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Working fluid selection for an increased efficiency hybridized geothermal-solar thermal power plant in Newcastle, Utah.

机译:在犹他州纽卡斯尔,为提高效率的混合式地热太阳能热电厂选择工作流体。

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摘要

Renewable sources of energy are of extreme importance to reduce greenhouse gas emissions from traditional power plants. Such renewable sources include geothermal and solar thermal energy. These involve harnessing the heat from underground water sources or from solar irradiance. The heat energy is used to vaporize a working fluid which turns a turbine and generator system to produce electricity. The working fluid is then condensed and reused in the cycle. The working fluid needs to be carefully selected based on the geothermal brine temperature or the amount of solar irradiation available and the fluid's thermodynamic properties.;There are many low temperature geothermal resources that have the potential to generate commercial electricity, but due to their low temperatures cannot do so efficiently. The efficiency of geothermal power plants can be increased by adding solar energy. A commercially successful method of concentrating solar power is the solar trough. A solar trough is a parabolic mirror that focuses solar energy onto a collector tube. A heat transfer fluid is circulated within the tube to collect the energy. This heat transfer fluid would be heated and passed through a heat exchanger with the working fluid in a binary power plant to increase the working fluid's enthalpy.;There are vast quantities of solar irradiance data available for many locations throughout the United States. The data of interest are the direct normal irradiance which is measured by a pyrheliometer and a solar tracking device. Published data have shown that the direct normal radiation can be as high as 1,000 W/m2 during peak hours of the day with a daily average, during sunlight hours, of 850 W/m2. With these energy rates it could be advantageous to use this solar energy to increase the enthalpy of a power system. Specific measurements should be made at a geothermal site in order to know if such a project is feasible. If the project is feasible, a working fluid for the power cycle should be selected and an economic analysis should be performed in order to make project recommendations.
机译:可再生能源对于减少传统发电厂的温室气体排放极为重要。这样的可再生资源包括地热和太阳能。其中包括利用地下水源或太阳辐射产生的热量。热能用于汽化工作流体,该流体使涡轮机和发电机系统发电。然后将工作流体冷凝并在循环中重新使用。需要根据地热盐水温度或可用的太阳辐射量以及流体的热力学性质来仔细选择工作流体。;由于低温,有许多低温地热资源可能产生商业电力无法有效地做到这一点。地热发电厂的效率可以通过增加太阳能来提高。商业上成功的集中太阳能的方法是太阳能槽。太阳槽是一个抛物面反射镜,它将太阳能聚焦到集热管上。传热流体在管内循环以收集能量。该传热流体将被加热,并与二元电厂中的工作流体一起通过热交换器,以增加工作流体的焓。整个美国许多地方都有大量的太阳辐照度数据。感兴趣的数据是直接日射辐照度,它是通过日射仪和太阳跟踪设备测得的。已发布的数据显示,在一天的高峰时段,正常的直接辐射可能高达1,000 W / m2,而在日照时间,则每天平均为850 W / m2。以这些能量速率,使用这种太阳能来增加电力系统的焓可能是有利的。为了确定该项目是否可行,应在地热场所进行具体测量。如果项目可行,则应选择动力循环的工作流体,并应进行经济分析以提出项目建议。

著录项

  • 作者

    Carnell, John Walter.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Alternative Energy.;Energy.;Engineering Chemical.
  • 学位 M.S.
  • 年度 2012
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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