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Job Description: Senior Engineer \u2013 Modeling & Simulation (Individual Contributor)
Location: Trane Technologies, Engineering & Technology Center (ETC), Bangalore
Summary:
The Modeling & Simulation team is seeking a highly skilled and collaborative\u00A0Senior Engineer \u2013 Acoustics\u00A0to lead advanced predictive modeling efforts. In this role, you will apply state-of-the-art numerical methodologies to solve complex noise and vibration challenges across our diverse product portfolios.
The ideal candidate will have deep technical expertise spanning\u00A0both vibro-acoustics and aero-acoustics. This role requires a unique balance of rigorous engineering execution alongside a global perspective\u2014focusing on commonizing acoustic methodologies and simulation standards across different regional engineering teams to meet varying regional customer and regulatory requirements.
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Key Responsibilities
Advanced Modeling & Simulation:\u00A0Develop, validate, and execute high-fidelity numerical models to predict and optimize the acoustic performance of HVAC systems, transport refrigeration units, and components (such as compressors, fans, structures, and air handlers).\u00FC\u00A0 Aero-Acoustics & Fluid-Structure Interaction:\u00A0Conduct Computational Aero-Acoustics (CAA) simulations to predict flow-induced noise, fan noise, and turbulence-driven acoustic phenomena.
\u00FC\u00A0 Vibro-Acoustics & Structural Dynamics:\u00A0Analyze structural-acoustic coupling, structure-borne noise transmission, and vibration propagation using Finite Element Method (FEM) and Boundary Element Method (BEM) solvers.
\u00FC\u00A0 Regional Commonization & Standards:\u00A0Champion efforts to standardize and commonize acoustics simulation methodologies globally. Collaborate with international design centers to harmonize workflows while addressing varying regional regulations and market requirements.
\u00FC\u00A0 Experimental Correlation:\u00A0Collaborate closely with physical testing laboratories to design validation tests, analyze dynamic measurement data (sound power, vibration, modal testing), and correlate experimental results with simulation models.
\u00FC\u00A0 Design Optimization:\u00A0Partner with product development teams to provide actionable, physics-based design recommendations early in the development cycle to reduce noise and enhance sound quality.
\u00FC\u00A0 Innovation:\u00A0Keep abreast of emerging simulation technologies, and drive continuous improvement in simulation capability and speed.
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Required Qualifications
\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0 \u2022 Master\u2019s degree (M.S./M.Tech) in Mechanical Engineering, Aerospace Engineering, Acoustics, or a highly related technical discipline.
\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0\u00A0 \u2022 PhD will be a plus.
\u2022 3\u20135+ years of hands-on industrial experience in acoustics modeling and simulation..
\u2022 Knowledge in Acoustics and noise control (specific to HVAC products is desirable).
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Personal Attributes
\u2022 Highly analytical with strong problem\u2011solving capability.
\u2022 Self-driven, with the ability to manage work priorities independently.
\u2022 Collaborative mindset with strong initiative to influence design improvements.
\u2022 Proven ability to apply best\u2011practice approaches and engage in continuous learning.
\u2022 Ability to lead technically within cross-functional programs and drive engineering clarity.
We offer competitive compensation and comprehensive benefits and programs. We are an equal opportunity employer; all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, pregnancy, age, marital status, disability, status as a protected veteran, or any legally protected status.