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    Home»Tech News»COMSOL Multiphysics Improves Battery and Grid Designs
    Tech News

    COMSOL Multiphysics Improves Battery and Grid Designs

    The Daily FuseBy The Daily FuseOctober 16, 2025No Comments6 Mins Read
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    COMSOL Multiphysics Improves Battery and Grid Designs
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    A prototyping drawback is rising in immediately’s efforts to affect the whole lot. What works as a lab-bench mockup breaks in actuality. Harnessing and safely storing vitality at grid scale and in automobiles, trucks, and planes is a really arduous drawback that simplified fashions generally can’t contact.

    “In electrification, at its core, you may have this mix of electromagnetic results, heat transfer, and structural mechanics in an advanced interaction,” says Bjorn Sjodin, senior vp of product administration on the Stockholm-based software program firm COMSOL.

    COMSOL is an engineering R&D software program firm that seeks to simulate not only a single phenomenon—for example, the electromagnetic habits of a circuit—however somewhat all the pertinent physics that must be simulated for growing new applied sciences in real-world working situations.

    Engineers and builders gathered in Burlington, Mass. on 8-10 Oct. for COMSOL’s annual Boston conference, the place they mentioned engineering simulations by way of a number of simultaneous physics packages. And multiphysics modeling, because the rising subject is named, has emerged as a part of electrification R&D that’s changing into extra than simply nice-to-have.

    “Typically, I feel some individuals nonetheless see simulation as a flowery R&D factor,” says Niloofar Kamyab, a chemical engineer and purposes supervisor at COMSOL. “As a result of they see it as a substitute for experiments. However no, experiments nonetheless have to be finished, although experiments might be finished in a extra optimized and efficient approach.”

    Can Multiphysics Scale Electrification?

    Multiphysics, Kamyab says, can generally be solely half the sport.

    “I feel with regards to batteries, there may be one other attraction with regards to simulation,” she says. “It’s multi-scale—how batteries might be studied throughout totally different scales. You may get in-depth evaluation that, if not very arduous, I’d say is inconceivable to do experimentally.”

    Partially, it is because batteries reveal sophisticated behaviors (and runaway reactions) on the cell degree but in addition in unpredictable new methods on the battery-pack degree as properly.

    “The general public who do simulations of battery packs, thermal management is one among their main considerations,” Kamyab says. “You do that simulation so you understand how to keep away from it. You recreate a cell that’s malfunctioning.” She provides that multiphysics simulation of thermal runaway allows battery engineers to securely take a look at how every design behaves in even essentially the most excessive situations—with a view to cease any battery issues or fires earlier than they might occur.

    Wireless charging methods are one other space of electrification, with their very own thermal challenges. “At larger energy ranges, localized heating of the coil modifications its conductivity,” says Nirmal Paudel, a lead engineer at Veryst Engineering, an engineering consulting agency based mostly in Needham, Mass. And that, he notes, in flip can change all the circuit in addition to the design and efficiency of all the weather that encompass it.

    Electric motors and power converters require related simulation savvy. In keeping with electrical engineer and COMSOL senior software engineer Vignesh Gurusamy, older methods of growing these age-old electrical workhorse applied sciences are proving much less helpful immediately. “The current surge in electrification throughout various purposes calls for a extra holistic method because it allows the event of recent optimum designs,” Gurusamy says.

    And freight transportation: “For vehicles, persons are investigating, Should we use batteries? Should we use fuel cells?” Sjodin says. “Gas cells are very multiphysics pleasant—fluid circulation, warmth switch, chemical reactions, and electrochemical reactions.”

    Lastly, there’s the electric grid itself. “The grid is designed for a steady provide of energy,” Sjodin says. “So when you may have energy sources [like wind and solar] shutting on and off on a regular basis, you may have fully new issues.”

    Multiphysics in Battery and Electric Motor Design

    Taking such an all-in method to engineering simulations can yield unanticipated upsides as properly, says Kamyab. Berlin-based automotive engineering firm IAV, for instance, is growing powertrain methods that combine a number of battery codecs and chemistries in a single pack. “Sodium ion can’t provide the vitality that lithium ion can provide,” Kamyab says. “So that they got here up with a mix of chemistries, to get the advantages of every, after which designed a thermal administration that matches all of the chemistries.”

    Jakob Hilgert, who works as a technical guide at IAV, just lately contributed to a COMSOL industry case study. In it, Hilgert described the design of a dual-chemistry battery pack that mixes sodium-ion cells with a extra expensive lithium solid-state battery.

    Hilgert says that utilizing multiphysics simulation enabled the IAV staff to play the 2 chemistries’ totally different properties off of one another. “If we’ve got some cells that may function at excessive temperatures and a few cells that may function at low temperatures, it’s helpful to take the exhaust warmth of the higher-running cells to warmth up the lower-running cells, and vice versa,” Hilgert mentioned. “That’s why we got here up with a cooling system that shifts the vitality from cells that need to be in a cooler state to cells that need to be in a warmer state.”

    In keeping with Sjodin, IAV is an element of a bigger development in a spread of industries which might be impacted by the electrification of the whole lot. “Algorithmic enhancements and {hardware} enhancements multiply collectively,” he says. “That’s the way forward for multiphysics simulation. It’ll let you simulate bigger and bigger, extra lifelike methods.”

    In keeping with Gurusamy, GPU accelerators and surrogate fashions enable for greater jumps in electrical motor capabilities and efficiencies. Even seemingly easy parts just like the windings of copper wire in a motor core (referred to as stators) present parameters that multiphysics can optimize.

    “A main frontier in electrical motor improvement is pushing power density and effectivity to new heights, with thermal administration rising as a key problem,” Gurusamy says. “Multiphysics fashions that couple electromagnetic and thermal simulations … incorporate temperature-dependent habits in stator windings and magnetic supplies.”

    Simulation can be altering the wi-fi charging world, Paudel says. “Conventional design cycles tweak coil geometry,” he says. “Right now, built-in multiphysics platforms allow exploration of recent charging architectures,” together with versatile charging textiles and sensible surfaces that adapt in real-time.

    And batteries, in line with Kamyab, are persevering with a push towards larger energy densities and cheaper price factors. Which is altering not simply the industries the place batteries are already used, like consumer electronics and EVs. Increased-capacity batteries are additionally driving new industries like electric vertical take-off and landing aircraft (eVTOLs).

    “The rationale that many concepts that we had 30 years in the past have gotten a actuality is now we’ve got the batteries to energy them,” Kamyab says. “That was the bottleneck for a few years. … And as we proceed to push battery expertise ahead, who is aware of what new applied sciences and purposes we’re making attainable subsequent.”

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