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An experimental study on the organic Rankine cycle to determine as to how efficiently utilize fluctuating thermal energy

机译:关于有机朗肯循环的实验研究,以确定如何有效利用波动的热能

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Thermal properties of the available energy such as maximum temperature and thermal energy capacity are greatly influenced to the design of energy conversion system like the organic Rankine cycle (ORC). Useful thermal energy can be obtained from: waste heat energy, geothermal energy, solar heat energy, biomass energy, and so on. However, these cannot usually be supplied at constant levels. Hence, the temperature and flowrate of the thermal energy can vary while the ORC is working. In order to efficiently utilize such fluctuating thermal energy, an experimental study was conducted while adjusting the mass flowrate and the temperature of the working fluid. Three supersonic nozzles and an impulse type turbine were applied. The supersonic nozzle was adopted to increase the spouting velocity for efficient operation of the impulse turbine. The nozzle was designed to reach a velocity Of Mach 1.6 at the nozzle exit, and three nozzles were used to control the mass flowrate in this experiment. The experimental results were compared with the predicted results obtained by the cycle analysis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:可用能量的热特性,例如最高温度和热能容量,极大地影响了能量转换系统的设计,例如有机朗肯循环(ORC)。有用的热能可从以下方面获得:废热能,地热能,太阳能热能,生物质能等。然而,这些通常不能以恒定水平供应。因此,在ORC工作时,热能的温度和流量会发生变化。为了有效地利用这种波动的热能,在调节质量流量和工作流体的温度的同时进行了实验研究。应用了三个超音速喷嘴和一个脉冲式涡轮机。采用超音速喷嘴以增加喷射速度,以使脉冲涡轮有效运行。喷嘴设计为在喷嘴出口处达到1.6马赫的速度,并且在此实验中使用了三个喷嘴来控制质量流量。将实验结果与通过循环分析获得的预测结果进行比较。 (C)2015 Elsevier Ltd.保留所有权利。

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