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Fire Protection Engineer Jobs in Alaska (NOW HIRING)

As a Protection & Control Engineer, you will have the opportunity to act as the technical lead for all engineering activities in assignments. Each day, you will ensure the activities related to all ...

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Fire Protection Engineer information

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$49K

$107.2K

$185.8K

How much do fire protection engineer jobs pay per year?

As of Aug 6, 2026, the average yearly pay for fire protection engineer in Alaska is $107,174.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,400.00 and $120,600.00 per year, depending on experience, location, and employer.

How hard is it to become a fire protection engineer?

Becoming a fire protection engineer typically requires a bachelor's degree in fire protection engineering, mechanical engineering, or a related field, along with knowledge of fire safety codes and systems. Gaining relevant experience and obtaining professional certifications, such as the Professional Engineer (PE) license, can also be necessary to advance in the field.

What is a fire protection engineer?

Fire Protection Engineers are professionals who specialize in designing systems and solutions to prevent, control, and mitigate the effects of fire. They apply principles of engineering and science to protect people, property, and the environment from fire hazards. Their responsibilities often include designing fire detection and suppression systems, ensuring buildings comply with fire codes, and conducting risk assessments. Fire Protection Engineers work in a variety of settings, including construction, manufacturing, consulting, and government agencies. Their expertise is critical in creating safer buildings and communities.

What are the key skills and qualifications needed to thrive as a fire protection engineer, and why are they important?

To thrive as a Fire Protection Engineer, you need a solid background in engineering principles, fire dynamics, building codes, and typically a degree in fire protection or related engineering field. Familiarity with technical tools such as AutoCAD, fire modeling software (e.g., FDS), and relevant certifications like PE (Professional Engineer) in fire protection are commonly required. Strong analytical thinking, communication skills, and attention to detail help professionals excel in designing safety systems and collaborating with multidisciplinary teams. These skills are critical for ensuring effective fire prevention, code compliance, and the protection of lives and property.

How does a fire protection engineer typically collaborate with architects and construction teams during a building project?

Fire Protection Engineers play a crucial role in the planning and construction process by working closely with architects and construction teams to ensure that fire safety measures are integrated seamlessly into building designs. They review architectural plans, provide recommendations on fire detection and suppression systems, and help interpret fire codes and regulations. Regular meetings and site visits are common, allowing the engineer to address potential challenges, coordinate installation timelines, and verify compliance throughout the construction phase. This collaborative approach helps ensure both safety and functionality in the finished structure.

What does a fire protection engineer do?

A fire protection engineer creates methods and products to prevent fires and investigates buildings to identify fire hazards. In this career, you verify housing safety requirements and update older buildings to minimize dangers. You also teach others the best ways to handle fires and the skills they need to escape safely. You review fire-related accidents and implement a plan to avoid future damage. This job position is crucial in the private sector, but you can also find many opportunities with the government, such as positions in national and state parks or any areas with lots of plants and wildlife.

Are fire protection engineers in demand?

Fire protection engineers are in steady demand due to ongoing safety regulations and the need for building code compliance. They work in various sectors such as construction, manufacturing, and consulting, often requiring certifications like NICET or PE licensure. Employment prospects are generally favorable for those with specialized skills and experience in fire safety systems and codes.

What is the difference between Fire Protection Engineer vs Fire Safety Specialist?

AspectFire Protection EngineerFire Safety Specialist
Required CredentialsBachelor's in Fire Protection Engineering, PE license often preferredCertifications like CFPS, training in fire safety protocols
Work EnvironmentDesigning systems, analyzing fire risks, working with engineers and architectsConducting safety inspections, training, developing safety plans
Employer & Industry UsageEngineering firms, construction, industrial facilitiesGovernment agencies, corporate safety departments, consulting firms
Common Search & Comparison IntentUnderstanding engineering roles in fire safety designFocus on safety procedures and compliance

Fire Protection Engineers primarily design and analyze fire safety systems, requiring engineering credentials and working in technical environments. Fire Safety Specialists focus on implementing safety protocols, conducting inspections, and training, often holding certifications like CFPS. Both roles are vital in fire safety but differ in scope and responsibilities.

What job categories do people searching Fire Protection Engineer jobs in Alaska look for? The top searched job categories for Fire Protection Engineer jobs in Alaska are:
What are popular job titles related to Fire Protection Engineer jobs in AK? For Fire Protection Engineer jobs in AK, the most frequently searched job titles are:
Infographic showing various Fire Protection Engineer job openings in Alaska as of August 2026, with employment types broken down into 86% Full Time, 11% Part Time, and 3% Contract. Highlights an 74% Physical, 1% Hybrid, and 25% Remote job distribution, with an average salary of $107,174 per year, or $51.5 per hour.

Fire Protection Engineer - Anchorage, AK

NANA Worley

Anchorage, AK โ€ข On-site

Other

Re-posted 6 hours ago


Job description


NANA Worley is accepting applications for multiple positions at varying classifications from Fire Protection Engineers to Fire Protection Specialist Engineers dependent on experience and competencies.
This position provides fire protection discipline support as part of a multi-discipline engineering and design team by researching, specifying, developing, designing, engineering, or testing of fire and gas protective (detection, signaling, notification, mitigation, suppression, and passive protective) systems. Individuals are expected to apply advanced knowledge of engineering principles, methods, and techniques to project assignments.
*This is a full time, non-rotational position located at NANA Worley headquarters in Anchorage, AK*
*This position is eligible for the NANA Worley employee referral program, available only to current NANA Worley employees*
Responsibilities
  • Researches and analyzes data such as client design proposals, specifications, and manuals to determine feasibility of design or application.
  • Analyzes requirements of codes and standards to assess the fire protective elements required to meet fire protective objectives.
  • Works with clients to develop a project's scope of work, estimates, and/or schedules.
  • Reviews and approves project drawings, standards, and specifications.
  • Develops major equipment, material selection, and construction specifications.
  • Uses computer assisted engineering and design software and equipment to perform engineering tasks.
  • Directs and coordinates construction, installation, fabrication and/or operational testing activities to ensure services, products and/or systems conform to engineering design and client criteria.
  • Ensures that all assigned activities and operations comply with applicable codes, regulations, and laws.
  • Evaluates field installations and recommends design modifications.
  • Coordinates activities with other project disciplines involved in fabrication, operation, application, and installation or repair of various materials, products, or systems.
  • Provides technical direction, support and information to other specialists, engineers, designers, and drafters.
  • Consistently demonstrates professional skills in structuring assigned activities, creativity, teamwork, communications, operational efficiencies, handling of a client's changing needs, decision making, and analyzing and solving problems.
  • Other duties that are pertinent to the department or unit's success also may be assigned.
  • This position has no supervisory responsibilities.

Qualifications
The following describes the education and experience typically required to develop the competencies for each classification level; competencies may be demonstrated with other combinations of education, training, experience, and achievements:
Engineer
  • Bachelor's degree in a relevant engineering discipline from an ABET-accredited institution required.
  • A minimum of 2 years of work experience, with oil and gas industry experienced preferred; and
  • Engineer in Training certificate (EIT) or passed the Fundamentals of Engineering (FE) Exam preferred.

Senior Engineer
  • Bachelor's degree in a relevant engineering discipline from an ABET-accredited institution; and
  • 4-10 years of experience in the oil and gas industry; and
  • PE license strongly desired

Staff Engineer
  • Bachelor's degree in a relevant engineering discipline from an ABET-accredited institution, 8-15 years of experience in the oil and gas industry, and PE license; or
  • Bachelor's degree and 15+ years of experience.

Senior Staff Engineer
  • Bachelor's degree in a relevant engineering discipline from an ABET-accredited institution, 15+ years of experience in the oil and gas industry, and PE license; or
  • Bachelor's degree and 20+ years of experience.

Principal Engineer
  • Bachelor's degree in a relevant engineering discipline from an ABET-accredited institution, 20+ years of experience in the oil and gas industry, and PE license; or
  • Bachelor's degree and 25+ years of experience.

Preferred Experience:
  • Responsible engineering charge of fire protection engineering for at least one major industrial (petroleum production, processing, storage, or transport; nuclear or thermal electrical power plant; paper or chemical process plant; or similar) project from hazard analysis through final commissioning.
  • Advanced knowledge and experience in multiple competency areas in fire protection engineering - fire and gas detection, signaling, and control systems; audible and visible notification; gas modeling and gas mitigation systems, fire control and suppression systems, passive fire protection systems; and life-safety egress analysis and site planning studies.
  • Ability to successfully delegate tasks as demonstrated by experience with several recent projects.
  • Experience with or education in engineering for Cold regions or Arctic conditions.
  • Offshore platform fire protection experience.
  • Preparation and presentation of peer-reviewed articles in fire protection engineering publications, or and fire protection engineering conferences.
  • Performance-based design of audible and visible notification compliant with NFPA 72 and other standards.
  • Experience with fire protection of living quarters and camps.
  • Experience working as part of project teams performing work in multiple locations (buildings, cities, or countries).
  • Licensure as a P. Eng. in Alberta or another Canadian Jurisdiction.

Language Skills:
Ability to read, analyze and interpret common scientific and technical journals. Ability to respond to common inquiries or complaints from clients, regulatory agencies, or members of the business community. Ability to effectively present information to management and client.
Mathematical Skills:
Comprehend and apply principles of calculus, modern algebra, and statistical theory. Ability to work with concepts such as limits, rings, quadratic and differential equations and proofs and theorems. Ability to apply mathematical operations to work projects.
Reasoning Ability:
Apply principles of logical or scientific thinking to a wide range of intellectual and practical problems. Ability to deal with non-verbal symbols (formulas, scientific equations, graphs, etc.) in the most difficult phases. Ability to deal with a variety of abstract and concrete variables. Ability to interpret a variety of instructions furnished in written, oral, diagram or schedule form.
Computer Skills:
To perform this job successfully, an individual should have a working knowledge of Microsoft Word, Excel, Outlook, and current versions of AutoCAD design software. Proficiency with the below programs is preferred:
    • MS Access
    • Use of fire and smoke modeling software
    • Use of sprinkler hydraulic modeling software
    • Use of Special Hazard gaseous suppression software
    • Use of Special Hazard Water Mist suppression hardware
    • Use of gas dispersion and thermal hazard software
    • Use of modeling software for performance-based design of audible and visible notification compliant with NFPA 72 and other standards
    • Use of egress modeling software
    • Computer modeling of temperature rise in steel and concrete structural members with and without passive fire protection.

Competencies
To perform the job successfully, an individual should demonstrate the following competencies:
Analytical
Synthesizes complex or diverse information;
Collects and researches data;
Uses intuition and experience to complement data;
Designs workflows and procedures.
Design
Generates creative solutions;
Translates concepts and information into images;
Uses feedback to modify designs;
Applies design principles;
Demonstrates attention to detail.
Problem Solving
Identifies and resolves problems in a timely manner;
Gathers and analyzes information skillfully;
Develops alternative solutions;
Works well in group problem solving situations;
Uses reason even when dealing with emotional topics.
Technical Skills
Assesses own strengths and weaknesses;
Pursues training and development opportunities;
Strives to continuously build knowledge and skills;
Shares expertise with others.
Interpersonal
Focuses on solving conflict, not blaming;
Maintains confidentiality;
Listens to others without interrupting;
Keeps emotions under control;
Remains open to others' ideas and tries new things.
Oral Communication
Speaks clearly and persuasively in positive or negative situations;
Listens and gets clarification;
Responds well to questions;
Demonstrates group presentation skills;
Participates in meetings.
Team Work
Balances team and individual responsibilities;
Exhibits objectivity and openness to others' views;
Gives and welcomes feedback;
Contributes to building a positive team spirit;
Puts success of team above own interests;
Able to build moral and group commitments to goals and objectives;
Supports others' efforts to succeed;
Recognizes accomplishments of other team members.
Written Communication
Writes clearly and informatively;
Edits work for spelling and grammar;
Varies writing style to meet needs;
Presents numerical data effectively;
Able to read and interpret written information.
Strategic Thinking
Develops strategies to achieve long-term success.
Safety and Security
Observes safety and security procedures.
Working Conditions and Physical Requirements
The work environment characteristics described here are representative of those an employee encounters while performing the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.
The noise level in the work environment is usually quiet.
The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.
While performing the duties of this job, the employee is frequently required to sit. The employee is occasionally required to walk; use hands to finger, handle or feel; and talk or hear. The employee must occasionally lift and/or move up to 25 pounds.