Mastering steam tables and Mollier diagram

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Free Download Mastering steam tables and Mollier diagram
Published 12/2025
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 4h 22m | Size: 5.81 GB
Learn to read, interpret, and apply steam tables and the Mollier diagram with confidence to Rankine cycles

What you'll learn
Understand terminologies used in pure substance
Learn to read steam tables
Learn to read mollier chart
solve complex problems on steam power plant cycles using steam tables and mollier chart
Requirements
Basic understanding of terms used in thermodynamics
Description
This course is specially designed to make the concept of pure substance easy. The course covers the various phases-solid, liquid, and vapour-and the phase transitions such as melting, vaporisation, condensation, and sublimation. Special attention is given to understanding the saturation conditions, where two phases coexist in equilibrium. Learners will study important reference points such as the critical point, triple point, and boiling/freezing points under standard pressure conditions.Lectures include a thorough explanation of the concept of pure substance, PV, PT, TS charts, terminologies used in data handbooks, reading the Mollier chart, and solving numerical problems using the data handbook and Mollier chart. Understanding the concepts mentioned above will enable the application of these concepts to Rankine cycle or steam power plant cycles and their subsequent solution. The course equips students with the skills to evaluate thermodynamic properties such as pressure, temperature, specific volume, enthalpy, and entropy using data tables and Mollier charts. Emphasis is placed on real-world applications in power cycles, refrigeration, and process systems.By the end of this course, students will be able to:Identify and describe different phases of a pure substance.Analyse phase-change processes using property diagrams.Determine thermodynamic properties from tables and charts.Apply the concept of pure substances in basic thermodynamic cycles.
Who this course is for
Undergraduate students, post graduate students, engineers from steam power plants
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