SpaceSim - Astrophysical Simulation Software
Simulation & rendering software that uses Smoothed Particle Hydrodynamics (SPH) to simulate collisions of celestial bodies, accretion disks around black holes, or formation of galaxies in the early universe.
發行日期:
待公告
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一般 / 劇情 | SpaceSim Trailer
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備註:這款搶先體驗軟體尚未開發完成,且內容可能會有所變動。如果目前的開發進度未使您產生興趣,建議您等待本軟體開發至下一階段再決定是否購買。了解更多

開發者的話:

為何採用搶先體驗模式?

「Early Access gives users the opportunity to use SpaceSim, share simulations with the community and provide feedback to the developer, even before the application is polished and optimized for all supported hardware.」

這款軟體的搶先體驗時間大約會持續多久?

「Given the current rate of development, I expect approximately 2 years of Early Access.」

正式版預計會與搶先體驗版有何不同?

「The current goal is for the GPU solver to be robust and support all simulation capabilities of the CPU solver. Otherwise, it largely depends on the feedback from the community.」

搶先體驗版目前的開發進度如何?

「The software is already feature rich and able to run complex simulations, but some simulation systems are not yet fully implemented and it lacks the polish and stability of the full version.」

軟體售價在搶先體驗期間前後會有所變動嗎?

「Price will not change after Early Access.」

在開發過程中,您打算如何與社群互動?

「The community members are welcome to suggest features and report bugs, either on Discord or the Steam forum.」
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預計發行日期: 待公告

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SpaceSim is a particle-based simulation and rendering software, primarily focused on astrophysical applications.

Important!

  • This is a non-realtime simulator. Although low-resolution simulations are fast enough to be real-time, simulations with millions of particles can take several hours to finish.

  • This is not a game. It does not contain any game mechanics, progression, sandbox elements, etc. Please do not expect any gaming experience.

The goal of the project is to "de-mystify" scientific simulations and make them accessible to the general public. SpaceSim uses the same approach (albeit simplified and at lower resolution) as the research simulations typically run on supercomputers, but it can run on your desktop PC or laptop, comes with an intuitive user interface, and requires no extensive knowledge of mathematics, physics, or programming.

You can recreate some of the well-known simulations from the scientific literature, such as the Moon-forming impact, the formation of the ring system of Saturn, or the DART kinetic impactor. Or you can simply explore various initial conditions, both grounded and realistic, but also hypothetical "what-if" scenarios, such as the collision of two planets made of matter and anti-matter.

Fluid dynamics and gravitation

Each deformable object in the simulation is discretized into particles that interact with each other through collisions (by solving the Navier-Stokes equations) and gravitational attraction. Objects can also be rigid (non-deformable) - they retain their shape, which simplifies collisions between objects and optimizes simulation speed.

The particle-based solver is useful for simulating a number of astrophysical events, such as the formation of planets from protoplanetary disks or the mutual interaction of galaxies.

Object customization

The application has a number of object types - planets, stars, asteroids, disks, clouds, galaxies, and more. Each object has adjustable parameters that allow you to change its geometry, materials, appearance, and simulation behavior. The surface textures of planets and asteroids can be further tailored using procedural generation or by uploading custom images.

Or, if you need even more control, create your own objects using the Lua scripting language.

Black holes (and white holes)

The renderer includes the effect of gravitational lensing, bending the light rays that pass close to a black hole and creating realistic renderings of warped accretion disks, duplicated images of objects behind black holes (including other black holes) or Einstein rings of galaxies.

Particle colors and gravity visualization

SpaceSim provides additional insights into the simulation in a number of ways. It can color particles based on values of a specific quantity (velocity, pressure, material, ...), show the Roche limit indicating where satellites can have stable orbits, or draw the potential field to see the gravity wells around celestial bodies.

Key features:

  • CPU and GPU simulation solver

  • Optimized gravity simulation using the Barnes-Hut algorithm

  • Simulation history - store the entire simulation and replay it later

  • Two render engines - Real-time or Raymarcher

  • Customizable camera paths with object tracking

  • Lua scripting for custom objects and simulation systems

  • Built-in video recording (H.264 codec) and various export options (Alembic, OpenVDB)

系統需求

    最低配備:
    • 作業系統: Windows 10
    • 處理器: CPU supporting SSE 4.1
    • 記憶體: 4 GB 記憶體
    • 顯示卡: GPU supporting OpenGL 4.6
    建議配備:
    • 作業系統: Windows 10 or 11
    • 處理器: CPU supporting SSE 4.1
    • 記憶體: 16 GB 記憶體
    • 顯示卡: GPU supporting OpenGL 4.6 with 4 GB VRAM
    • 儲存空間: 10 GB 可用空間
    • 備註: CPU determines how fast the simulation can run. Generally, more cores = more speed.
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