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海浪能源收集器系统可靠性评估
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作者 张煜栋 《中国科技期刊数据库 工业A》 2023年第7期44-47,共4页
最近对动能收集装置的研究表明,大多数机械故障发生在动力输出 (PTO) 系统中。因此,评估动力输出系统的性能成为设计过程中的一项必要任务。本文对海浪能源收集器系统进行了系统的可靠性分析,包括失效模式分析、动态分析、方程验证、有... 最近对动能收集装置的研究表明,大多数机械故障发生在动力输出 (PTO) 系统中。因此,评估动力输出系统的性能成为设计过程中的一项必要任务。本文对海浪能源收集器系统进行了系统的可靠性分析,包括失效模式分析、动态分析、方程验证、有限元分析等。这些主要针对单向离合器、滚珠丝杠等基本机械部件。为了了解动力输出系统中的运动功率分配,滚珠丝杠轴上的输入扭矩动力轴上的扭矩和输出扭矩根据原型的电力输出数据进行评估。确定运动功率分布后,对应用力和扭矩值进行进一步的可靠性分析。 展开更多
关键词 动能收集装置 能源收集器 锥齿轮
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Energy Efficient Data Collection in Hierarchical Wireless Sensor Networks 被引量:2
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作者 Zhang Chun Fei Shumin Zhou Xingpeng 《China Communications》 SCIE CSCD 2012年第9期79-88,共10页
The majority of the energy consumption by the sensors is the energy requirement for data transmission in Wireless Sensor Networks (WSNs). Therefore, introducing mobile collectors to collect data instead of nmlti-hop... The majority of the energy consumption by the sensors is the energy requirement for data transmission in Wireless Sensor Networks (WSNs). Therefore, introducing mobile collectors to collect data instead of nmlti-hop data relay is essential. However, for rmny proposed data gathering ap-proaches, long data deNNy is the train problenm. Hence, the problem of how to decrease the energy consumption and the data deNNy needs to be solved. In this paper, a low deNNy data collection mechanism using multiple mobile collectors is pro- posed. First, a self-organization clustering algorithm is designed. Second, sensor nodes are organized into three-level clusters. Then a collection strategy based on the hierarchical structure is proposed, which includes two rules to dispatch mobile collec- tors rationally. Simulation results show that the proposed mechanism is superior to other existing approaches in terms of the reduction in energy ex-penditure and the decrease in data deNNy. 展开更多
关键词 WSNS energy consumption rrmltiplemobile collectors data delay
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Metal/nanocarbon layer current collectors enhanced energy efficiency in lithium-sulfur batteries 被引量:9
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作者 Jia-Qi Huang Pei-Yan Zhai +2 位作者 Hong-Jie Peng Wan-Cheng Zhu Qiang Zhang 《Science Bulletin》 SCIE EI CAS CSCD 2017年第18期1267-1274,共8页
Lithium-sulfur (Li-S) batteries with intrinsic merits in high theoretical energy density are the most promising candidate as the next-generation power sources. The strategy to achieve a high utilization of active ma... Lithium-sulfur (Li-S) batteries with intrinsic merits in high theoretical energy density are the most promising candidate as the next-generation power sources. The strategy to achieve a high utilization of active materials with high energy efficiency is strongly requested for practical applications with less energy loss during repeated cycling. In this contribution, a metal/nanocarbon layer current collector is proposed to enhance the redox reactions of polysulfides in a working Li-S cell. Such a concept is demon- strated by coating graphene-carbon nanotube hybrids (GNHs) on routine aluminum (AI) foil current collectors. The interracial conductivity and adhesion between the current collector and active material are significantly enhanced. Such novel cell configuration with metal/nanocarbon layer current collectors affords abundant Li ions for rapid redox reactions with small overpotential. Consequently, the Li-S cells with nanostructured current collectors exhibit an initial discharge capacity of 1,113 mAh g-1 at 0.5 C, which is -300 mAh g-1 higher than those without a GNH coating layer. The capacity retention is 73% for cells with GNH after 300 cycles. A reduced voltage hysteresis and a high energy efficiency of ca. 90% are therefore achieved. Moreover, the AI/GNH layer current collectors are easily implanted into current cell assembly process for energy storage devices based on complex multi-electron redox reactions (e.g., Li-S batteries, Li-O2 batteries, fuel cells, and flow batteries). 展开更多
关键词 Lithium-sulfur battery Nanostructured current collectors Polysulfides Energy efficiency Pouch cell
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A design method and numerical study for a new type parabolic trough solar collector with uniform solar flux distribution 被引量:16
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作者 WANG Kun HE YaLing CHENG ZeDong 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第3期531-540,共10页
The non-uniform concentrated solar flux distribution on the outer surface of the absorber tube can lead to large circumferential temperature difference and high local temperature of the absorber tube wall,which is one... The non-uniform concentrated solar flux distribution on the outer surface of the absorber tube can lead to large circumferential temperature difference and high local temperature of the absorber tube wall,which is one of the primary causes of parabolic trough solar receiver(PTR)failures.In this paper,a secondary reflector used as a homogenizing reflector(HR)in a conventional parabolic trough solar collector(PTSC)was recommended to homogenize the solar flux distribution and thus increase the reliability of the PTR.The design method of this new type PTSC with a HR was also proposed.Meanwhile,the concentrated solar flux distribution was calculated by adopting the Monte Carlo ray-trace(MCRT)method.Then,the coupled heat transfer process within the PTR was simulated by treating the solar flux calculated by the MCRT method as the heat flux boundary condition for the finite volume method model.The solar flux distribution on the outer surface of the absorber tube,the temperature field of the absorber tube wall,and the collector efficiency were analyzed in detail.It was revealed that the absorber tube could almost be heated uniformly in the PTSC with a HR.As a result,the circumferential temperature difference and the maximum temperature could be reduced significantly,while the efficiency tended to decrease slightly due to the inevitably increased optical loss.Under the conditions studied in this paper,although the collector efficiency decreased by about 4%,the circumferential temperature difference was reduced from about 25 to 3 K and the maximum temperature was reduced from667 to 661 K. 展开更多
关键词 parabolic trough solar collector evacuated tubular receiver secondary reflector solar flux distribution temperature distribution
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