Cryogenic Sub-systems
Explore the relationship between liquefaction, refrigeration, and isothermal processes in accelerator systems. Understand the equivalent exergy in Watts for different gases at 1 bar and 300K. Calculate the reversible input power required for latent cooling and the total cooling in different scenario
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Optimizing Combined Heat and Power Systems in Alumina Refineries
Thermodynamics plays a crucial role in optimizing Combined Heat and Power (CHP) systems in process industries like Alumina Refineries. This study focuses on minimizing losses and maximizing efficiency through energy, exergy, and thermodynamic analysis. By reconfiguring the system and utilizing low-g
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Thermodynamics Tutorial: Exergy Analysis of Processes
In this tutorial, we delve into the analysis of thermodynamic processes through the concept of exergy. We explore the determination of exergy destroyed, reversible work, equilibrium temperatures, wasted work potential, and more in various scenarios involving insulated systems. Detailed calculations
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Exergy, Economic Growth, and Degrowth: A Critical Perspective
This presentation delves into the relationship between exergy, economic growth, and degrowth from a thermodynamic perspective, exploring the origins of exergy-economics and physical ideas. It emphasizes the importance of exergy as a measure of useful work in economic systems, contrasting energy and
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Optimizing Heat Exchange Systems with Minimal Irreversibility
In the field of finite-time thermodynamics, minimizing entropy production in heat exchange systems is crucial to reduce exergy loss. Tsirlin's approach focuses on finding the least lossy design by optimizing heat conductance, capacity rates, and heat load while considering various streams and phase
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