Difference between revisions of "Fadhlan Dindra"

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(Numerical Method - Case Study of Pressurized Hydrogen Storage)
(Biodata)
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Bonjour!! My name is Fadhlan Kiska Anargya Dindra and my friends casually call me Dindra or Ndon. Currently studying Mechanical Engineering at the University of Indonesia. Fast learner, well-organized, and responsible person. Always look forward to doing something new. Have an interest in sports, arts, and automotive.
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PAGI TEKNIKK!! My name is Fadhlan Kiska Anargya Dindra and my friends casually call me '''Dindra'''. Currently studying Mechanical Engineering at the University of Indonesia. Fast learner, well-organized, and responsible person. Always look forward to doing something new. Have an interest in sports, arts, and automotive.
  
 
[[File:Dindra_FOTO.jpg|200px]]
 
[[File:Dindra_FOTO.jpg|200px]]

Revision as of 11:15, 30 May 2023

Biodata

PAGI TEKNIKK!! My name is Fadhlan Kiska Anargya Dindra and my friends casually call me Dindra. Currently studying Mechanical Engineering at the University of Indonesia. Fast learner, well-organized, and responsible person. Always look forward to doing something new. Have an interest in sports, arts, and automotive.

Dindra FOTO.jpg

Name: Fadhlan Kiska Anargya Dindra

Date of Birth: September 7th, 2003

NPM: 2106658414

Major: Mechanical Engineering

E-mail: fadhlan.kiska@ui.ac.id


I made this blog for the purposes of Numerical Method KKI that i took this semester. Special appreciation for creating this website for us to open new opportunities in learning through digital media. I will use this blog as my personal space to create my creativity in learning Numerical Method lectures.

Pressurized Hydrogen Storage

Pressurized hydrogen storage is a method of storing hydrogen gas by compressing it to high pressures inside storage vessels or tanks. This technique is commonly used in various applications, including hydrogen refueling stations for fuel cell vehicles, industrial processes, and energy storage systems. Pressurized hydrogen storage plays a vital role in enabling the utilization of hydrogen as a clean energy carrier. By effectively storing hydrogen gas at high pressures, it becomes more viable for various applications, contributing to the advancement of hydrogen-based technologies and the transition to a sustainable energy future. Our goals in this class are to finalized the design and optimization for Pressurized Hydrogen Storage but with the specification of gas being pressurized at 8 bars and volume is 1 liter.