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长寿命小型自然循环铅基快堆燃料选型 被引量:6
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作者 刘紫静 赵鹏程 +7 位作者 任广益 柯国土 于涛 谢金森 陈珍平 何丽华 谢芹 曾浩 《原子能科学技术》 EI CAS CSCD 北大核心 2020年第5期944-953,共10页
针对铅基快堆长寿命、小型化、自然循环的设计目标,构建铅基快堆堆芯模型并开展燃料选型研究,选取U-Pu、Th-U循环燃料及氧化物、氮化物、碳化物、金属燃料,分析比较了不同燃料的物性参数、在不同能谱条件下的堆芯物理特性。结果表明:在... 针对铅基快堆长寿命、小型化、自然循环的设计目标,构建铅基快堆堆芯模型并开展燃料选型研究,选取U-Pu、Th-U循环燃料及氧化物、氮化物、碳化物、金属燃料,分析比较了不同燃料的物性参数、在不同能谱条件下的堆芯物理特性。结果表明:在偏软能谱中,Th基燃料堆芯增殖能力更强,反应性系数负值更大,热工安全裕量更大、裂变产物容留能力更强;PuN-ThN燃料堆芯燃耗特性最佳,可在较疏松栅格条件下获得较强增殖能力,减少燃料装载量,确保固有安全性,兼顾堆芯长寿命、小型化、自然循环设计要求;但堆芯有效缓发中子份额较小,不利于反应性控制。 展开更多
关键词 铅基快堆 燃料选型 物理特性 增殖特性
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大型集装箱船LNG燃料舱的选型 被引量:2
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作者 李志林 陈元军 《船舶物资与市场》 2021年第2期17-18,共2页
在新的环保要求背景下,部分集装箱船将LNG作为船用燃料。文章以大型集装箱船作为研究对象,对船舶燃料舱室容积量进行计算,在IGF规范要求下,采用确定法和概率法判断燃料舱的限界面与船壳外板或艉端点的距离,为船舶燃料舱室的选型提供依据。
关键词 集装箱船 燃料选型 舱室容积
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The green fuel from carbon waste: optimization and product selectivity model studies
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作者 Hossein Atashi Fatemeh Rezaeian Ali Akbar Mirzaei 《International Journal of Coal Science & Technology》 EI 2018年第3期399-410,共12页
Increase in greenhouse gases, has made scientists to substitute alternative fuels for fossil fuels. Nowadays, converting biomass into liquid by Fischer-Tropsch synthesis is a major concern for alternative fuels (gaso... Increase in greenhouse gases, has made scientists to substitute alternative fuels for fossil fuels. Nowadays, converting biomass into liquid by Fischer-Tropsch synthesis is a major concern for alternative fuels (gasoline, diesel etc.). Selectivity of Fischer-Tropsch hydrocarbon product (green fuel) is an important issue. In this study, the experimental data has been obtained from three factors; temperature, H2/CO ratio and pressure in the fixed bed micro reactor. T = 543-618 (K), P = 3-10 (bar), H2/CO = 1-2 and space velocity = 4500 (l/h) were the reactor conditions. The results of product modeling for methane (CH4), ethane (C2H6), ethylene (C2H4) and CO conversion with experimental data were compared. The effective parameters and the interaction between them were investigated in the model. H2/CO ratio and pressure and interaction between pressure and H2/CO in ethane selectivity model and CO conversion and interaction between temperature and H2/CO ratio in methane selectivity model and ethylene gave the best results. To determine the optimal conditions for light hydrocarbons, ANOVA and RSM were employed. Finally, products optimization was done and results were concluded. 展开更多
关键词 Selectivity model Fischer-Tropsch synthesis Green fuel OPTIMIZATION Fixed bed micro reactor Alternative fuels
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