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Spacecraft Thermal Modeling Engineer; SINDA​/FLUINT

Job in Webster, Harris County, Texas, 77598, USA
Listing for: Kulr Technology Group
Full Time position
Listed on 2025-12-31
Job specializations:
  • Engineering
    Aerospace / Aviation / Avionics, Electrical Engineering
Job Description & How to Apply Below
Position: Spacecraft Thermal Modeling Engineer (SINDA/FLUINT)

KULR Technology Corporation offers industry-leading simulation and analysis services utilizing ANSYS Thermal Desktop and SINDA/FLUINT – a premier software suite for modeling space radiation-driven thermal environments and spacecraft performance.

Our team of expert thermal engineers specializes in spacecraft thermal simulation and battery thermal analysis, ensuring optimal system performance in extreme space conditions. Whether modeling orbital heat loads, radiative heat transfer, conductive pathways, or fluid interactions, KULR provides high-fidelity, physics-based simulations to support mission-critical applications in aerospace, defense, and space exploration.

A unique advantage of working with KULR is our ability to integrate real-world cell-level data from our battery/cell cycling services for charge and discharge simulation, and Fractional Thermal Runaway Calorimetry (FTRC), and bomb calorimetry services for safety simulations. This allows for a more accurate and informed analysis with rapid turnaround results, ensuring your designs are optimized with the latest experimental insights.

With KULR’s expertise in space-proven thermal management solutions, we help customers reduce risk, enhance system longevity, and optimize thermal performance in the most demanding environments.

Contact us today to discuss how KULR’s simulation services can support your next mission!

Simulation & Analysis Capabilities

  • Spacecraft Thermal Modeling – Simulating radiative heat transfer, orbital thermal cycles, and spacecraft thermal management strategies.
  • Battery Thermal Performance Analysis – Evaluating battery temperature behavior as a function of charge and discharge cycles, ensuring optimal thermal management and operational efficiency.
  • Battery Safety & Thermal Runaway Analysis – Leveraging advanced simulations to predict thermal runaway events, design propagation-resistant battery architectures, and optimize thermal mitigation strategies.
  • Thermal Optimization & Design Validation – Analyzing thermal control systems, insulation strategies, and active/passive thermal management solutions.
  • Multi-Physics Coupling – Integrating thermal, fluid, and structural analysis for comprehensive system evaluation.
Thermal Desktop is an ideal software environment for designing and characterizing the thermal aspects of batteries designed for space applications. Use of this tool is a critical component of KULR’s design process for PPR batteries. – Peter Hughes, KULR Vice President of Engineering #J-18808-Ljbffr
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