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Harvesting Energy Via Water Movement and Surface Ionics in Microfibrous Ceramic Wools
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作者 Manpreet Kaur Avinash Alagumalai +3 位作者 Omid Mahian Sameh M.Osman Tadaaki Nagao Zhonglin Wang 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第6期332-341,共10页
Due to the push for carbon neutrality in various human activities,the development of methods for producing electricity without relying on chemical reaction processes or heat sources has become highly significant.Also,... Due to the push for carbon neutrality in various human activities,the development of methods for producing electricity without relying on chemical reaction processes or heat sources has become highly significant.Also,the challenge lies in achieving microwatt-scale outputs due to the inherent conductivity of the materials and diverting electric currents.To address this challenge,our research has concentrated on utilizing nonconductive mediums for water-based low-cost microfibrous ceramic wools in conjunction with a NaCl aqueous solution for power generation.The main source of electricity originates from the directed movement of water molecules and surface ions through densely packed microfibrous ceramic wools due to the effect of dynamic electric double layer.This occurrence bears resemblance to the natural water transpiration in plants,thereby presenting a fresh and straightforward approach for producing electricity in an ecofriendly manner.The generator module demonstrated in this study,measuring 12×6 cm^(2),exhibited a noteworthy open-circuit voltage of 0.35 V,coupled with a short-circuit current of 0.51 mA.Such low-cost ceramic wools are suitable for ubiquitous,permanent energy sources and hold potential for use as self-powered sensors and systems,eliminating the requirement for external energy sources such as sunlight or heat. 展开更多
关键词 ceramic microfibers energy harvesting power generation self-powered systems water evaporation
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Solar-driven salt-free deposition evaporation for simultaneous desalination and electricity generation based on tip-effect and siphon-effect
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作者 Wan Xue Zongbin Zhao +4 位作者 Guanyu Zhao Honghui Bi Huijun Zhu Xuzhen Wang Jieshan Qiu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第11期364-373,共10页
Solar-driven desalination is a promising way to alleviate the freshwater shortage,while is facing challenges posed by low evaporation rates and severe salt accumulation.Herein,a high-performance twodimensional(2D) sol... Solar-driven desalination is a promising way to alleviate the freshwater shortage,while is facing challenges posed by low evaporation rates and severe salt accumulation.Herein,a high-performance twodimensional(2D) solar absorber with Co_(3)O_(4) nanoneedle arrays(Co_(3)O_(4)-NN) grown on the surface of reduced graphene oxide-coated pyrolyzed silk cloth(Co_(3)O_(4)-NN/rGO/PSC) was prepared,and a salt-free evaporator system was assembled based on the composite material and siphonage-the flowing water delivery.It is revealed that the evaporation enthalpy of water can be reduced over the 2D solar absorber grown with Co_(3)O_(4)-NN_T enabling an evaporation rate of up to 2.35 kg m^(-2) h^(-1) in DI water under one solar irradiation.The desalination process can be carried out continuously even with salt concentration up to 20 wt%,due to the timely removal of concentrated brine from the interface with the assistance of directed flowing water.Moreover,the 2D structure and the flowing water also provide an opportunity to convert waste solar heat into electricity in the evaporator based on the seebeck effect,ensuring simultaneous freshwater production and power generation.It is believed that this work provides insights into designing hybrid systems with high evaporation rate,salt resistance,and electricity generation. 展开更多
关键词 Co_(3)O_(4)nanoneedle arrays Solar water evaporation Evaporation enthalpy Salt free Siphon effect power generation
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Water, Air Emissions, and Cost Impacts of Air-Cooled Microturbines for Combined Cooling, Heating, and Power Systems: A Case Study in the Atlanta Region
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作者 Jean-Ann James Valerie M. Thomas +2 位作者 Arka Pandit Duo Li John C. Crittenden 《Engineering》 SCIE EI 2016年第4期470-480,共11页
The increasing pace of urbanization means that cities and global organizations are looking for ways to increase energy efficiency and reduce emissions. Combined cooling, heating, and power (CCHP) systems have the po... The increasing pace of urbanization means that cities and global organizations are looking for ways to increase energy efficiency and reduce emissions. Combined cooling, heating, and power (CCHP) systems have the potential to improve the energy generation efficiency of a city or urban region by providing energy for heating, cooling, and electricity simultaneously. The purpose of this study is to estimate the water consumption for energy generation use, carbon dioxide (CO2) and NOx emissions, and economic impact of implementing CCHP systems for five generic building types within the Atlanta metropolitan region, under various operational scenarios following the building thermal (heating and cooling) demands. Operating the CCHP system to follow the hourly thermal demand reduces CO2 emissions for most building types both with and without net metering. The system can be economically beneficial for all building types depending on the price of natural gas, the implementation of net metering, and the cost structure assumed for the CCHP system. The greatest reduction in water consumption for energy production and NOx emissions occurs when there is net metering and when the system is operated to meet the maximum yearly thermal demand, although this scenario also results in an increase in greenhouse gas emissions and, in some cases, cost. CCHP systems are more economical for medium office, large office, and multifamilv residential buildings. 展开更多
关键词 Combined cooling heating and power (CCHP) Air-cooled microturbines Distributed energy generation water for energy production Net metering
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Performance on Power,Hot and Cold Water Generation of a Hybrid Photovoltaic Thermal Module
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作者 Thakrittorn Pansiri Attakorn Asanakham +1 位作者 Thoranis Deethayat Tanongkiat Kiatsiriroat 《Energy Engineering》 EI 2022年第5期1861-1878,共18页
This paper proposed a new function of photovoltaic thermal(PVT)module to produce nocturnal cool water not just only generating electrical power and hot water during daytime.Experimental tests were carried out under Ch... This paper proposed a new function of photovoltaic thermal(PVT)module to produce nocturnal cool water not just only generating electrical power and hot water during daytime.Experimental tests were carried out under Chiang Mai tropical climate with a 200 Wp monocrystalline PVT module having dimensions of 1.601 m×0.828 m connected with two water tanks each of 60 L taken for hot and cool water storages.The module was facing south with 18o inclination.The electrical load was a 200 W halogen lamp.From experiments,by taking the module as a nocturnal radiative cooling surface,the cool water temperature in the cool storage tank could be reduced 2℃–3℃each night and the temperature could be reduced from 31.5℃to 22.1℃within 4 consecutive days.The cool water at approximately 23℃was also used to cool down the PVT module from noon when the PVT module temperature was rather high,and then the module temperature immediately dropped around 5℃and approximately 10%increase of electrical power could be achieved.A set of mathematical models was also developed to predict the PVT module temperature and the hot water temperature including the cool water temperature in the storage tanks during daytime and nighttime.The simulated results agreed well with the experimental data. 展开更多
关键词 Photovoltaic thermal module power generation hot and cold water production nocturnal cooling
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Wide Range Neutron Monitoring(WRNM)System in Boiling Water Reactors(A Short Communication&Memorandum)
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作者 Seyed Kamal Mousavi Balgehshiri Ali Zamani Paydar Bahman Zohuri 《Journal of Energy and Power Engineering》 2022年第5期186-212,共27页
The WRNM(wide range neutron monitoring)is a newly developed neutron monitoring channel which was initially conceived as a means to meet Regulatory Guide 1.97 requirements for post-accident neutron monitoring.The scope... The WRNM(wide range neutron monitoring)is a newly developed neutron monitoring channel which was initially conceived as a means to meet Regulatory Guide 1.97 requirements for post-accident neutron monitoring.The scope was expanded to include the startup monitoring function with the aim of replacing both the source and IRMs(intermediate range monitors)in BWRs(boiling water reactors).The WRNMs,consisting of a newly designed fixed incore regenerative sensor and new electronics,which include both counting and MSV(mean square voltage)channels,have been tested in several reactors and its capabilities have been confirmed.The channel will cover the neutron flux range from 103 nv to 1.5×103 nv;it has greater than 1 decade overlap between the counting and MSV channels.Because of the regenerative fissile coating the sensor,even though fixed incore,has a life of approximately 6.0 full power years in a 51 kW/L BWR and similar situation has been proposed for newly designed small modular reactor such as BWRX-300 of General Electric Hitachi reactor. 展开更多
关键词 BWR light water reactor advanced reactor advanced small modular reactor high temperature advanced reactor generation IV nuclear power reactors nuclear energy nuclear radiation environment
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Consideration of Environmental Effect of Power Generation: Bangladesh Perspective
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作者 Iftekhar Zaman Arnab Tausif Ali +1 位作者 M. Shidujaman Md. Mayen Hossain 《Energy and Power Engineering》 2013年第4期1521-1525,共5页
Nowadays for power generation, environment is a major consideration. The heart of power generation is power station. At present there are almost above 40(Both Government & Rental) power station in Bangladesh. Amon... Nowadays for power generation, environment is a major consideration. The heart of power generation is power station. At present there are almost above 40(Both Government & Rental) power station in Bangladesh. Among these 80% of power station is gas based. Rest of the 20% is coal, liquid and furnace oil based. Bangladesh has only one Hydraulic power station. These gas and coal based power stations are giving adverse effect in Bangladesh. The main emissions from coal combustion at thermal power plants are carbon dioxide (CO), nitrogen oxides (NO), sulfur oxides (SO), chlorofluorocarbons (CFCs), and air- borne inorganic particles such as fly ash, soot, and other trace gas species. Carbon dioxide, methane, and chlorofluorocarbons are greenhouse gases. These emissions are considered to be responsible for heating up the atmosphere, producing a harmful global environment. It is known to all that hydro power station is a clean source of energy, but it has also some ecological and environmental effect. Dhaka is one of the top polluted city in the world. So for power generation if the environmental effect is not considered then Bangladesh will be in great trouble. The purpose of this paper is to discuss the present and future possible environmental effect of power generation in Bangladesh. 展开更多
关键词 Environment POLLUTION power generation Air POLLUTION water POLLUTION Thermal POLLUTION Acid RAIN RENEWABLE Energy Nuclear power Plant
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Industrialization prospects for hydrogen production by coal gasification in supercritical water and novel thermodynamic cycle power generation system with no pollution emission 被引量:10
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作者 GUO LieJin JIN Hui +2 位作者 GE ZhiWei LU YouJun CAO ChangQing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第12期1989-2002,共14页
Energy conversion and utilization, particularly carbon-based fuel burning in air phase, have caused great environmental pollution and serious problems to society. The reactions in water phase may have the potential to... Energy conversion and utilization, particularly carbon-based fuel burning in air phase, have caused great environmental pollution and serious problems to society. The reactions in water phase may have the potential to realize clean and efficient energy conversion and utilization. Coal gasification in supercritical water is a typical carbon-based fuel conversion process in water phase, and it takes the advantages of the unique chemical and physical properties of supercritical water to convert organic matter in coal to H2 and CO2. N, S, P, Hg and other elements are deposited as inorganic salts to avoid pollution emission. The State Key Laboratory of Multiphase Flow in Power Engineering has obtained extensive experimental and theoretical results based on coal gasification in supercritical water. Supercritical water fluidized bed reactor was developed for coal gasification and seven kinds of typical feedstock were selected. The hydrogen yield covers from 0.67 to 1.74 Nm3/kg and the carbon gasification efficiency is no less than 97%. This technology has a bright future in industrialization not only in electricity generation but also in hydrogen production and high value-added chemicals. Given the gas yield obtained in laboratory-scale unit, the hydrogen production cost is U.S.$ 0.111 Nm3 when the throughput capacity is 2000 t/d. A novel thermodynamic cycle power generation system based on coal gasification in supercritical water was proposed with the obvious advantages of high coal-electricity conversion efficiency and zero pollutant emission. The cost of U.S.$ 3.69 billion for desulfuration, denitration and dust removal in China in 2013 would have been saved with this technology. Five kinds of heat supply methods are analyzed and the rates of return of investment are roughly estimated. An integrated cooperative innovation center called a new type of high-efficient coal gasification technology and its large-scale utilization was founded to enhance the industrialization of the technology vigorously. 展开更多
关键词 industrialization prospects hydrogen production supercritical water gasification power generation zero emission
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抽水蓄能电站绿色施工技术
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作者 王炜 窦锦钟 +2 位作者 袁青云 韩磊 孙旻 《施工技术(中英文)》 CAS 2024年第18期129-133,153,共6页
抽水蓄能电站建设发展迅猛,但在工程施工过程中存在高投入、高消耗、高污染、低效率等现象,迫切需采取措施推进绿色施工。为此,基于绿色施工的核心理念,介绍了近年来抽水蓄能电站绿色施工技术,包括抽水蓄能电站新坝型、绿色输水隧洞施... 抽水蓄能电站建设发展迅猛,但在工程施工过程中存在高投入、高消耗、高污染、低效率等现象,迫切需采取措施推进绿色施工。为此,基于绿色施工的核心理念,介绍了近年来抽水蓄能电站绿色施工技术,包括抽水蓄能电站新坝型、绿色输水隧洞施工技术、绿色混凝土制备技术、绿色砂石加工技术、边坡生态修复技术、二氧化碳爆破技术及施工车辆电气化等,取得了良好效果。 展开更多
关键词 抽水蓄能电站 绿色施工 输水隧洞 混凝土 砂石
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A survey of geothermal power generation combined with renewable energy for low carbon emissions
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作者 Xuyang Liu Dongsheng Cai +2 位作者 Chiagoziem CUkwuoma Qi Huang Olusola Bamisile 《Clean Energy》 EI CSCD 2024年第3期138-146,共9页
At present,industrial development is heavily dependent on traditional fossil energy,which has had an increasingly serious impact on the environment.Clean and renewable energy has received extensive attention and its p... At present,industrial development is heavily dependent on traditional fossil energy,which has had an increasingly serious impact on the environment.Clean and renewable energy has received extensive attention and its proportion in daily life has gradually increased.As a clean and renewable energy source that is not affected by changes in weather and seasons,geothermal energy has developed rapidly in recent years and has received increasing attention.According to reports,the total installed capacity of geothermal power generation in the world in 2020 was 15950 MW-an increase of~27%over 2015.At the end of 2019,the total installed capacity for global geothermal direct use was 107727 MW-an increase of 52.0%compared with 2015;the total annual energy use was 1020887 TJ(283580 GWh)-an increase of 72.3%over 2015.Through the investigation of geothermal power generation technology in recent years,the characteristics and shortcomings of various power generation methods are analysed.At the same time,this review analyzes the characteristics of geothermal energy and other renewable-energy(solar energy,water energy)coupling power generation,and analyzes the principles and characteristics of geothermal energy and various new-energy coupling power generation methods.Through investigation and analysis,this review provides a complete understanding of various geothermal power generation technologies and provides insights into the future development direction. 展开更多
关键词 geothermal power generation solar energy water energy combined power generation
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Photothermal hygroscopic hydrogel for simultaneous generation of clean water and electricity
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作者 REN TingTing HUANG Lu +3 位作者 XIE ShangZhen CHEN GuoPeng LIU Peng CHEN LinGen 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2023年第10期2958-2967,共10页
Harvesting water from the air using adsorbents and obtaining fresh water by solar-driven desorption is considered as one of the most effective ways to solve the freshwater crisis in arid and desert regions.Based on a ... Harvesting water from the air using adsorbents and obtaining fresh water by solar-driven desorption is considered as one of the most effective ways to solve the freshwater crisis in arid and desert regions.Based on a simple and low-cost photothermal hygroscopic hydrogel,a new strategy is proposed to boost solar energy efficiency by coupling solar-driven atmospheric water harvesting technology with thermoelectric power generation technology in this paper.Photothermal hygroscopic hydrogel ink PAM-CaCl_(2)is prepared by in situ polymerization using Acrylamide as monomer,Ammonium persulfate as thermal initiator and CaCl_(2)as hygroscopic component.During the day,the photothermal hygroscopic hydrogel absorbs solar energy and evaporates its own internal water to obtain fresh water.Simultaneously,the residual waste heat is utilized to power the thermoelectric panel,which produces electricity based on Seebeck effect.At night,the hydrogel harvests water molecules in the air to achieve regeneration.This hybrid system can achieve a water production rate of 0.33 kg m^(-2)h^(-1)and an additional electrical energy gain of 124 mW m^(-2)at 1 kW m^(-2)solar intensity.Theoretical model of the hybrid system is developed to understand the heat flow and thermoelectric generation process.The results provide new insights into energy and freshwater replenishment options in arid or desert areas with abundant solar energy. 展开更多
关键词 photothermal hygroscopic hydrogel atmospheric water harvesting solar steam generation thermoelectric power generation
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广西某抽水蓄能电站输水系统线路比选
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作者 熊图耀 吕太健 郭晓萍 《红水河》 2024年第5期90-95,共6页
输水系统线路比选是抽水蓄能电站可行性研究阶段重要的设计内容,需通过多方案比较确定。笔者以广西某抽水蓄能电站为例,分析输水系统线路选择的原则,并从地形地质条件、工程布置、施工组织、可比工程投资等方面对结合地形条件初步拟定的... 输水系统线路比选是抽水蓄能电站可行性研究阶段重要的设计内容,需通过多方案比较确定。笔者以广西某抽水蓄能电站为例,分析输水系统线路选择的原则,并从地形地质条件、工程布置、施工组织、可比工程投资等方面对结合地形条件初步拟定的2个输水系统线路方案进行综合对比分析,最终确定最优方案。设计思路可供其他类似工程借鉴。 展开更多
关键词 输水系统 线路比选 抽水蓄能电站
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抽水蓄能电站输水发电系统的渗流分析
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作者 阳志诚 劳俊源 《红水河》 2024年第2期91-96,共6页
渗流分析是抽水蓄能电站输水发电系统布置及结构设计的重要依据之一。笔者以来宾抽水蓄能电站输水发电系统为例,通过采用ANSYS建立输水发电系统渗流三维有限元模型,对研究区域初始渗流场进行反演计算,并对压力水头、渗透坡降、渗漏量、... 渗流分析是抽水蓄能电站输水发电系统布置及结构设计的重要依据之一。笔者以来宾抽水蓄能电站输水发电系统为例,通过采用ANSYS建立输水发电系统渗流三维有限元模型,对研究区域初始渗流场进行反演计算,并对压力水头、渗透坡降、渗漏量、钢衬外水压力等进行分析。结果表明,各项边界条件基本符合实际情况,输入参数合适,计算结果合理,可供类似工程参考。 展开更多
关键词 抽水蓄能电站 输水发电系统 渗流分析
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A New Cleaner Power Generation System Based on Self-Sustaining Supercritical Water Gasification of Coal 被引量:4
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作者 LIU Changchun HAN Wei +1 位作者 WANG Zefeng ZHANG Na 《Journal of Thermal Science》 SCIE EI CAS CSCD 2022年第5期1380-1391,共12页
A new cleaner power generation system(IPGS) is proposed and investigated in this paper. Integrating combined cycle with supercritical water gasification of coal, the thermodynamic energy of the produced syngas is casc... A new cleaner power generation system(IPGS) is proposed and investigated in this paper. Integrating combined cycle with supercritical water gasification of coal, the thermodynamic energy of the produced syngas is cascade utilized according to its temperature and pressure, both sensible and latent heat of the syngas can be recycled into the system, and thereby the net power efficiency can be about 6.4 percentage points higher than that of the traditional GE gasification based power plant(GEPP). The exergy analysis results show that the exergy efficiency of the proposed system reaches 52.45%, which is 13.94% higher than that of the GEPP, and the improvement in exergy efficiency of the proposed system mainly comes from the exergy destruction decline in the syngas energy recovery process, the condensation process and the syngas purification process. The syngas combustion process is the highest exergy destruction process with a value of 157.84 MW in the proposed system. Further performance improvement of the proposed system lies in the utilization process of syngas. Furthermore, system operation parameters have been examined on the coal mass fraction in the supercritical water gasifier(GF), the gasification temperature, and the gasification pressure. The parametric analysis shows that changes in coal concentration in the GF exert more influence on the exergy efficiency of the system compared with the other two parameters. 展开更多
关键词 power generation clean production supercritical water gasification coal gasification cascade utilization combined cycle
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Proposal of a Solar Thermal Power Plant at Low Temperature Using Solar Thermal Collectors
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作者 Patrick Lindecker 《Energy and Power Engineering》 CAS 2022年第8期343-386,共44页
To this day, only two types of solar power plants have been proposed and built: high temperature thermal solar one and photovoltaic one. It is here proposed a new type of solar thermal plant using glass-top flat surfa... To this day, only two types of solar power plants have been proposed and built: high temperature thermal solar one and photovoltaic one. It is here proposed a new type of solar thermal plant using glass-top flat surface solar collectors, so working at low temperature (i.e., below 100°C). This power plant is aimed at warm countries, i.e., the ones mainly located between -40° and 40° latitude, having available space along their coast. This land based plant, to install on the seashore, is technologically similar to the one used for OTEC (Ocean Thermal Energy Conversion). This plant, apart from supplying electricity with a much better thermodynamic efficiency than OTEC plants, has the main advantage of providing desalinated water for drinking and irrigation. This plant is designed to generate electricity (and desalinated water) night and day and all year round, by means of hot water storage, with just a variation of the power delivered depending on the season. 展开更多
关键词 power Plant Solar Thermal Solar Energy Renewable Energy Low Temperature Solar Collectors Electric power generation Desalinated water
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Prospects for High-quality Development of Water Resources
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作者 Liusheng PENG 《Meteorological and Environmental Research》 CAS 2021年第6期43-47,52,共6页
The water resources of rivers and reservoirs with a five-meter drop are used to discuss the technical theory and the cost and practical value of equipment cases.The high-quality development technology of water resourc... The water resources of rivers and reservoirs with a five-meter drop are used to discuss the technical theory and the cost and practical value of equipment cases.The high-quality development technology of water resources explored in this paper provides a feasible plan for achieving the goal of innovation to zero. 展开更多
关键词 Flood control Drought resistance Energy storage Low-head high-efficiency power generation High-speed water transfer channel Sewage treatment by vertical pipeline pressurization
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Renewable Energy:Wind Turbines,Solar Cells,Small Hydroelectric Plants,Biomass,and Geothermal Sources of Energy
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作者 Natasa A. Kablar 《Journal of Energy and Power Engineering》 2019年第4期162-172,共11页
In this paper,we present five basic types of renewable energy sources,namely:wind turbines,solar cells,small hydroelectric plants,biomass,and geothermal sources of energy.Wind turbines transform energy of wind into el... In this paper,we present five basic types of renewable energy sources,namely:wind turbines,solar cells,small hydroelectric plants,biomass,and geothermal sources of energy.Wind turbines transform energy of wind into electrical energy,solar cells transform energy of sun into electric energy,hydroelectric plants transform energy of water into electric energy,devices or machines can be constructed to transform energy of biomass into heat energy,and geothermal energy into some form of energy.In this paper we present basic information and reasons why there is need today to use these forms of energy—called green energies,we present how these devices or machines function,and we propose for future work design of typical devices or machines that will satisfy basic functional needs. 展开更多
关键词 Wind ENERGY solar ENERGY water ENERGY BIOMASS ENERGY GEOTHERMAL ENERGY RENEWABLE ENERGIES electrical power generation of electricity
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Research on Green Transformation of Campus Sponge and Energy Saving Facilities on Sloping Land
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作者 Qiliang Tan Yuhang Guo 《Frontiers Research of Architecture and Engineering》 2021年第2期12-15,共4页
Based on the renovation of sponge and energy-saving facilities in a middle school in Nanning,this paper systematically studies the overall elevation of the campus,the composition of the drainage system and the layout ... Based on the renovation of sponge and energy-saving facilities in a middle school in Nanning,this paper systematically studies the overall elevation of the campus,the composition of the drainage system and the layout of space functions,and formulates a characteristic scheme for the renovation of sponge and energy-saving facilities according to the characteristics of the sloping campus.In order to control the total amount of rainwater runoff,the sponge transformation mainly adopts the transformation methods of partition catchment,upper storage and lower use,multi-stage detection and classification treatment.For the purpose of solar energy and wind energy utilization,solar photovoltaic panels and small-scale wind power generation system are adopted.The application effects of sponge and energy-saving facilities are estimated and evaluated. 展开更多
关键词 Slope campus Sponge and energy saving measures water purification terrace Photovoltaic power generation
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抽水蓄能电站输水系统经济管径比较研究
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作者 马新红 齐慧卿 +2 位作者 李继承 毋飞翔 邢侃侃 《科技资讯》 2023年第13期43-46,共4页
该文结合具体抽水蓄能电站工程,对其输水系统经济管径比较分析,首先通过了解该蓄能电站的特点,对抽水蓄能参数的选择方式进行介绍,计算输水系统的调节性能,在机组额定水头和上、下水库调节库容相同的情况下,采取了多种方案的输水系统管... 该文结合具体抽水蓄能电站工程,对其输水系统经济管径比较分析,首先通过了解该蓄能电站的特点,对抽水蓄能参数的选择方式进行介绍,计算输水系统的调节性能,在机组额定水头和上、下水库调节库容相同的情况下,采取了多种方案的输水系统管径比较,最终采用方案6为最优管径方案,并介绍了该方案的可行性,同时分析在输水系统管径选择时应注意的问题。 展开更多
关键词 抽水蓄能电站 输水系统 管径 经济比较
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抽水蓄能电站输水系统设计要点研究
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作者 马新红 韩强 +2 位作者 王磊 张良 邢侃侃 《电力系统装备》 2023年第4期9-11,共3页
为确保对抽水蓄能电站抽水、发电等功能正常运行,工程单位需要做好输水系统的设计工作,而进出水口与输水道则是其中的设计关键点.在进出水口设计阶段,设计人员需要结合现场地质情况、输水系统运行需求等综合选择出入水口结构型式,并做... 为确保对抽水蓄能电站抽水、发电等功能正常运行,工程单位需要做好输水系统的设计工作,而进出水口与输水道则是其中的设计关键点.在进出水口设计阶段,设计人员需要结合现场地质情况、输水系统运行需求等综合选择出入水口结构型式,并做好出入水口宽度等参数的复核计算工作;在输水道设计阶段,设计人员需要针对钢筋混凝土衬砌与钢砌等不同结构对设计参数进行计算分析,并做好变幅比等参数的复核计算工作,确保所设计的输水系统满足使用需求. 展开更多
关键词 抽水蓄能电站 输水系统 进/出水口 输水道 设计要点
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某抽水蓄能电站输水系统水力过渡过程敏感性分析及参数优化 被引量:2
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作者 朱颖儒 刘君 张利平 《广东水利水电》 2023年第4期99-104,共6页
对某抽水蓄能电站开展了引水、尾水调压室布置方案的水力过渡过程计算进行分析,通过论证取消了尾水调压室,并研究了取消尾水调压室后的大波动、水力干扰及小波动过渡过程计算结果,并通过敏感性分析得出了水道糙率、调压室阻抗孔尺寸对... 对某抽水蓄能电站开展了引水、尾水调压室布置方案的水力过渡过程计算进行分析,通过论证取消了尾水调压室,并研究了取消尾水调压室后的大波动、水力干扰及小波动过渡过程计算结果,并通过敏感性分析得出了水道糙率、调压室阻抗孔尺寸对本电站过渡过程主要控制性参数的影响规律,为工程布置推荐方案的最终确定提供了依据。 展开更多
关键词 抽水蓄能电站 输水系统 水力过渡过程 敏感性分析 参数优化
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