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⏱ 2h 42m📚 27 lessons🎧 Audio version
Heat Exchanger Problem Solving for GATE Exam Prep
Master thermal design calculations, LMTD, and NTU methods to confidently solve heat exchanger questions in your GATE Mechanical Engineering exam.
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About this course
Are you preparing for the GATE Mechanical Engineering exam and looking to master heat exchanger calculations? Understanding the fundamental thermal principles and mathematical formulations of heat transfer equipment is crucial for scoring highly in the thermal sciences section. This text-only course provides a structured path to mastering heat exchanger problems. You will start with foundational definitions and classification of heat exchangers, progress through governing equations, and learn step-by-step methodologies to solve exam-style problems with precision. By reading through detailed derivations, clear explanations, and guided written practice scenarios, you will build the analytical skills needed to tackle any heat exchanger question. What you'll learn: Understand foundational concepts of heat transfer, overall heat transfer coefficients, and fouling factors; Apply the Log Mean Temperature Difference (LMTD) method to parallel and counter-flow heat exchangers; Master the Effectiveness-NTU (Number of Transfer Units) method for complex flow arrangements; Solve multi-pass and cross-flow heat exchanger problems using correction factors; Analyze limiting cases, such as gas turbine regenerators, condensers, and evaporators; Practice step-by-step mathematical derivations and exam-focused numerical problems through written exercises; Explore modern concepts of thermal design optimization and basic pinch analysis principles. The course begins with essential terminology and basic classifications before moving into the core mathematical formulations of LMTD and NTU methods. You will then work through a curated selection of written problem-solving walkthroughs designed to mirror the style and complexity of GATE exam questions. This course is designed for mechanical engineering students, GATE aspirants, and anyone seeking a solid conceptual and mathematical foundation in heat exchanger analysis. No advanced prior knowledge of heat exchanger design is required, though a basic understanding of engineering thermodynamics is helpful. Start reading today to master heat exchanger calculations and boost your exam preparation.
What you'll get
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⚡Short & focused 2h 42m of practical content
Certificate of completion
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