维普中文期刊产品整合服务
22篇 您的检索式:作者名="Asprion"
    题名 作者 年代 出处 被引量
1Facies characteristicsof middle Pleistocene (Saalian) ice margin subaqueous fan and del-ta deposits glacial lake Leine NW Germany 显示文摘Winsemann J Asprion U Thomas M 2007Sedimentary Geolo-gy2007,41,14:1
2Dividing wall columns: Fundamentals and recent advances 显示文摘Asprion N Kaibel G 2010Chemical Engineering and Processing2010,49,2:1
3Pilot PlantStudy of Four New Solvents for Post Combustion CarbonDioxidecapture by Reactiveabsorption and Comparison toMEA 显示文摘MangalapallyHP Notz R Asprion N 2012International Journal of Greenhouse Gas Con-trol2012,8,:1
4Dividing wall columns:Fundamentals and recent advances显示文摘Asprion N Kaibel G 2010Chem Eng Process2010,49,2:1
5Dividing wall columns: fundamentals and recent advances显示文摘ASPRION N KAIBEL G 2010Chemical Engineering Process2010,49,:1
6Dividing wall columns : Fendamentais and recent advance 显示文摘Norbert Asprion Gerd Kaibel 2010Chemical Enginerring and Processing: Process Intensification2010,49,:1
7Using machine learning models to explore the solution space of large nonlinear systems underlying flowsheet simulations with constraints显示文摘Flowsheet simulations of chemical processes on an industrial scale require the solution of large systems of nonlinear equations,so that solvability becomes a practical issue.Additional constraints from technical,economic,environmental,and safety considerations may further limit the feasible solution space beyond the convergence requirement.A priori,the design variable domains for which a simulation converges and fulfills the imposed constraints are usually unknown and it can become very time-consuming to distinguish feasible from infeasible design variable choices by simply running the simulation for each choice.To support the exploration of the design variable space for such scenarios,an adaptive sampling technique based on machine learning models has recently been proposed.However,that approach only considers the exploration of the convergent domain and ignores additional constraints.In this paper,we present an improvement which particularly takes the fulfillment of constraints into account.We successfully apply the proposed algorithm to a toy example in up to 20 dimensions and to an industrially relevant flowsheet simulation.Patrick Otto Ludl Raoul Heese Johannes Höller Norbert Asprion Michael Bortz 2022Frontiers of Chemical Science and Engineering2022,16,2:1
8Decision support for the development,simulation and optimization of dynamic process models显示文摘Simulation is besides experimentation the major method for designing,analyzing and optimizing chemical processes.The ability of simulations to reflect real process behavior strongly depends on model quality.Validation and adaption of process models are usually based on available plant data.Using such a model in various simulation and optimization studies can support the process designer in his task.Beneath steady state models there is also a growing demand for dynamic models either to adapt faster to changing conditions or to reflect batch operation.In this contribution challenges of extending an existing decision support framework for steady state models to dynamic models will be discussed and the resulting opportunities will be demonstrated for distillation and reactor examples.Norbert Asprion Roger Böttcher Jan Schwientek Johannes Höller Patrick Schwartz Charlie Vanaret Michael Bortz 2022Frontiers of Chemical Science and Engineering2022,16,2:1
9Dividing wall column: Fundamentals and recent advances 显示文摘ASPRION N KAIBEL G 2010Chemical Engineering and Processing2010,49,:1
10Optimisation-oriented modelling of the NO x emissions of a Diesel engine显示文摘Jonas Asprion Oscar Chinellato Lino Guzzella 2013Energy Conversion and Management2013,,:1
11A fast and accurate physics-based model for the NO x emissions of Diesel engines显示文摘Jonas Asprion Oscar Chinellato Lino Guzzella 2013Applied Energy2013,,:1
12Dividing wall columns:Fundamentals and re- cent advances显示文摘Asprion N Kaibel G 2010Chemical Engineering and Processing2010,49,2:1
13An initial attempt to map carbonate buildups using ground-penetrating radar: an example from the Upper Jurrassic of SW-Germany显示文摘Asprion U Aigner T 2000Facies2000,42,:1
14Dividing wall columns显示文摘Asprion N Kaibel G 0,,:1
15Dividing wall columns: Fundamentals and recent advances显示文摘Asprion N Kaibel G 2010Chemical Engineering and Processing: Process Intensification2010,49,2:1
16An initial attempt to map carbonate buildups using ground-penetrating radar: an ex- ample from the Upper J urrassic of SW-Germany 显示文摘ASPRION U AIGNER T 2000Facies2000,42,:1
17An initial attempt to map carbooate buildups using ground-penetrating radar: an example from the Upper Jurrassic of SW-Germany显示文摘Asprion U Aigner T 2000Facies2000,42,:1
18Dividing wall columns: Fundamentals and recent advances 显示文摘Asprion N Kaibel G 2010Chemical Engi- neering and Processing: Process Intensification2010,49,2:1
19Selection and pilot plant tests of new absorbents for post- combustion carbon dioxide capture 显示文摘Asprion N Clausen I Hasse H 2007Chemical Engineering Research and Design2007,85,4:1
20Dividing Wall Columns: Fundamentals and Recent Advances 显示文摘Asprion N Kaibel G 2010Chem Eng Process: Process In- tensi2010,49,2:1
返回顶部 每页显示:
共2页 首页 上一页 第1页 下一页 末页 /2 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费