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Sustainable energy conversion through the use of Organic Rankine Cycles for waste heat recovery and solar applications

机译:通过将有机朗肯循环用于废热回收和太阳能应用,实现可持续能源转换

摘要

This thesis contributes to the knowledge and the characterization of small-scale Organic Rankine Cycles (ORC). It is based on experimental data, thermodynamic models and case studies.The experimental studies include:1. A prototype of small-scale waste heat recovery ORC using an open-drive oil-free scroll expander, declined in two successive versions with major improvements.2. A prototype of hermetic scroll expander tested on vapor test rig designed for that purpose.The achieved performance are promising, with expander overall isentropic effectivenesses higher than 70% and cycle efficiencies comparable or higher than the typical efficiencies reported in the scientific literature for the considered temperature range.New steady-state semi-empirical models of each component are developed and validated with the experimental data. The global model of the ORC prototype allows predicting its performance with a good accuracy and can be exploited to simulate possible improvements or alternative cycle configurations.Dynamic models of the cycle are also developed for the purpose of evaluating the system's reaction to transient conditions. These models are used to define and compare different control strategies.The issues of cycle optimization and fluid selection are treated using the steady-state semi-empirical models. The thermodynamic optimization of such cycles is first demonstrated by practical examples. Furthermore, three different methods for fluid selection are proposed, investigated and compared. Their respective advantages and fields of application are described.Finally, two prospective studies of small-scale ORC systems are proposed. The first one is a solar ORC designed for the rural electrification of remote regions in Africa. This prototype aims at competing with the photovoltaic technology, with the advantage of generating hot water as by-product. The second prospective study deals with the recovery of highly transient heat sources. Advanced regulation strategies are proposed to address the practical issues inherent to such systems. These strategies are compared with the state-of-the-art strategies and show a non-negligible potential of performance improvement.
机译:本论文为小规模有机朗肯循环(ORC)的研究和表征提供了帮助。它基于实验数据,热力学模型和案例研究。实验研究包括:1。使用开放式无油涡旋膨胀机的小规模余热回收ORC的原型,在两个连续的版本中有所下降,并进行了重大改进。2。为此目的而设计的气密性涡旋膨胀机的原型已在蒸气试验台上进行了测试,所取得的性能是有希望的,膨胀机的整体等熵效率高于70%,循环效率与科学文献报道的考虑到温度的典型效率相近或更高。开发了每个组件的新稳态半经验模型,并通过实验数据进行了验证。 ORC原型的全局模型可以准确地预测其性能,并且可以用来模拟可能的改进或替代的循环配置。还开发了循环的动态模型,以评估系统对瞬态条件的反应。这些模型用于定义和比较不同的控制策略。使用稳态半经验模型处理循环优化和流体选择的问题。此类循环的热力学优化首先通过实际示例进行说明。此外,提出,研究和比较了三种不同的流体选择方法。描述了它们各自的优点和应用领域。最后,提出了两个小型ORC系统的前瞻性研究。第一个是为非洲偏远地区的农村电气化设计的太阳能ORC。该原型旨在与光伏技术竞争,其优势是产生热水作为副产品。第二项前瞻性研究涉及高瞬态热源的回收。为了解决这种系统固有的实际问题,提出了先进的调节策略。这些策略与最新策略进行了比较,显示出性能提升的潜力不可忽略。

著录项

  • 作者

    Quoilin, Sylvain;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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