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CMC-Jacketed Piping for High-Temperature Applications: Concept, Laboratory Tests and Large-Scale Application Test

机译:CMC夹套管道用于高温应用:概念,实验室测试和大规模应用测试

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摘要

The increasing market share of highly volatile electricity generated from renewable sources like wind or solar energy, leads to enormous challenges in the energy sector. Since large-scale storage systems are neither currently nor in the near future available, the gap between electricity from renewable sources and current electricity demand has to be closed with flexibly operated conventional power plants. In order to be a viable, cost-effective option in tomorrow's energy market future power plants must be highly efficient while having low CO_2 emissions. Furthermore, they have to be highly reactive to counter instabilities in the electrical grid due to fluctuations in renewable sources. Current materials used in power plants are only within limits suited to experience extreme changes in operational loads. However, extreme changes of operational loads will become increasingly severe with a growing share of renewables. Our project team has developed a new concept for CMC-jacketed pipes to alleviate these issues. Recently, this concept was further developed and tested in laboratory as well as in a large-scale application test at Grosskraftwerk Mannheim (GKM). All tests are still ongoing. Additionally, to the use in modern highly efficient power plants such CMC-jacketed piping is also suitable for other high-temperature applications, like e.g. solar power plants or industrial chemical applications.
机译:从风或太阳能等可再生来源产生的高度挥发性电力的市场份额增加导致能源部门的巨大挑战。由于大规模存储系统既不是在不久的可用中也不是可用的,则从可再生源和电流供电之间的电力之间的间隙必须通过灵活的传统发电厂关闭。为了成为明天的能源市场的可行性,经济效益的选择,未来发电厂必须高效,同时具有低CO_2排放。此外,由于可再生源的波动,它们必须具有高度反应的对电网中的计数器稳定性。发电厂中使用的目前材料仅限于适合体验载荷负荷的极端变化的范围内。然而,随着可再生能源的份额越来越多,运营负荷的极端变化将变得越来越严重。我们的项目团队为CMC夹克管道开发了一个新的概念,以减轻这些问题。最近,该概念在实验室进一步开发和测试,以及在Grosskraftwerk Mannheim(GKM)的大规模应用测试中。所有测试仍在继续。此外,在现代高效的发电厂中使用这种CMC夹套管道也适用于其他高温应用,如例如。太阳能发电厂或工业化学应用。

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