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Master's thesis

Master Thesis: 3D CFD Modeling of Thermosiphon Heatsinks

Ericsson · Stockholm, SE

Posted · Deadline:

Verified active· Checked 26/09/2026

At a glance

Opportunity
Master's thesis
Location
Stockholm, SE
Funding / pay
Not specified by the organization
Eligibility
Check the qualifications in the official posting

Project description

## Join our Team About this opportunity: Thermosiphon heatsinks are passive cooling solutions for high-power electronics that use phase-change heat transfer and natural circulation without mechanical pumping. Predicting their performance requires understanding complex two-phase phenomena such as evaporation, condensation, liquid return, and vapor transport. This thesis will focus on developing and applying three-dimensional Computational Fluid Dynamics (CFD) models using the Volume of Fluid (VOF) method. You will investigate how operating conditions and design parameters affect thermosiphon performance and evaluate the accuracy and applicability of detailed numerical models. Depending on project progress, simplified segment-based models may also be explored and compared with the VOF results. The project is for one student (30 hp) and will be based at Ericsson AB in Kista, Stockholm. Preferred starting date: January 2027. What you will do: * Review thermosiphons, two-phase cooling, and relevant CFD modeling approaches. * Develop and run 3D VOF simulations of thermosiphon heatsinks. * Analyze evaporation, condensation, liquid return, vapor transport, and overall flow behavior. * Study the effects of operating conditions, geometry, and filling ratio on thermal performance. * Evaluate thermal resistance, temperature distribution, and key flow characteristics. * Document modeling challenges and best practices, and provide recommendations for future thermosiphon design. * Optionally compare simplified segment-based models with detailed VOF simulations. The skills you bring: * You are pursuing a Master’s degree in Mechanical Engineering, Engineering Physics, Energy Technology, Applied Physics, or a related field. * Previous experience with Computational Fluid Dynamics is required. * Good understanding of fluid mechanics, thermodynamics, and heat transfer. * Strong analytical and systematic problem-solving skills. * Ability to work independently and communicate technical findings clearly. * Experience with multiphase flow, phase-change phenomena, programming, or numerical methods is an advantage. Why join Ericsson?At Ericsson, you´ll have an outstanding opportunity. The chance to use your skills and imagination to push the boundaries of what´s possible. To build solutions never seen before to some of the world’s toughest problems. You´ll be challenged, but you won’t be alone. You´ll be joining a team of diverse innovators, all driven to go beyond the status quo to craft what comes next. What happens once you apply?Click Here to find all you need to know about what our typical hiring process looks like.Encouraging a diverse and inclusive organization is core to our values at Ericsson, that's why we champion it in everything we do. We truly believe that by collaborating with people with different experiences we drive innovation, which is essential for our future growth. We encourage people from all backgrounds to apply and realize their full potential as part of our Ericsson team. Ericsson is proud to be an Equal Opportunity Employer. learn more. Primary country and city: Sweden (SE) || Stockholm Req ID: 787558

Funding and compensation

Compensation not specified. See the original posting for amounts, duration and conditions.

Eligibility and application requirements

Review the qualifications, research interests and required documents in the description above. The employer or university's original posting is the source for complete eligibility requirements.

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How to apply

Submit your application through Ericsson's official application process before 17 Mar 2027.

Source and listing information

This opportunity is published by Ericsson. Read the original official posting. Conditions and availability may change; confirm them with the organization. Availability verification refers to the source check, not organization endorsement.

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