Desalination Simulator

Interactive platform for understanding seawater desalination processes.

A person stands next to a large screen displaying diagrams and illustrations related to weirs and water management. They are gesturing towards the images, possibly explaining or presenting the information. The room appears to be a professional setting, with white walls and additional individuals seated and facing the screen.
A person stands next to a large screen displaying diagrams and illustrations related to weirs and water management. They are gesturing towards the images, possibly explaining or presenting the information. The room appears to be a professional setting, with white walls and additional individuals seated and facing the screen.
User-Friendly Narratives

Breaks down complex desalination engineering into simple explanations.

A series of control panel buttons are displayed in rows, featuring illuminated red, orange, and green push buttons. Labels next to the buttons indicate functions such as 'STOP' and 'RAW WATER PUMP.' The perspective shows the panel extending into the distance, suggesting an industrial or mechanical setting with metal surroundings.
A series of control panel buttons are displayed in rows, featuring illuminated red, orange, and green push buttons. Labels next to the buttons indicate functions such as 'STOP' and 'RAW WATER PUMP.' The perspective shows the panel extending into the distance, suggesting an industrial or mechanical setting with metal surroundings.
Interactive Learning

Engage with principles of reverse osmosis and distillation.

A group of people stands observing a large aquarium exhibit. The exhibit features a rocky landscape with water visible on the lower half. A person behind the glass is interacting with the exhibit, possibly a trainer or staff member. The environment suggests an indoor setting, and the atmosphere appears educational and engaging.
A group of people stands observing a large aquarium exhibit. The exhibit features a rocky landscape with water visible on the lower half. A person behind the glass is interacting with the exhibit, possibly a trainer or staff member. The environment suggests an indoor setting, and the atmosphere appears educational and engaging.
Aerial view of salt evaporation ponds located near a coastal area. The ponds form a grid-like pattern with various sections of different colors, ranging from dark blues to light browns and yellows. The horizon is clear and sky is blue with a few distant structures visible along the shoreline.
Aerial view of salt evaporation ponds located near a coastal area. The ponds form a grid-like pattern with various sections of different colors, ranging from dark blues to light browns and yellows. The horizon is clear and sky is blue with a few distant structures visible along the shoreline.
Engineering Processes

Explore multi-effect distillation and pretreatment techniques interactively.

Seawater Desalination

Learn about essential methods for converting seawater to freshwater.

Understanding Seawater Desalination Processes

Explore our interactive platform for learning about seawater desalination methods, including reverse osmosis and multi-effect distillation, designed to simplify complex engineering principles for all users.

A circular aquarium contains a desert-themed landscape. Inside, a structure resembling a mountain or pyramid is surrounded by small plants and a patterned surface resembling a honeycomb or coral formation. The background is a mix of warm tones and abstract patterns.
A circular aquarium contains a desert-themed landscape. Inside, a structure resembling a mountain or pyramid is surrounded by small plants and a patterned surface resembling a honeycomb or coral formation. The background is a mix of warm tones and abstract patterns.

150+

15

Innovative Learning Experience

User Friendly

Desalination Processes

Explore interactive methods of seawater desalination, including reverse osmosis and multi-effect distillation.

Reverse Osmosis

Learn how reverse osmosis effectively removes salts and impurities from seawater through advanced filtration.

A dynamic spray of sand is suspended in mid-air, creating a cloud-like effect. The scene is set in a desert with expansive sandy dunes stretching into the distance. There are a few scattered trees in the background. On the right side, some people appear to be walking along the sand.
A dynamic spray of sand is suspended in mid-air, creating a cloud-like effect. The scene is set in a desert with expansive sandy dunes stretching into the distance. There are a few scattered trees in the background. On the right side, some people appear to be walking along the sand.
Multi-Effect Distillation

Discover the principles of multi-effect distillation and its role in efficient seawater desalination processes.

Understand the importance of pretreatment in enhancing the efficiency and longevity of desalination systems.

Pretreatment Methods
A vast expanse of terraced salt evaporation ponds, featuring a mosaic of rectangular pools with uneven stone borders. The ponds contain different levels of water, appearing in shades of white, beige, and light brown. The area is surrounded by natural rocky terrain.
A vast expanse of terraced salt evaporation ponds, featuring a mosaic of rectangular pools with uneven stone borders. The ponds contain different levels of water, appearing in shades of white, beige, and light brown. The area is surrounded by natural rocky terrain.
A series of rectangular salt pans are arranged in a geometric pattern. The pans are bordered by small, dark stones, creating a grid-like appearance. The surfaces of the pans have a light brown and white coloring, indicative of the salt crystallization process.
A series of rectangular salt pans are arranged in a geometric pattern. The pans are bordered by small, dark stones, creating a grid-like appearance. The surfaces of the pans have a light brown and white coloring, indicative of the salt crystallization process.