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模块式高温气冷堆中Pu燃烧的物理特性 被引量:3
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作者 杨永伟 经荥清 +1 位作者 古玉祥 许云林 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2002年第5期652-654,共3页
由于模块式高温气冷堆 (MHTGR)是燃烧 Pu的一种选择 ;Th燃料循环可以限制 Pu的产生和减少高放废物 ,因此研究了在 Th 燃料循环模块式高温气冷堆(PBMHTGR)中燃烧 Pu的物理特性。PBMHTGR初装燃料元件中 Pu的同位素的含量与现行的生产能量... 由于模块式高温气冷堆 (MHTGR)是燃烧 Pu的一种选择 ;Th燃料循环可以限制 Pu的产生和减少高放废物 ,因此研究了在 Th 燃料循环模块式高温气冷堆(PBMHTGR)中燃烧 Pu的物理特性。PBMHTGR初装燃料元件中 Pu的同位素的含量与现行的生产能量堆模块式高温气冷堆 (EPMHTGR)相同 ,考虑反应性的要求 ,加入了2 3 3 U。利用 VSOP程序分析这两个堆的物理特性。结果表明 ,PBMHTGR能够燃烧掉同等功率 6个以上 EPMHTGR产生的 Pu。这表明 ,在 Th燃料循环 MHTGR中 。 展开更多
关键词 燃料循环 模块式高温气冷堆 燃料物理特性 裂变材料 燃料 增殖材料
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Experimental Investigation of Upgraded Diesel Fuel with Copper Oxide Nanoparticles on Performance and Emissions Characteristics of Diesel Engine
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作者 Sherry Khulief Tarek M. Aboul-Fotouh 《Journal of Energy and Power Engineering》 2017年第8期541-552,共12页
The enhancement of the physicochemical characteristics of fossil fuel has been the subject of extensive research to achieve better efficiency and reduced emissions. Diesel is one of the fossil fuels that are highly co... The enhancement of the physicochemical characteristics of fossil fuel has been the subject of extensive research to achieve better efficiency and reduced emissions. Diesel is one of the fossil fuels that are highly consumed in daily life. This paper focuses on the behavior of a refined diesel fuel when copper oxide nanoparticles are added. The resulting blend ofnano-diesel has been analyzed using a four-stroke engine under two loads indicating light vehicles and heavy duty vehicles. The nano-diesel was prepared by the aid of an ultrasonicator and a mechanical homogenizer. A base diesel was taken as a reference to distinguish the effect of the nanoparticles additives. Three different samples with different concentrations are utilized in this study. As a result, the fuel consumption, exhaust temperature, brake power, power losses and engine efficiency have been evaluated and compared to the base diesel in order to demonstrate and access the enhanced performance of the nano-fuel blend. The three concentrations conducted were 100 ppm, 200 ppm and 300 ppm of copper oxide nanoparticles. The results represented that the pure refinery diesel has low exhaust temperatures, high brake power and high efficiency as compared to the commercial diesel supplied from a gas station. In addition, 300 ppm copper oxide nano-diesel showed improvement in engine performances as compared to the other concentrations and pure diesel. In this context, lowest fuel consumption for both passenger cars and heavy duty vehicles was achieved, brake power for passenger cars only was improved and input power showed improvement however, exhaust temperature was the highest as for this fuel. 展开更多
关键词 Diesel fuel copper oxide nanoparticles BIO-DIESEL additives.
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