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Applied research concerning the direct steam generation in parabolic troughs

机译:抛物线槽直接产生蒸汽的应用研究

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With levelized electricity costs (LEC) of 10-12 USCts/kWh the well-known SEGS (Solar Electric Generating Systems) plants in California are presently the most successful solar technology for electricity generation [Price and Cable (2001) Proc. ASME Int. Solar Energy Conf. Forum 2001]. The SEGS plants apply a two-circuit system, consisting of the collector circuit and the Rankine cycle of the power block. These two-circuits are connected via a heat exchanger. In the case of the Direct Steam Generation (DSG) in the collector field [Zarza et al. (2001) Proc. Solar Forum 2001, Washington], the two-circuit system turns into a single-circuit system, where the collector field is directly coupled to the power block. This renders a lower investment and higher process temperatures resulting in a higher system efficiency. Due to the lower investment and the higher efficiency a reduction of the LEC of 10% is expected when the DSG process is combined with improved components of the solar collectors [Zarza (2002) DISS Phase II Final Report, EU Contract No. JOR3-CT98-0277]. Within the European DISS (Direct Solar Steam) project the feasibility of the direct steam generation has been proven in more than 3700 operation hours. Steam conditions of 100 bar and 400℃ have been demonstrated. This paper presents the main scientific results of the DISS project that aims at the investigation and demonstration of the DSG process in parabolic troughs under real solar conditions.
机译:加利福尼亚州著名的SEGS(太阳能发电系统)工厂的平均电费(LEC)为10-12 USCts / kWh,是目前最成功的太阳能发电技术[Price and Cable(2001)Proc。 ASME国际。太阳能会议论坛2001]。 SEGS工厂采用两回路系统,该系统由集电极电路和功率模块的兰金循环组成。这两个回路通过热交换器连接。在收集器领域采用直接蒸汽发生(DSG)的情况下[Zarza等。 (2001年)过程。 [华盛顿,2001年太阳能论坛],两回路系统变成了单回路系统,其中集电极场直接耦合到电源块。这降低了投资,提高了工艺温度,从而提高了系统效率。由于投资少,效率高,当DSG工艺与改进的太阳能集热器组件结合使用时,预计LEC降低10%[Zarza(2002)DISS II期最终报告,欧盟合同号JOR3-CT98 -0277]。在欧洲DISS(直接太阳能蒸汽)项目中,直接蒸汽产生的可行性已在3700多个运行小时内得到了证明。蒸汽条件为100 bar和400℃。本文介绍了DISS项目的主要科学成果,该项目旨在研究和证明在实际太阳光条件下抛物槽中的DSG过程。

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