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Dive

Dive provides fast, cloud-based Computational Fluid Dynamics (CFD) software utilizing a mesh-free Smoothed Particle Hydrodynamics (SPH) method. This platform enables engineers to accurately simulate complex fluid dynamics, including free surface flow, thermodynamics, and multiphase interactions. The accessible, scalable solution accelerates design exploration for applications across automotive, industrial machinery, and electrical equipment sectors.

Berlin, GermanyFounded 2018515K+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Traditional computational fluid dynamics (CFD) software requires extensive tuning and specialized expertise, leading to long simulation times and high costs. This complexity limits the number of design iterations engineers can complete, hindering efficiency and slowing down decision-making processes. The need for physical prototypes further increases costs and extends development cycles.

Solution

Dive CAE offers a mesh-free CFD software platform that enables engineers to simulate complex fluid behaviors with simplicity, speed, and accuracy. The cloud-native platform eliminates the need for extensive parameter tuning, allowing engineers to run multiple design iterations in hours instead of days. By leveraging the Smoothed Particle Hydrodynamics (SPH) method, Dive CAE can simulate complex processes such as heat transfer in e-engines and loss assessments in high-speed gearboxes. The platform's intuitive interface and collaborative features democratize CFD, making it accessible to a wider range of engineers and designers. This approach reduces the reliance on physical prototypes by enabling virtual testing and design based on 3D design data.

Target Audience

The primary target audience includes mechanical engineers, designers, and R&D departments within engineering enterprises, particularly those in the automotive, industrial technology, and manufacturing sectors.

Features

  • Mesh-free simulation technology using Smoothed Particle Hydrodynamics (SPH) for accurate and reliable results
  • Cloud-native platform accessible through a web browser, eliminating the need for local installations or specialized hardware
  • Fully parallel, high-performance computing technology for ultra-fast design of experiments
  • Collaborative enterprise platform with easy-to-understand interface and average onboarding time of less than one day
  • Safe and transparent management of users, usage, data, access rights, license, and project costs
  • Ability to simulate free surface flow, thermodynamics, complex movements, surface tension, and multiphase complex materials
  • Integration of explicit AVX-512 vectorization, increasing solver performance
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