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Aeroacoustics Jobs (NOW HIRING)

Knowledge of air management & aeroacoustics and structural analysis. * Knowledge of manufacturing methods used in HVAC&R field; industrial experience is a plus but not required. * Familiarity with ...

Knowledge of air management & aeroacoustics and structural analysis. * Knowledge of manufacturing methods used in HVAC&R field; industrial experience is a plus but not required. * Familiarity with ...

Expertise in fan impeller design, aeroacoustics modeling, or refrigeration/thermal system control design Additional Information Compensation at Joby is a combination of base pay and Restricted Stock ...

NonDuke Student/Intern

Durham, NC · On-site

$16.25 - $21/hr

Frank-Ito on various projects related to upper airway respiratory physiology and pathophysiology associated with obstructive upper airway aerodynamics and aeroacoustics. The preferred candidate will ...

The group is in charge of all Noise, Vibration and Aeroacoustics test and development activities in support of prototype and pilot vehicle development to assure that the NVH performance meets or ...

Expertise in acoustics, aeroacoustics, aerodynamics, and propulsion * Experience with low-speed wind tunnel testing and advanced instrumentation (e.g., beam-forming, pressure scanners, balance ...

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Aeroacoustics information

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$26

$61

How much do aeroacoustics jobs pay per hour?

As of Aug 9, 2026, the average hourly pay for aeroacoustics in the United States is $26.34, according to ZipRecruiter salary data. Most workers in this role earn between $15.14 and $30.77 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an aeroacoustics engineer, and why are they important?

To excel as an Aeroacoustics Engineer, you need a strong background in aerospace engineering, fluid dynamics, and acoustics, typically supported by a relevant degree such as aerospace or mechanical engineering. Familiarity with computational fluid dynamics (CFD) software, acoustic simulation tools, and data analysis platforms is often required, along with experience in experimental testing. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills set top performers apart in this field. These competencies are crucial for designing quieter aircraft and solving complex noise-related challenges in aerospace applications.

What is the difference between Aeroacoustics vs Aeroacoustics Engineer?

AspectAeroacousticsAeroacoustics Engineer
CredentialsPhysics or engineering degree, specialized trainingPhysics or engineering degree, often with certifications in acoustics or fluid dynamics
Work EnvironmentResearch labs, aerospace companies, universitiesDesign offices, testing facilities, aerospace industry
Industry UsageField of study and research focusApplied role designing and analyzing noise reduction solutions

While Aeroacoustics refers to the scientific study of noise generated by aerodynamic flows, an Aeroacoustics Engineer applies this knowledge to develop noise mitigation solutions in aerospace applications. The engineer's role involves practical design, testing, and implementation, whereas Aeroacoustics as a field emphasizes research and theoretical understanding.

What are the typical collaborations involved in an aeroacoustics role within an aerospace engineering team?

Professionals in Aeroacoustics often collaborate closely with aerodynamics engineers, structural analysts, and test engineers to address noise issues in aircraft or aerospace components. This multidisciplinary teamwork is essential for integrating noise reduction solutions into overall design, ensuring compliance with regulations, and optimizing performance. Regular meetings and joint problem-solving sessions are common, and effective communication skills are crucial for translating complex acoustic data into actionable design changes. These collaborations not only help solve challenging technical problems but also provide opportunities for professional growth and cross-functional learning.

What is aeroacoustics?

Aeroacoustics is the study of noise generated by the movement of air, particularly when it interacts with solid objects like aircraft, vehicles, or wind turbines. This field blends principles from aerodynamics and acoustics to understand, predict, and control sound produced by airflow. Aeroacoustics professionals work to minimize unwanted noise for environmental compliance, passenger comfort, and improved performance in a variety of industries, especially aerospace and automotive. Their research can involve simulations, laboratory experiments, and field testing.
More about Aeroacoustics jobs
Infographic showing various Aeroacoustics job openings in the United States as of August 2026, with employment types broken down into 100% Full Time. Highlights an 95% Physical, and 5% Remote job distribution, with an average salary of $54,791 per year, or $26.3 per hour.

Engineer II - NPD

ClimateMaster

Oklahoma City, OK • On-site

Full-time

Re-posted 11 days ago


Job description

Description
POSITION SUMMARY
This role will work in the New Product Development (NPD) team and will be responsible for design, development, and implementation of residential and commercial HVAC products that meet or exceed best-in-class performance and reliability targets across multiple platforms and product families, as well as manufacturing support for existing products.
ESSENTIAL FUNCTIONS
Essential Functions Statement(s)
  • Provide measurable contribution to NPD projects and sustaining initiatives.
  • Manage individual projects throughout the complete product development cycle.
  • Design, optimize and qualify HVAC systems employing advanced analytical methods and experimental techniques.
  • Lead product qualification and agency compliance test programs.
  • Conduct analytical studies employing state-of-the-art simulation tools.
  • Ensure design quality, supporting your calculations and design proposals.
  • Support manufacturing, sales & marketing, quality, and supply chain functions.
  • Interface with vendors, customers, and field personnel.
  • Conduct presentations for technical and business personnel.
  • Document product designs by preparing bills of material, drawings, and product change notifications.
  • Interface with regulatory agencies and test agencies.

• Model parts and create assemblies utilizing Creo and Windchill PLM Software
• Maintain quality service by following organization standards.
• Collaborate cross-functionally to ensure new products are optimized for manufacturability, installation and field service.
SKILLS & ABILITIES:
Education:
• Bachelor's or master's degree in mechanical engineering. Preferred emphasis on HVAC system design or thermal sciences.
Experience:
• Mid-Level: 5 years [SH1] of Mechanical engineering design & project experience preferred.
• HVAC Industry experience preferred
Computer Skills:
• Working familiarity with various CAD and 2d drawing programs
• Experience with start-of-the-art simulation tools.
• Familiarity with computer programming languages.
• Familiarity with Microsoft Office suite products.
Certificates & Licenses:
• Lean or Six Sigma certificates and training preferred.
Other Requirements:
  • Knowledge of HVAC system design and applications; familiarity with the systems component design, integration, and interactions.
  • Familiarity with the New Product Development (NPD) process, Design for Six Sigma (DFSS) and Design for Manufacturing and Assembly (DFMA) principles.
  • Knowledge of the fundamentals of thermodynamics, fluid mechanics, heat transfer, and heat exchanger design.
  • Hands-on skills and experience in working with laboratory equipment, test stands and instrumentation.
  • Knowledge of industry standards and agency compliance.
  • Knowledge of air management & aeroacoustics and structural analysis.
  • Knowledge of manufacturing methods used in HVAC&R field; industrial experience is a plus but not required.
  • Familiarity with system controls, sequence of operations and electrical wiring methods.
  • Familiarity with data acquisition, advanced experimental techniques, instrumentation, calibration, measurement systems, uncertainty analysis and DoE concepts