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Teaching Applied Thermodynamics with EES

机译:用EES教学应用热力学

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摘要

Applied Thermodynamics is a graduate course at Kettering University. Undergraduate Thermodynamics serves as the only prerequisite. This course covers the concepts introduced in undergraduate thermodynamics and continues with the coverage of thermodynamic relations, mixtures and solutions, psychrometry, phase and chemical equilibrium, and chemical reactions. These concepts are then applied in detail to various power and refrigeration cycles. Topics such as mole fraction, mass fraction, enthalpy of formation, adiabatic flame temperature and the application of the Second Law to reacting mixtures are covered. Team projects are incorporated into this graduate course. Recent projects included a turbojet engine and a non-ideal regenerative steam power plant. The objective of the first project was to compute component efficiencies and the thrust force for a jet engine. The second project aimed to optimize the thermal efficiency of a non-ideal regenerative steam power plant by varying the feed-water heater pressure. Both projects utilized the Engineering Equation Solver (EES), a general equation solver with built-in functions for thermodynamic and transport properties. This article describes the projects and presents the solution techniques and the computed results. For the jet engine, computed results are based on actual test data obtained in Energy Systems Laboratory at Kettering University.
机译:应用的热力学是近距离大学的研究生课程。本科热力学作为唯一的先决条件。本课程涵盖本科热力学中引入的概念,并继续覆盖热力学关系,混合物和溶液,心理测量,相和化学平衡和化学反应。然后将这些概念详细应用于各种动力和制冷循环。覆盖了摩尔级分,质量分数,形成,绝热火焰温度和第二定律应用与反应混合物的局部。团队项目纳入本研究生课程。最近的项目包括涡轮喷气发动发动机和非理想的再生蒸汽发电厂。第一个项目的目的是计算喷气发动机的分量效率和推力。第二个项目旨在通过改变进料热水器压力来优化非理想再生蒸汽发电厂的热效率。两个项目都利用了工程方程求解器(EES),一般等式求解器,具有用于热力学和传输特性的内置功能。本文介绍了项目并提出了解决方案技术和计算结果。对于喷气发动机,计算结果基于在Kettering大学的能量系统实验室中获得的实际测试数据。

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