Stillingsbeskrivelse
Thea Energy is leveraging recent breakthroughs in stellarator physics and engineering to create a faster and simpler approach to commercializing fusion energy. The company is reinventing the stellarator using computer-controlled arrays of planar coils thereby replacing the intricate, complex modular magnets required in all other stellarator architectures. Thea Energy is on a mission to create a limitless source of zero emission energy for a sustainable future.
We are seeking a Principal Magnet Cryogenics Engineer with over 10-15 years of industry experience to lead the complete program lifecycle-from concept through commissioning-of large-scale cabled High-Temperature Superconducting (HTS) magnet systems for next-generation fusion reactors.
In this role, you will hold end-to-end technical ownership for the cryogenic design, thermal-hydraulic modelling, forced-flow cooling distribution, and cryogenic integration of large-scale CICC (Cable-in-Conduit Conductor) or advanced stacked-tape HTS magnets. You will bridge megawatt scale cryogenic plant engineering with microscopic thermal-hydraulic magnet behaviour, leading multi-disciplinary teams through multi-million-dollar hardware deliverables.
Key Responsibilities
- Program Lifecycle Ownership: Lead the complete lifecycle (Conceptual, Preliminary, Detailed Design, Qualification, Fabrication, Assembly, Commissioning, and Decommissioning) for large-scale HTS fusion magnet cryogenic systems.
- Cryo-Thermal System Architecture: Design, model, and validate gaseous helium (gHe), or sub-cooled liquid nitrogen (sLN2) thermal management systems tailored to high-field HTS cabled conductors (stacked HTS conductors).
- Thermal-Hydraulic Modeling: Perform dynamic thermal-hydraulic analysis, transient load modelling (nuclear heating, AC losses, eddy currents, ramp rates), and margin calculations under operational and fault conditions.
- Quench & Fault Management: Own the cryogenic response strategy during quench events, including rapid helium expansion, overpressure relief sizing, burst disc integration, and thermo-mechanical stress containment.
- Large-Scale Infrastructure & Plant Integration: Define requirements for mega-watt class cryogenic plants, cold compressors, heat exchangers, sub-coolers, helium distribution boxes (valve boxes), and low-heat-leak transfer lines.
- Joints & Current Leads: Oversee cryogenic thermal management for high-current demountable or permanent HTS joints and conduction-cooled hybrid (HTS/LTS) gas-cooled current leads (60+ kA).
- Vendor & Subcontractor Governance: Manage major sub-contracts for large-scale cryogenic infrastructure, conductor fabrication, pressure vessels, and vacuum insulated systems (cryostats).
- V&V and Commissioning: Plan and execute full-scale cryogenic and high-current magnet test campaigns, leading cool-down, steady-state operation, quench mitigation, and warm-up procedures.
Required Experience
- 10-15+ Years of Direct Experience in cryogenic engineering and thermal-hydraulic design for superconducting magnet systems, with a primary focus on HTS tape/cable architectures (REBCO/BSCCO).
- Large-Scale Fusion/Physics Program Delivery: Proven track record of ownership over large-scale (> $10M+) magnet work packages within fusion energy programs (e.g., W7x, ITER, JT60SA, KSTAR, DEMO) or major scientific facilities (e.g., CERN, FERMILAB).
- Cabled HTS Architecture: Demonstrated expertise in high-current (tens of kA) cabled HTS configurations (e.g., Cable-in-Conduit Conductors, stacked tape conductors) and forced-flow cooling strategies.
- Full Lifecycle Track Record: Experience taking at least one major superconducting magnet or cryogenic system from initial concept through initial cool-down and operational validation.
- Regulatory & Code Compliance: Deep familiarity with pressure vessel standards applied to cryogenic temperatures (ASME BPVC Section VIII, EN 13445, B31.3) and cryogenic safety standards (ISO 21010/CGA).
Technical Knowledge
- HTS Material Physics: Solid understanding of critical surfaces for REBCO coated conductors, strain sensitivity, thermal margin assessment, and current sharing regimes.
- Cryogenic Fluids & Thermophysical Properties: Mastery of low-temperature fluid dynamics (gHe, sLN2) using database tools.
- Transient Thermal Analysis: Deep domain knowledge of AC losses (coupling, hysteresis, flux creep) nuclear volumetric heating, heat-leak budgets, and conduction/radiation thermal shielding (MLI design).
- Instrumentation & Controls: Extensive knowledge of low-temperature thermometry (Cernox, TVO, optical fibers/FBG), cryogenic flow meters, pressure transducers, and cryogenic valve telemetry.
Skills & Competencies
- Computational Tools: Proficiency in finite element analysis (FEA) and thermal-hydraulic system modeling tools (e.g., COMSOL Multiphysics, ANSYS Thermal/CFD, MATLAB/Simulink).
- System Engineering & Requirements Flowdown: Capability to write clear system requirement documents (SRDs), interface control documents (ICDs), and lead major design reviews (CoDR, PDR, CDR).
- Leadership & Team Mentorship: Demonstrated ability to lead cross-functional engineering teams (structural, electrical, vacuum, systems) and mentor junior magnet/cryogenic engineers.
- Strategic Risk Mitigation: Mastery of FMEA, applied to cryogenic system failures, vacuum loss (loss of vacuum/L VAC), and runaway quench scenarios.
Company Benefits
- Comprehensive health benefits (e.g. medical/dental/vision)
- Employee equity stock options
- 20 days PTO
$190,000 - $215,000 a year
It's not necessary to meet all of the skillsets outlined above. Please feel free to send us a note and tell us why you would still be a great fit for this role or Thea Energy.
Diversity and Inclusion
Thea Energy is an equal opportunity employer committed to creating a company of diverse backgrounds. By creating a diverse environment, we will bring new ideas and approaches to solving some of the world's hardest (and most important) problems. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, gender, sexual orientation, gender identity or expression, national origin, family or marital status, age, disability, veteran's status, or other characteristic protected by applicable laws and regulations.
We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.
Løn og goder
Om stillingen
Om Thea Energy
Virksomhedsoversigt
Thea Energy, oprindeligt kendt som Princeton Stellarators Inc.
HovedkontorPrinceton, New Jersey, USA
Grundlagt2022
StørrelseAntallet af ansatte og indtægtsoplysninger for 2023 eller senere er ikke offentligt tilgængelige, men virksomheden fungerer som en privat fusion-startup med finansiering fra det amerikanske energidepartementets Milestone-Based Fusion Development Program som en af otte modtagere (kilde: pppl.gov).
Hvad de laver
Thea Energy fokuserer på at fremme fusionenergi gennem innovative stellarator-designs, der udnytter rækker af planære højtemperatur superledende (HTS) spoler for at opnå stabil magnetisk indespærring. Denne tilgang forenkler de traditionelle komplekse 3D-modulære magneter, der findes i konventionelle stellaratorer, hvilket muliggør en mere effektiv og effektiv produktion af fusionenergi (kilde: fusionxinvest.com). Deres flagskibssystem, kaldet Eos efter den græske gudinde for daggry, er designet til at producere neutroner til tritiumavl, hvilket er essentielt for at validere deres teknologi og muliggøre fremtidige kommercielle anvendelser, såsom steady-state fusionkraftværker (kilde: heatmap.news). Virksomhedens teknologi udnytter moderne computerkraft og HTS-materialer til at optimere designs, hvilket giver en iboende steady-state stabilitet, der mindsker forstyrrelser, der ofte er forbundet med tokamaks (kilde: thea.energy). Deres målmarkeder inkluderer primært kommercielle fusionenergiudviklere, med et indledende fokus på neutronkilder til industrielle anvendelser, selvom specifikke kundesegmenter ikke er blevet detaljeret (kilde: fusionxinvest.com). En vigtig differentieringsfaktor for Thea Energy er deres hurtige interne fremstillingskapaciteter, der bruger værktøjer som en CNC-maskine og en specialiseret enhed kaldet "Zeus" til at vikle HTS-bånd, hvilket muliggør hurtige iterationer og reducerer afhængigheden af outsourcet arbejdskraft (kilde: heatmap.news).
Projekter & Resultater
Indtil nu har Thea Energy ikke afsluttet nogen projekter, da de stadig er i de tidlige udviklingsfaser med fokus på prototyping af deres Eos-system. Dette system er beregnet til at fungere som den første demonstrator for neutron- og tritiumproduktion, men specifikke afslutningsdatoer, kapacitets specifikationer eller projektlokationer er ikke blevet rapporteret (kilde: fusionxinvest.com). Virksomheden er aktivt engageret i at bygge og teste planære HTS-spoleprototyper på deres faciliteter i Kearny, New Jersey, som er udstyret med et åbent kontorområde, laboratorium og småskala fremstillingskapaciteter til magnetarrays (kilde: heatmap.news). Thea Energys oprindelse ved Princeton Plasma Physics Laboratory (PPPL) giver dem stærke partnerskaber og et fundament inden for stellaratorforskning, med medstifter David Gates som en bemærkelsesværdig fysiker og vinder af Edison Patent Award for sine bidrag til feltet (kilde: pppl.gov). I øjeblikket er Thea Energys geografiske tilstedeværelse begrænset til New Jersey, og der har ikke været nogen meddelelser om udvidelse, selvom beliggenheden drager fordel af nærhed til betydelige fusionforskningscentre i Nordøst, herunder PPPL og Columbia University (kilde: heatmap.news).
Seneste udviklinger
I 2023, før deres rebranding, modtog Princeton Stellarators Inc. finansiering fra det amerikanske energidepartementets Milestone-Based Fusion Development Program, som støtter fremskridt inden for stellaratorteknologi mod kommercialisering (kilde: pppl.gov). Der har dog ikke været rapporterede kontrakter, opkøb, fusioner eller yderligere finansieringsrunder i de sidste to år, da virksomheden fokuserer på proprietære gennembrud uden offentlige milepæle eller priser udover Gates' personlige Edison Patent (kilde: thea.energy). Thea Energys hjemmeside opfordrer til abonnementsopdateringer, men nævner ikke nogen nylige pressemeddelelser vedrørende større meddelelser, hvilket indikerer en relativt stille periode med hensyn til offentlig kommunikation (kilde: thea.energy).
At arbejde der
Information om at arbejde hos Thea Energy er begrænset, men det ser ud til at være velegnet til jobsøgende, der er interesseret i et lille, tidligt fase fusion-startup-miljø. Roller omfatter sandsynligvis ingeniørpositioner med fokus på magnetdesign, HTS-vikling og CNC-fremstilling, samt fysikforskning og operationelle roller, udledt fra facilitets blanding af åbne skriveborde, laboratoriearbejde og prototypebygning (kilde: heatmap.news). Ansættelse ser ud til at være koncentreret på New Jersey-stedet, med ingen dokumenterede fjern- eller andre lokationsopslag (kilde: fusionxinvest.com). Virksomhedens kultur ser ud til at blande agiliteten fra en tech-startup med praktikaliteterne fra et laboratorium, der lægger vægt på lokal fagforeningsarbejdskraft for skalerbarhed og hurtig prototyping, snarere end at stole på elite akademisk talent, alt sammen inden for et rum, der prioriterer fremstillings effektivitet (kilde: heatmap.news). Dog er der ikke dokumenterede fordele, løndata eller medarbejderudtalelser tilgængelige i offentlige kilder.
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