Full-Time

Senior Systems Engineer

Systems Thermal & Fluid Dynamics

Updated on 9/3/2026

Critical Energy Systems

Critical Energy Systems

11-50 employees

Develops modular, dispatchable geothermal power plants

Compensation Overview

$140k - $200k/yr

+ Equity options

Hawthorne, CA, USA

In Person

Bachelor's

Category
Mechanical Engineering (1)
Required Skills
Nastran
CAD
Python
Siemens Teamcenter
FEM/FEA

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Requirements
  • A bachelor's degree in mechanical engineering or a related field, or equivalent experience.
  • At least 5 years of proven experience in systems engineering or a highly related role, with a strong portfolio of projects involving diverse and integrated machinery.
  • A solid understanding of and ability to apply first principles of core mechanical engineering principles, including fluid mechanics, thermodynamics, and material science as they pertain to system sizing and modeling.
  • Experience with a modern computer-aided design package and willingness to immediately self-teach proficiency in Siemens NX.
  • Excellent analytical and critical thinking skills.
  • Highly self-motivated with effective communication and team-working skills.
  • Experience with components and subsystems common to power generation or process plants, including heat exchangers, pumps, turbines, valves, piping, fittings, sensors, and fluid management systems.
  • Understanding of thermodynamic cycles, such as Rankine and Brayton cycles.
  • Experience generating 3D models and managing assemblies in computer-aided design while ensuring proper fit and function.
  • Experience building 1D models of thermo-fluid systems using commercial software such as Aspen or Dymola.
  • Proven experience using Python or another coding language to build thermal or fluid models.
  • In-depth knowledge of the design and operation of heat exchangers and how to select the appropriate type for a given application.
  • Understanding of applicable codes, compliance, and regulations pertaining to the development, deployment, and commissioning of processing or power generation hardware.
  • Experience with computational fluid dynamics using commercial software such as ANSYS CFX, ANSYS Fluent, or Numeca.
  • Experience working with other engineering disciplines, such as aerodynamics, turbomachinery, development testing, materials, and manufacturing, to optimize designs for performance, reliability, and manufacturability.
  • Experience creating and maintaining comprehensive design documentation, including design reviews and component and system specifications.
Responsibilities
  • Define system requirements, interfaces, and performance budgets for thermal and fluid subsystems.
  • Own system process flow diagrams and piping and instrumentation diagrams.
  • Develop subsystem and system-level models to calculate steady, transient, and off-design thermal and fluid behavior using commercial analysis tools or in-house tools such as Python code.
  • Support system trade studies evaluating performance, efficiency, and cost impacts.
  • Support the integration of components including heat exchangers, pumps, fluid management systems, piping networks, and other auxiliary and support systems.
  • Perform hand calculations using first principles to size components, determine flow rates, and estimate component and system efficiency.
  • Perform computational fluid dynamics and thermal analysis to evaluate heat transfer, pressure losses, flow distribution, and efficiency.
  • Identify, outline, and support component-level and subsystem testing required for risk mitigation.
  • Assist in developing test plans and instrumentation strategies to validate thermo-fluid performance.
  • Analyze experimental data to refine models and improve system design.
  • Support development of control strategies related to thermal and fluid system performance.
  • Generate technical documentation including system specifications, modeling reports, design trade studies, and test analysis reports.
  • Develop and manage relationships with third-party vendors.
  • Support Field Operations teams with technical expertise and advice after product delivery and accept feedback on possible design improvements.
Desired Qualifications
  • Experience as part of a team that designed and commissioned a power generation or processing plant.
  • Proven expertise in the Siemens NX and Teamcenter environment.
  • Experience with finite element analysis for static structural, vibration, and fatigue using commercial software such as ANSYS Mechanical, NASTRAN, or CATIA.
  • Hands-on experience with product development, such as resolving manufacturing issues and analyzing test data to inform design modifications.
Critical Energy Systems

Critical Energy Systems

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Critical Energy Systems designs and builds modular geothermal power plants to deliver dispatchable 24/7 clean electricity. Its Cascade system uses factory-assembled, shipping-container modules that can be moved to remote sites and operated individually or in parallel to match local resources. Each module provides multi-megawatt output and relies on a closed-loop geothermal cycle with heat exchange, working fluid circulation, and turbine-driven power generation. The approach allows faster, more flexible deployment than traditional geothermal facilities. The company differentiates itself with aerospace-inspired engineering, a proven testbed (over 50 kW generated in a demo), and a focus on cost-effective, scalable modules that can be deployed rapidly. The goal is to accelerate adoption of low-cost, dispatchable geothermal energy to provide reliable, carbon-free power at scale.

Company Size

11-50

Company Stage

Seed

Total Funding

$19M

Headquarters

Los Angeles, California

Founded

2024

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Simplify Jobs

Simplify's Take

What believers are saying

  • Reuters on September 1, 2026 showed hyperscalers paying for firm geothermal at scale.
  • Critical Energy raised $22 million in June 2026, enough to build its first 2.5 MW plant.
  • FERC’s June 18, 2026 large-load orders favor faster grid-connection solutions like Critical Energy’s modular plants.

What critics are saying

  • Fervo’s September 2026 Google deal locks in 396 MW, outclassing Critical Energy’s unproven pipeline.
  • Critical Energy has no operating commercial plant; its 2027 target slips if fabrication fails.
  • If Cascade misses geothermal performance targets, customers like hyperscalers will choose Fervo, Ormat, or XGS.

What makes Critical Energy Systems unique

  • Spencer Jackson’s SpaceX propulsion background brings aerospace manufacturing discipline to geothermal hardware.
  • Critical Energy’s 2026 Apex modules ship in containers, targeting two-week geothermal deployment.
  • Factory-built 2.5 MW and 5 MW units fit data-center demand for modular power.

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Benefits

Health Insurance

Dental Insurance

Vision Insurance

Flexible Spending Account

Meal Benefits

Company Equity

Growth & Insights and Company News

Headcount

6 month growth

-30%

1 year growth

-36%

2 year growth

-36%
Greenbang
Jun 19th, 2026
Power supply becomes the binding constraint on AI compute.

Power supply becomes the binding constraint on AI compute. The defining theme across today's announcements is that securing electricity, rather than securing chips or capital, is now the decisive limit on artificial intelligence expansion. Federal regulators moved to force the question into the open on the same day that developers raced to bring new generation online and one campus collapsed for want of power. FERC orders all six US grid operators to defend or revise large-load rules. The Federal Energy Regulatory Commission used its June 18 open meeting to issue tailored show-cause orders under section 206 of the Federal Power Act to each of the six regional grid operators it oversees, namely PJM, MISO, SPP, CAISO, ISO New England and NYISO, requiring them either to justify their existing large-load interconnection tariffs or to file reforms, as set out in the commission's own announcement. Each operator has sixty days to defend or revise its rules for connecting data centres and other large users, and thirty days to file an informational report on how it will secure adequate generation, an unusually fast route that the agency chose over a conventional rulemaking, as Renewable Energy World reported. Critical Energy raises $22m for modular geothermal plants aimed at data centres. Los Angeles startup Critical Energy, founded by former SpaceX propulsion engineer Spencer Jackson, announced $22 million in early funding comprising a $19 million seed round and $3 million in venture debt, co-led by Susa Ventures and Upfront Ventures with participation from MaC Venture Capital and others, according to the company-issued release carried by citybiz. The company builds assembly-line modular turbines that it says can be deployed in roughly two weeks, targeting a first 2.5 MW commercial plant in 2027, and it positions geothermal as a firm round-the-clock supply for compute campuses, as ThinkGeoEnergy confirmed. TerraPower Natrium reactor enters UK regulatory assessment. The UK Office for Nuclear Regulation, working with the Environment Agency and Natural Resources Wales, formally began the three-step Generic Design Assessment of TerraPower's Natrium reactor, a 345 MWe sodium-cooled fast reactor with molten-salt storage that can lift output to 500 MWe, the regulator announced. TerraPower, chaired by Bill Gates, also opened TerraPower UK as its first office outside the United States, while its first Natrium plant remains under construction at Kemmerer in Wyoming with a 2030 target, as World Nuclear News reported. Ohmium and Hynfra agree green hydrogen development across MENA and Africa. US-based PEM electrolyser manufacturer Ohmium International and Polish developer Hynfra signed a master cooperation agreement to advance green hydrogen and green ammonia projects in Mauritania, Jordan and Oman, according to the companies' release on BusinessWire. The framework covers the front-end engineering and design stage, with Ohmium supplying electrolyser technology and technical support, and the partners citing energy independence and reduced fossil fuel imports as the rationale, as Energy Monitor reported. The agreement does not yet disclose capacity, tonnage or financial figures. CIM Group closes about $600m financing for California solar and storage. CIM Group's Permanent Power Company closed an approximately $600 million construction financing facility for its Grape project at Westlands Solar Park in California's San Joaquin Valley, the company said on BusinessWire. The facility combines a roughly $372.3 million construction-to-term loan, a $166.7 million tax-credit transfer bridge loan and a $61.3 million letter of credit facility, with Truist as administrative agent, funding 246.4 MWac of solar paired with a 150 MWac and 600 MWh battery system, as confirmed in the company's SEC 8-K filing. Eos Energy lands first order under 2 GWh battery reservation deal. Eos Energy Enterprises announced the first purchase order under Frontier Power USA's 2 GWh capacity reservation agreement, supporting the Redbird project, a 100 MW and 400 MWh four-hour battery system using Eos's zinc-based Z3 technology for the ERCOT market in Texas, the company said on GlobeNewswire. The order fills nearly half of a 1 GWh master supply agreement and the company pointed to a further 12 GWh development pipeline across ERCOT, PJM, CAISO and MISO, as StockTitan reported.

Data Center Dynamics
Jun 18th, 2026
Critical Energy raises $22m to develop modular geothermal plants targeting data centers.

Critical Energy raises $22m to develop modular geothermal plants targeting data centers. Targeting both conventional and enhanced geothermal sectors June 18, 2026 A US company focused on the design and development of factory-built modular geothermal plants for the data center sector has raised $22 million in seed funding. 20 Nov 2025 Meta and others have thrown their backing behind experimental geothermal projects as energy demand from AI continues to rise Los Angeles-based Critical Energy announced the close of its funding round, led by Susa Ventures and Upfront Ventures. It plans to use the proceeds of the funding round to advance its technology and expedite plans for its full-scale commercial plant, which is slated to come online in 2027. Critical Energy was founded by SpaceX alum Spencer Jackson, who serves as its CEO. The company is seeking to offer a bespoke solution for the AI data center sector by building custom on-site geothermal power plants. Jackson said that the company is taking a manufacturing-based approach to geothermal deployments, with its Apex power units designed to be factory-manufactured, shipped in containers, and assembled on-site where they will deliver power. The company has two flagship models, dubbed Apex 2500 and Apex 5000, which provide 2.5MW and 5MW of capacity, respectively. According to the company, the former is targeted for standard conventional geothermal power, and the latter is designed for Enhanced Geothermal Systems (EGS), which have seen growing interest from hyperscale companies. "The thing that needed to be done here was a manufacturing and supply chain change, not a technology invention," Jackson said. The fundraiser reflects the growth of interest in geothermal energy within the data center market. Over the past two years, we have seen a swathe of deals within the sector, with much of the focus on EGS systems, which offer much higher capacity factors than conventional geothermal systems. To date, Google, Meta (x2), Microsoft, and Amazon have all inked deals with geothermal developers, with the bulk of the deals within the US market. More in north america.

TechCrunch
Jun 17th, 2026
SpaceX alum raises $22M to build modular turbines for geothermal power plants

Critical Energy, founded by SpaceX alumnus Spencer Jackson, has raised $19 million in seed funding led by Susa Ventures and Upfront Ventures, plus $3 million in venture debt, bringing total early capital to $22 million. The startup is building modular turbines specifically designed for geothermal power plants. Jackson, who worked on Falcon Heavy and Starship at SpaceX, is applying rocket engine design principles to create factory-built turbines that can be deployed faster than traditional large-scale models. The company's first 2.5 megawatt project is scheduled for completion by 2027 at an existing geothermal site, with a larger 5 megawatt module planned for enhanced geothermal applications. Critical Energy aims to produce gigawatts of capacity within four to five years, positioning geothermal to outpace nuclear fission and fusion development timelines.