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Simulating Lunar Regolith with COMSOL for Mission Safety and Space Infrastructure

Current space exploration aims to establish permanent structures on the Moon, Mars, and eventually other planetary bodies. Successful lunar missions depend on understanding lunar regolith, the granular material covering the Moon’s surface, whose behavior is governed by low gravity, vacuum conditions, particle irregularity, electrostatic effects, and extreme thermal environments. This webinar will focus on two connected modeling problems related to lunar regolith: plume–regolith interaction during lunar landings and induction heating of porous regolith for thermal processing and melting. Together, these problems show how simulation with the COMSOL Multiphysics ® software can help engineering and research teams predict, control, and utilize granular lunar material. The first part of the talk will address plume–regolith interaction. During spacecraft landings, underexpanded rocket exhaust p

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Why it mattersTechnology

Current space exploration aims to establish permanent structures on the Moon, Mars, and eventually other planetary bodies. Successful lunar missions depend on understanding lunar regolith, the granular material covering the Moon’s surface, whose behavior is governed by low gravity, vacuum conditions, particle irregularity, electrostatic effects, and extreme thermal environments. This webinar will focus on two connected modeling problems related to lunar regolith: plume–regolith interaction during lunar landings and induction heating of porous regolith for thermal processing and melting. Together, these problems show how simulation with the COMSOL Multiphysics ® software can help engineering and research teams predict, control, and utilize granular lunar material. The first part of the talk will address plume–regolith interaction. During spacecraft landings, underexpanded rocket exhaust p

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What happened

According to IEEE Spectrum’s linked report, Simulating Lunar Regolith with COMSOL for Mission Safety and Space Infrastructure, Current space exploration aims to establish permanent structures on the Moon, Mars, and eventually other planetary bodies. Successful lunar missions depend on understanding lunar regolith, the granular material covering the Moon’s surface, whose behavior is governed by low gravity, vacuum conditions, particle irregularity, electrostatic effects, and extreme thermal environments. This webinar will focus on two connected modeling problems related to lunar regolith: plume–regolith interaction during lunar landings and induction heating of porous regolith for thermal processing and melting. Together, these problems show how simulation with the COMSOL Multiphysics ® software can help engineering and research teams predict, control, and utilize granular lunar material. The first part of the talk will address plume–regolith interaction. During spacecraft landings, underexpanded rocket exhaust p

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The development sits in VINI’s Technology coverage for readers following technology, science, product policy, markets, infrastructure, and the public consequences of innovation. The original report is linked so readers can check the source account, follow later updates, and compare new coverage against the first published record. The linked report is dated 2026-08-11T15:03:07+00:00.

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Primary source: Simulating Lunar Regolith with COMSOL for Mission Safety and Space Infrastructure via IEEE Spectrum. VINI cites and links the source; it does not reproduce the publisher’s full article text without rights clearance.

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