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首页> 外文期刊>Journal of Marine Science and Engineering >Ocean Thermal Energy Conversion Using Double-Stage Rankine Cycle
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Ocean Thermal Energy Conversion Using Double-Stage Rankine Cycle

机译:利用双阶段朗肯循环的海洋热能转化

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摘要

Ocean Thermal Energy Conversion (OTEC) using non-azeotropic mixtures such as ammonia/water as working fluid and the multistage cycle has been investigated in order to improve the thermal efficiency of the cycle because of small ocean temperature differences. The performance and effectiveness of the multistage cycle are barely understood. In addition, previous evaluation methods of heat exchange process cannot clearly indicate the influence of the thermophysical characteristics of the working fluid on the power output. Consequently, this study investigated the influence of reduction of the irreversible losses in the heat exchange process on the system performance in double-stage Rankine cycle using pure working fluid. Single Rankine, double-stage Rankine and Kalina cycles were analyzed to ascertain the system characteristics. The simple evaluation method of the temperature difference between the working fluid and the seawater is applied to this analysis. From the results of the parametric performance analysis it can be considered that double-stage Rankine cycle using pure working fluid can reduce the irreversible losses in the heat exchange process as with the Kalina cycle using an ammonia/water mixture. Considering the maximum power efficiency obtained in the study, double-stage Rankine and Kalina cycles can improve the power output by reducing the irreversible losses in the cycle.
机译:已经研究了使用非共沸混合物(例如氨/水)作为工作流体和多级循环的海洋热能转化(OTEC),因为海洋温度差异较小,因此可以提高循环的热效率。几乎不了解多级循环的性能和有效性。另外,先前的热交换过程的评估方法不能清楚地表明工作流体的热物理特性对功率输出的影响。因此,本研究调查了使用纯工作流体的双级兰金循环中热交换过程中不可逆损失的减少对系统性能的影响。分析了单兰金循环,双级兰金循环和卡利纳循环,以确定系统特性。将工作流体和海水之间的温差的简单评估方法应用于此分析。从参数性能分析的结果可以认为,与使用氨/水混合物的卡利纳循环一样,使用纯工作流体的二级兰金循环可以减少热交换过程中的不可逆损失。考虑到研究中获得的最大功率效率,双级兰金循环和卡利纳循环可以通过减少循环中的不可逆损耗来提高功率输出。

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