|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | A comprehensive review of production-oriented manufacturing cell formation techniques 显示文摘 | Joines J A King R E Culbreth C T | 1995 | International Journal of Flexible Automation and Integrated Manufacturing1995,3,4: | 1 |
| 2 | Molten Salts and Applications Ⅰ: Molten Salt History, Types, Thermodynamic and Physical Properties, and Cost显示文摘Excess energy from solar, nuclear or coal power stations can be stored in molten salts (MS) in the 565 °C range. At elevated temperature, large containers can be used to store energy for up to a week and generate eight hours or more, depending on the container size, of electricity to be used at night or during peak demand hours. A stable diurnal energy supply is made available by energy storage and the fluctuation experienced at thermal solar power stations caused by weather conditions is reduced. Supported by Office of Naval Research (ONR), this paper presents a survey of molten salt properties used in solar power storage, as well as the history of molten salt usage for energy storage and production. The history of molten salt usage includes past, current, and future developments involving molten salt usage for nuclear and solar energy storage and production. Density, melting temperature, viscosity, electric conductivity, surface tension, and heat capacity of various molten salts are discussed. Since costs are important factor in selecting a molten salt compound, salts costs are presented. Recommendations are made regarding the efficient use of various types of molten salt. | Samaan Ladkany William Culbreth Nathan Loyd Craig Tyner | 2018 | Journal of Energy and Power Engineering2018,12,11: | 1 |
| 3 | Manufacturing Cell Design:An Integer Programming Model Employing Genetic显示文摘 | Joines J A Culbreth C T King R E | 1996 | IIE Transactions1996,28,1: | 1 |
| 4 | A Comprehensive review of production-oriented manufacturing cell formation techniques显示文摘 | JOINES J A KING R E CULBRETH C T | 1996 | International Journal of Flexible Automation and Integrated Manufacturing1996,3,34: | 1 |
| 5 | Autophagy in neurodegenerative diseases and metal neurotoxicity显示文摘 | Zhang Z Miah M Culbreth M | 2016 | Neurochem Res2016,41,12: | 1 |
| 6 | Insulator surface features resulting from cutting techniques显示文摘 | SCHILL R A CULBRETH W VENKAT R | 2001 | Pulsed Power Plasma Science2001,,2: | 1 |
| 7 | Hyperoxia stimulates interleukin-8 release from alveolar macrophages and U937 cells:attenuation by dexamethson显示文摘 | Deaton PR Mckellar CT Culbreth R | 1994 | Am J Physiol1994,267,21: | 1 |
| 8 | Radiofrequency electromagnetic fields have no effect on the in vivo proliferation of the 9L brain tumor显示文摘 | Higashikubo R Culbreth VO Spitz DR | 1999 | Radiat Res1999,152,6: | 1 |
| 9 | Anthocyanin-Rich A?aí (Euterpe oleracea Mart.) Extract Attenuates Manganese-Induced Oxidative Stress in Rat Primary Astrocyte Cultures显示文摘 | Vivian da Silva Santos Emily Bisen-Hersh Yingchun Yu IngridySimone Ribeiro Cabral Viviani Nardini Megan Culbreth Jo?oBatista Teixeira da Rocha Fernando Barbosa Michael Aschner | 2014 | Journal of Toxicology and Environmental Health Part A2014,,7: | 1 |
| 10 | Complications of prone position- ing during extracorporeal membrane oxygenation for respiratory failure:a systematic review显示文摘 | Culbreth RE Goodfellow LT | 2016 | Respir Care2016,61,2: | 1 |
| 11 | Acomprehensive review of production-oriented manufacturing cell formation techniques显示文摘 | Jeffrey A Joines Russell E King C Thomas Culbreth | 1996 | International Journal of Flexible Automation and Integrated Manufacturing1996,3,34: | 1 |
| 12 | Comprehensive Molten Salt Storage Shell and Supporting Structure Design and Analysis-Part I:A Conductive and Convective Theoretical Heat Transfer Analysis for Molten Salt Cylindrical Shells at 565℃ and 700℃显示文摘In this paper a full theoretical thermal analysis of a large molten salt container,80-foot in diameter and 46-foot high,including a four-foot elliptic shell roof,is presented for two temperatures,the standard 565℃ and a futuristic 700℃,which substantially improves the efficiency of the molten salt containers through the use of a highly stable chloride salt called SS700(SaltStream 700).The theoretical analysis includes conductive and convective heat transfer analysis in the steel container,elliptic roof shell,the fiberglass insulation,and firebrick insulation,and includes thermal insulation designs to safeguard against energy losses at high temperatures.The underlying soil and the high temperature concrete foundation were analyzed theoretically using conductive heat transfer,however the area surrounding the soil surface around the bottom of the molten salt storage tank had convective heat transfer analysis included.The final designs presented in this paper seek to limit heat losses to a maximum of 250 W/m^(2) while being able to operate at a minimum external ambient temperature of-10℃,which determines the thicknesses of the fiberglass and firebrick insulation. | Nathan Loyd Samaan Ladkany William Culbreth | 2022 | Journal of Energy and Power Engineering2022,16,2: | 0 |
| 13 | Comprehensive Molten Salt Storage Shell and Supporting Structure Design and Analysis-Part II:A Conductive and Convective Numerical Finite Element Heat Transfer Analysis for Molten Salt Cylindrical Shells at 700℃,and Comparison with Theoretical Analysis显示文摘In this paper a finite element thermal analysis model-using COMSOL-of a large molten salt container,80-foot in diameter and 46-foot high that includes a four-foot elliptic shell roof,is presented for a futuristic 700℃ design,which uses a highly stable chloride salt called SS700(SaltStream 700)that improves the efficiency of the tank when compared to the traditional 565℃.The FEA(finite element analysis)includes conductive and convective heat transfer analysis in the steel container,elliptic roof shell,the fiberglass insulation,and firebrick insulation,and includes thermal insulation designs to safeguard against energy losses at high temperatures.The underlying soil and the high temperature concrete foundation were analyzed by finite element using conductive heat transfer,however the area surrounding the soil surface around the bottom of the MS storage tank had convective heat transfer analysis included.The finite elements analyses presented are to verify the final fiberglass and firebrick insulation designs,which seeks to limit heat losses to a maximum of 250 W/m^(2) while being able to operate at a minimum external ambient temperature of-10℃.These results are also compared to previously calculated theoretical results. | Nathan Loyd Samaan Ladkany William Culbreth | 2022 | Journal of Energy and Power Engineering2022,16,2: | 0 |
| 14 | Molten Salts and Applications Ⅱ: 565℃ Molten Salt Solar Energy Storage Design, Corrosion, and Insulation显示文摘Excess energy from various sources can be stored in molten salts (MS) in the 565 °C range. Large containers can be used to store energy at excess temperatures in order to generate eight hours or more of electricity, depending on the container size, to be used during peak demand hours or at night for up to a week. Energy storage allows for a stable diurnal energy supply and can reduce the fluctuation due to weather conditions experienced at thermal solar power stations. Supported by Office of Naval Research (ONR), this paper discusses the design considerations for molten salt storage tanks. An optimal molten salt storage tank design layout is presented, as well as alternative designs for the storage tanks. In addition, the costs and corrosion effects of various molten salts are discussed in order to show the effects these considerations have on the design process. | Samaan Ladkany William Culbreth Nathan Loyd Craig Tyner | 2018 | Journal of Energy and Power Engineering2018,12,11: | 0 |
| 15 | Molten Salts and Applications Ⅲ: Worldwide Molten Salt Technology Developments in Energy Production and Storage显示文摘Supported by Office of Naval Research (ONR), this paper presents a survey of molten salt technology used in solar power storage. Excess energy from solar power stations and other baseline power production methods can be stored in molten salts (MS) in the 565°C range, therefore allowing the use of large containers to store energy for up to a week and generate eight hours of electricity or more to be used during peak demand hours, at night, or adverse weather conditions, depending on the container size. The technology could also be used to conserve the spin off energy in the grids from nuclear or coal power production. Real life examples of concentrating solar power (CSP) plants, both domestically and worldwide, are presented with details about the type of solar collection, capacity, and energy production. Commercial solar power stations have been constructed in the United States and overseas, particularly in Spain, with molten salt being considered for use in these facilities. Some facilities use a field of flat mirrors and collection towers while others use parabolic troughs. | Samaan Ladkany William Culbreth Nathan Loyd Craig Tyner | 2018 | Journal of Energy and Power Engineering2018,12,11: | 0 |