Experiment 3: Room Simulation

Experiment 3: Room Simulation

This experiment simulates gas particles traveling in a 5x5m room environment. Observe how different gases behave in real-life scenarios with various room configurations and environmental factors.

You can select different gases, adjust environmental conditions, and observe how particles move and interact with room features like ventilation, temperature gradients, and obstacles.

50 500
Slow Fast
Empty Room
With Ventilation
Temperature Gradient
With Obstacles
Gas Leak Simulation
Scale: 5m x 5m

Simulation Statistics

Hydrogen

Average Particle Speed

0.00 m/s

Room Temperature

20.0 °C

Gas Concentration

0.00 %

Elapsed Time

0.0 s
Room Simulation Theory
Scenario Descriptions

Gas Behavior in Room Environments

This simulation demonstrates how gas particles behave in a confined 5x5m room under various conditions:

Key Physical Principles

  • Diffusion: Gases naturally spread from areas of high concentration to low concentration
  • Buoyancy: Gases less dense than air (like hydrogen and helium) rise, while denser gases (like CO₂) sink
  • Temperature Effects: Gases expand and rise in warmer areas, contract and sink in cooler areas
  • Ventilation: Air flow affects gas distribution and can create pressure gradients

Real-World Applications

Understanding gas behavior in rooms is crucial for:

  • HVAC system design and optimization
  • Indoor air quality management
  • Safety planning for gas leaks or hazardous materials
  • Energy efficiency in building design

Available Simulation Scenarios

Empty Room

Basic scenario with no obstacles or environmental factors. Observe pure gas diffusion and buoyancy effects in a confined space.

With Ventilation

Adds intake and exhaust vents to the room. See how ventilation affects gas distribution and creates directional flow patterns.

Temperature Gradient

Creates a temperature gradient with warmer air at the bottom and cooler air at the top. Observe how temperature affects gas movement and stratification.

With Obstacles

Adds furniture-like obstacles to the room. See how obstacles affect gas flow patterns and create pockets of higher concentration.

Gas Leak Simulation

Simulates a continuous gas leak from a specific location. Observe how the gas spreads over time and how room features affect distribution.