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基于混合算法的电力物料车辆排队服务优化
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作者 王伟丽 张明伟 《物流技术》 2024年第1期30-40,共11页
针对电力物料产品出入库频繁,扰动大,异质物料装卸时间差异大,车辆排队服务时间不确定等问题,建立电力物料装卸排队服务优化模型,模型中考虑了转换装卸仓库的时间对优化方案的影响。利用遗传算法对优良基因的记忆保留特性和算法收敛性... 针对电力物料产品出入库频繁,扰动大,异质物料装卸时间差异大,车辆排队服务时间不确定等问题,建立电力物料装卸排队服务优化模型,模型中考虑了转换装卸仓库的时间对优化方案的影响。利用遗传算法对优良基因的记忆保留特性和算法收敛性以及粒子群算法迭代的方向性,提出混合遗传粒子群算法,加入了Metropolis抽样准则以提高算法跳出局部最优的能力。最后对国家电网天津市电力物资公司智慧物流园区实际数据算例进行仿真优化分析,模型优化后比实际的车辆平均空闲时间、最大空闲时间和总空闲时间都有大幅度减少,表明了模型的可行性和算法的有效性。相关研究模型已在企业智慧物流园区供应链多环节协同关键技术研究项目中进行分析与验证,并应用于企业实际仓储服务信息系统,极大地减小了企业运输车辆排队等待服务现象,减少了时间与成本浪费,具有较强的实际意义与应用价值。 展开更多
关键词 电力物料 排队论 转换仓库 混合优化算法
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株洲电力物料仓储管理系统的设计与实现
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作者 徐述 《科技信息》 2010年第28期273-275,共3页
作为促进经济发展的重要行业,电力长期忽视仓储管理在提高本行业核心竞争力的作用。基于此,本文以某省下属大二型供电企业(株洲电业局)为背景,针对其仓储作业的具体流程与行业特点,设计及实现了电力物料仓储管理系统。由于电力各省管理... 作为促进经济发展的重要行业,电力长期忽视仓储管理在提高本行业核心竞争力的作用。基于此,本文以某省下属大二型供电企业(株洲电业局)为背景,针对其仓储作业的具体流程与行业特点,设计及实现了电力物料仓储管理系统。由于电力各省管理仓储的模式与本文研究对象大致相同,该系统具有很强的工程应用与推广价值。 展开更多
关键词 电力物料仓储 仓储管理系统 C/S SQLSERVER JAVA MYECLIPSE
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浅谈电力物资供应服务水平和业务能力的提高
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作者 雷朋 《电子乐园》 2019年第24期401-401,共1页
电力物资供应服务质量,是提升公司竞争力的主要途径之一,但是根据目前的研究报告显示,大部分电力物料企业的供应服务 还存在较多问题,从物料管理,再到采购等工作,都需要不断改进。所以,针对以上问题,要采取具有一定针对性的措施,借助电... 电力物资供应服务质量,是提升公司竞争力的主要途径之一,但是根据目前的研究报告显示,大部分电力物料企业的供应服务 还存在较多问题,从物料管理,再到采购等工作,都需要不断改进。所以,针对以上问题,要采取具有一定针对性的措施,借助电子信息 技术,提高电力物资供应服务的水平,以及供应服务部门工作人员的业务能力。本文主要根据现阶段电力物资供应的主要问题,提出一定 意见。 展开更多
关键词 电力物料 物资供应 业务能力
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Electromotive Force for Solid Oxide Fuel Cells Using Biomass Produced Gas as Fuel 被引量:2
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作者 Wei Zhu Yan-hong Yin +2 位作者 Cen Gao Chang-rong Xia Guang-yao Meng 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 北大核心 2006年第4期325-328,共4页
The electromotive force (e.m.f.) of solid oxide fuel cells using biomass produced gas (BPG) as the fuels is calculated at 700-1,200 K using an in-house computer program, based on thermodynamic equilibrium analysis... The electromotive force (e.m.f.) of solid oxide fuel cells using biomass produced gas (BPG) as the fuels is calculated at 700-1,200 K using an in-house computer program, based on thermodynamic equilibrium analysis. Tour program also predicts the concentration of oxygen in the fuel chamber as well as the concentration of equilibrium species such as H2, CO, CO2 and CH4. Compared with using hydrogen as a fuel, the e.m.f. for cells using BPG as the fuels is relative low and strongly influenced by carbon deposition. To remove carbon deposition, the optimum amount of H2O to add is determined at various operating temperatures. Further the e.m.f, for cells based on yttria stabilized zirconia and doped ceria as electrolytes are compared. The study reveals that when using BPG as fuel, the depression of e.m.f, for a SOFC using doped ceria as electrolyte is relatively small when compared with that using Yttria stabilized zirconia. 展开更多
关键词 Biomass produced gas Electromotive force Solid oxide fuel cells Thermodynamic equilibrium
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Identification of the Electricity-Producing Bacteria in Wastewater for Microbial Fuel Cells (MFCs)
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作者 S.M. Zain S. Roslani +4 位作者 N. Anuar R. Hashim F. Suja S.K. Kamarudin N.E.A. Basri 《Journal of Environmental Science and Engineering》 2010年第10期51-56,共6页
A microbial fuel cell (MFC) is a device that converts chemical energy to electrical energy during substrate oxidation by microorganisms. The characterization and identification of these microbial communities will al... A microbial fuel cell (MFC) is a device that converts chemical energy to electrical energy during substrate oxidation by microorganisms. The characterization and identification of these microbial communities will allow better control of this electricity generation with simultaneous removal of carbon and nitrogen. This study aims to investigate the role of natural bacteria in electricity generation by studying three different sources of wastewater: the raw wastewater (RW), wastewater from an aeration tank (AEW) and returned activated sludge (RAS) from an activated sludge treatment plant. The result showed that after the MFC treatment, the number of bacterial strains was reduced from twenty strains to eight strains. Microscopic observation further showed that fifteen isolate before the treatment were gram-positive, and five were gram-negative whereas all isolates after the treatment were gram-positive rods or cocci The four strains isolated from the RAS inoculums, β-Comamonas sp., γ-Enterobacter sp., Bacillus cereus sp. and Clostridium sp. produced the highest power density of 67.57 mW/m^2 which made them potential candidates for electrochemically active bacteria in MFCs. However, the level of chemical oxygen demand (COD) removal was 20% and the total kjeldahl nitrogen (TKN) removal was 66.7%. Key words: 展开更多
关键词 producing bacteria microbial fuel cell (MFC) WASTEWATER polymerase chain reaction (PCR)
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Thermodynamic Analysis of Methane-fueled Solid Oxide Fuel Cells Considering CO Electrochemical Oxidation
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作者 孙琼 郑克晴 倪萌 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第9期1033-1037,共5页
Thermodynamic analyses in the literature have shown that solid oxide fuel cells(SOFCs) with proton conducting electrolyte(H-SOFC) exhibited higher performance than SOFC with oxygen ion conducting electrolyte(O-SOFC).H... Thermodynamic analyses in the literature have shown that solid oxide fuel cells(SOFCs) with proton conducting electrolyte(H-SOFC) exhibited higher performance than SOFC with oxygen ion conducting electrolyte(O-SOFC).However, these studies only consider H2 electrochemical oxidation and totally neglect the contribution of CO electrochemical oxidation in O-SOFC. In this short communication, a thermodynamic model is developed to compare the theoretically maximum efficiencies of H-SOFC and O-SOFC, considering the electrochemical oxidation of CO in O-SOFC anode. It is found that O-SOFC exhibits a higher maximum efficiency than H-SOFC due to the contribution from CO electrochemical oxidation, which is contrary to the common understanding of electrolyte effect on SOFC performance. The effects of operating temperature and fuel utilization factor on the theoretical efficiency of SOFC are also analyzed and discussed. 展开更多
关键词 Solid oxide fuel cellThermodynamicsProton conductorOxygen ion conductorHydrocarbon fuels
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Comparison between Current Technologies for the Best Choice of Thermoelectric Plant with Coal or Uranium
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作者 Dagoberto Catssio da Silva Mariana Natale Belato Rogerio Jose da Silva 《Journal of Energy and Power Engineering》 2013年第9期1719-1728,共10页
Between the alternative sources available for the electricity production, still lacks reliability for the production in base units. For the electricity production from 500 MW to 1,000 MW or more, the coal-fired therma... Between the alternative sources available for the electricity production, still lacks reliability for the production in base units. For the electricity production from 500 MW to 1,000 MW or more, the coal-fired thermal and nuclear power plants with uranium have proved competitive and with a high level of reliability and maturation, besides presenting the fuel supply security. This paper presents an analysis of technical feasibility for the choice of the best technology for generating electricity on a large scale, based on coal-fired thermal or nuclear power plant using uranium. This paper takes in account the availability of fuel sources, investments costs, thermal power generation systems, pollutants emission and mitigation technologies, global efficiency, fuel consumption, costs of electricity, construction time and an average lifespan of the installation. Thus the analysis allows the most rational choice of technology for the production of electricity with lower electricity costs and lower COz emissions. 展开更多
关键词 Energy COAL URANIUM power plants.
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Dynamic Modeling of Tubular SOFC for Marine Power System 被引量:1
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作者 伞宝钢 周培林 David Clealand 《Journal of Marine Science and Application》 2010年第3期231-240,共10页
Solid oxide fuel cell (SOFC) has been identified as an effective and clean alternative choice for marine power system.This paper emphasizes on the dynamic modeling of SOFC power system and its performance based upon m... Solid oxide fuel cell (SOFC) has been identified as an effective and clean alternative choice for marine power system.This paper emphasizes on the dynamic modeling of SOFC power system and its performance based upon marine operating circumstance.A SOFC power system model has been provided considering thermodynamic and electrochemical reaction mechanism.Subcomponents of lithium ion battery, power conditioning unit, stack structure and controller are integrated in the model.The dynamic response of the system is identified according to the inertia of its subcomponent and controller.Validation of the whole system simulation at steady state and transit period are presented, concerning the effects of thermo inertia, control strategy and seagoing environment.The simulation results show reasonable accuracy compare with lab test.The models can be used to predict performance of a SOFC power system and identify the system response when part of the component parameter is adjusted. 展开更多
关键词 tubular SOFC marine power system thermodynamic modeling
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Dual Pressure versus Hybrid Recuperation in an Integrated Solid Oxide Fuel Cell Cycle--Steam Cycle
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作者 Masoud Rokni 《Journal of Energy and Power Engineering》 2014年第4期596-611,共16页
A SOFC (solid oxide fuel cell) cycle running on natural gas was integrated with a ST (steam turbine) cycle. The fuel is desulfurized and pre-reformed before entering the SOFC. A burner was used to combust the rema... A SOFC (solid oxide fuel cell) cycle running on natural gas was integrated with a ST (steam turbine) cycle. The fuel is desulfurized and pre-reformed before entering the SOFC. A burner was used to combust the remaining fuel after the SOFC stacks. The off-gases from the burner were used to produce steam in a HRSG (heat recovery steam generator). The bottoming steam cycle was modeled with two configurations: (1) a simple single pressure level and (2) a dual pressure level with both a reheat and a pre-heater. The SOFC stacks in the present SOFC-ST hybrid cycles were not pressurized. The dual pressure configuration steam cycle combined with SOFC cycle (SOFC-ST) was new and has not been studied previously. In each of the configuration, a hybrid recuperator was used to recovery the remaining energy of the off-gases after the HRSG. Thus, four different plants system setups were compared to each other to reveal the most superior concept with respect to plant efficiency and power. It was found that in order to increase the plant efficiency considerably, it was enough to use a single pressure with a hybrid recuperator instead of a dual pressure Rankine cycle. 展开更多
关键词 SOFC fuel cell hybrid cycle steam cycle Rankine cycle hybrid recuperation.
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Fuel Cells as Energy Systems: Efficiency, Power Limits and Thermodynamic Behavior
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作者 S. Sieniutycz 《Journal of Energy and Power Engineering》 2011年第1期17-28,共12页
Steady-state model of a high-temperature solid oxide fuel cell (SOFC) is considered, which refers to constant chemical potentials of incoming hydrogen fuel and oxidant. Lowering of the cell voltage below its reversi... Steady-state model of a high-temperature solid oxide fuel cell (SOFC) is considered, which refers to constant chemical potentials of incoming hydrogen fuel and oxidant. Lowering of the cell voltage below its reversible value is attributed to polarizations and imperfect conversions of reactions. An imperfect power formula summarizes the effect of transport laws, irreversible polarizations and efficiency of power yield. Reversible electrochemical theory is extended to the case with dissipative chemical reactions; this case includes systems with incomplete conversions, characterized by "reduced affinities" and an idle run voltage. Efficiency drop is linked with thermodynamic and electrochemical irreversibilities expressed in terms of polarizations (activation, concentration and ohmic). Effect of incomplete conversions is modeled by assuming that substrates can be remained after the reaction and that side reactions may occur. Optimum and feasibility conditions are discussed for basic input parameters of the cell. Calculations of maximum power show that the data differ for power generated and consumed and depend on current intensity, number of mass transfer units, polarizations, electrode surface area, average chemical rate, etc.. These data provide bounds for SOFC energy generators, which are more exact and informative than reversible bounds for electrochemical transformation. 展开更多
关键词 Power limits ENTROPY engines thermal efficiency fuel cells.
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Generation of electricity from CO_2 mineralization: Principle and realization 被引量:8
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作者 XIE He Ping WANG Yu Fei +8 位作者 HE Yang GOU Ma Ling LIU Tao WANG Jin Long TANG Liang JIANG Wen ZHANG Ru XIE Ling Zhi LIANG Bin 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第12期2335-2346,共12页
Current CO2 reduction and utilization technologies suffer from high energy consuming. Thus, an energy favourable route is in urgent demanding. CO2 mineralization is theoretically an energy releasing process for CO2 re... Current CO2 reduction and utilization technologies suffer from high energy consuming. Thus, an energy favourable route is in urgent demanding. CO2 mineralization is theoretically an energy releasing process for CO2 reduction and utilization, but an approach to recovery this energy has so far remained elusive. For the first time, here we proposed the principle of harvesting electrical energy directly from CO2 mineralization, and realized an energy output strategz1 for CO2 utilization and reduction via a CO2-mineralization fuel cell (CMFC) system. In this system CO2 and industrial alkaline wastes were used as feedstock, and industrial valuable NaHCO3 was produced concomitantly during the electricity generation. The highest power density of this system reached 5.5 W/m2, higher than many microbial fuel cells. The maximum open circuit voltage reached 0.452 V. Moreo- ver, this system was demonstrated viable to low concentration CO2 (10%) and other carhonation process. Thus, the existing of an energy-generating and environmentally friendly strategy to utilize CO2 as a supplement to the current scenario of CO2 emis- sion control has been demonstrated. 展开更多
关键词 CO2 mineralization electricity generation sodium bicarbonates CO2 utilization
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