![]() "Liquid sloshing can also have other dangerous consequences. The sloshing process causes the fluid to land on structures and walls, which can lead to structural damage and other problems," says Li. "Liquid sloshing is a typical phenomenon where liquid in a container has an unrestrained surface. ![]() How these approaches combine can be shown through the example of liquid sloshing. Three fundamental approaches define the study and analysis of engineering systems: theory, experiment and computing. CFD simulations could therefore be used to provide more reliable weather forecasts in future, leading to advances in meteorology. As an example, weather data, such as sunshine intensity, air temperature, air pressure, and cloud and droplet distribution, are put into computer simulations, which include computational fluid dynamics, to predict future weather forecasts. Since the ability generate simulations is limited by computing power, quantum computing, with its enormous computational capacity, is likely to benefit predictions based on computational fluid dynamics. The aim is to understand the transport phenomena of fluid mechanics, with water and air the most common fluids dealt with in everyday life. Nowadays some people say, “with enough computational power, we could predict the future.” With this in mind, Professor Helena Liebelt and Professor Rui Li, aided by a team of young researchers, are combining advanced computational fluid dynamics (CFD) with quantum systems. Rui Li et al.,Īrchimedes said, "give me a place to stand, and I shall move the earth" (δός μοι πᾷ στῶ καὶ τὰν γᾶν κινήσω) when he explained the lever principle.
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