Rayyaan Jandiar Muhardi

From ccitonlinewiki
Revision as of 10:34, 2 June 2023 by Rayyaan.jandiar (talk | contribs) (Design and Optimization of Compressed Hydrogen Storage)
Jump to: navigation, search

INTRODUCTION

Rayyaan.jpg

Perkenalkan nama saya Rayyaan Jandiar Muhardi dengan NPM 2106654321. Saya adalah mahasiswa dalam kelas Numerical Method 05, disini saya akan membagikan apa yang telah saya pelajari dari kelas Numerical Method juga tugas - tugas yang telah diberikan.

SUMMARY 26 - 5 - 2023

Design and Optimization of Compressed Hydrogen Storage

Designing a hydrogen storage system with a volume of 1000 liters of hydrogen at 8 bar pressure and costs less than 500,000 Rupiah can be challenging due to the safety and cost considerations associated with hydrogen storage. However it is possible by taking consideration on various factors, such as :

Material

Choose a material with high strength, good hydrogen permeation resistance, and compatibility with hydrogen gas. Options may include high-strength metals such as steel or aluminum, or advanced composites like carbon fiber reinforced polymers (CFRP).

Safety

Hydrogen is a highly flammable gas, so it's crucial to prioritize safety. Ensure the cylinder is designed for hydrogen storage and meets necessary safety standards. such as being able to withstand the pressure and exhibiting suitable chemical resistance. Implement a safety feature like a venting mechanisms, pressure relief valve and inspection ports to prevent over-pressurization and allow for regular inspections.

Valve and Regulator

Install a hydrogen-compatible valve and pressure regulator on the storage vessel to control the hydrogen gas flow.

Piping and Connections

Connect the storage vessel to the hydrogen supply or usage system using high-pressure hoses, fittings, and tubing suitable for hydrogen gas. Ensure all connections are properly sealed and leak-proof.