteristic in Pipes
    • Flow Equations in Practice: Efficiency Factor
    • Flow Equations in Practice: Common flow equation
  7. Non-Pipe Elements in Gas Networks
    • Compressor Stations
    • Pressure Regulators: Direct operated gas Regulators
    • Pressure Regulators: Pilot-loading gas regulators
    • Valves
  8. Selected Elements of Graph Theory
    • Terms and Definitions in Graph Theory
    • Network Topology: The Branch-Nodal incidence matrix
    • Network Topology: Branch-Loop incidence matrix
    • Methods of Loop generation
  9. Formulation of Equations for Steady-State Analysis
    • Flow of Gases: Lacey Equation
    • Flow of Gases: Polyfo Equation
    • Flow of Gases: Panhandle ‘A’ Equation
    • Flow of Gases: The Weymouth Equation
    • Nodal Formulation
    • Loop Formulation
  10. Gas Networks design:
    • Newton-Nodal Method (Multi-dimensional Case)
    • Newton-Nodal Method (One-dimensional Case—Hardy-Cross Method)
  11. Natural Gas Liquid Recovery and Gas for The Fuel Market
    • Natural Gas Liquid
    • Gas Absorpsion versus Fractionation
    • Cooling in Gas Processing
    • Gas Absorpsion/Stripping Cycles for Liquid Recovery
    • Adsorption versus Absorption
    • Expander Plant
    • Conclusion
  12. Troubleshooting of Gas Networks
    • Philosophy of Troubleshooting
    • Troubleshooting of pipe line
    • Troubleshooting of Compressor
    • Troubleshooting of Control-Valves

INSTRUKTUR

Instruktur yang mengajar pelatihan Natural Gas Engineering Properties ini adalah instruktur yang berkompeten di bidang Natural Gas Engineering Properties baik dari kalangan akademisi maupun praktisi.

Jadwal pelatihan trainingmekatronika.com tahun 2025 :

  • Batch 1 : 30 – 31 Januari 2025
  • Batch 2 : 13 – 14 Februari 2025
  • Batch 3 : 11 – 12 Maret 2025
  • Batch 4 : 16 – 17 April 2025
  • Batch 5 : 15 – 16 Mei 2025
  • Batch 6 : 25 – 26 Juni 2025
  • Batch 7 : 16 – 17 Juli 2025
  • Batch 8 : 6 – 7 Agustus 2025
  • Batch 9 : 3 – 4 September 2025
  • Batch 10 : 8 – 9 Oktober 2025 || 29 – 30 Oktober 2025
  • Batch 11 : 13 – 14 November 2025 || 25 – 27 November 2025
  • Batch 12 : 15 – 16 Desember 2025

Catatan : Jadwal tersebut dapat disesuaikan dengan kebutuhan calon peserta training Pengenalan Natural Gas pasti jalan

Invetasi dan Lokasi pelatihan Penggunaan proses termodinamika di bali :

· Yogyakarta,

· Jakarta,

· Bandung,

· Bali,

· Surabaya,

· Lombok,

Catatan : Apabila perusahaan membutuhkan paket in house training, anggaran investasi pelatihan dapat menyesuaikan dengan anggaran perusahaan.

Fasilitas  pelatihan Pengenalan Natural Gas di bali :

  • FREE Airport pickup service (Gratis Antar jemput Hotel/Bandara/Stasiun/Terminal)
  • FREE Akomodasi ke tempat pelatihan bagi peserta training Penggunaan proses termodinamika bali pasti running
  • Module / Handout training Estimasi properti mekanik gas alam dan desain jaringan pipa untuk pendistribusian dan proses bali fixed running
  • FREE Flashdisk
  • Sertifikat training Natural Gas Engineering Properties Estimation and Pipe Line Network Design for Distribution and Processing di bali murah
  • FREE Bag or bagpackers (Tas Training)
  • Training Kit (Dokumentasi photo, Blocknote, ATK, etc)
  • 2xCoffe Break & 1 Lunch, Dinner
  • FREE Souvenir Exclusive
  • Training room full AC and Multimedia

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