Computation of Wind Flows Around Two Tall Buildings

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (681 download)

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Book Synopsis Computation of Wind Flows Around Two Tall Buildings by : David A. Paterson

Download or read book Computation of Wind Flows Around Two Tall Buildings written by David A. Paterson and published by . This book was released on 1993 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Experimental results by Taniike for wind flows around two tall buildings are compared with results from a computer simulation. The simulation uses a steady-state solution method with a k-epsilon model of turbulence. In the measured flow, the vortices shed from each building have a strong influence on pressures on and around the other building. This research examines the accuracy of steady-state solution methods in the prediction of mean pressures in such flows.

Wind Effects on a Tall Building with Recessed Cavities

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Publisher : Open Dissertation Press
ISBN 13 : 9781361331958
Total Pages : pages
Book Rating : 4.3/5 (319 download)

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Book Synopsis Wind Effects on a Tall Building with Recessed Cavities by : Sin-Yan Wong

Download or read book Wind Effects on a Tall Building with Recessed Cavities written by Sin-Yan Wong and published by Open Dissertation Press. This book was released on 2017-01-26 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This dissertation, "Wind Effects on a Tall Building With Recessed Cavities" by Sin-yan, Wong, 黃倩欣, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: In Hong Kong and other Asian metropolitan cites, high-rise residential buildings become very common. They are highly wind-sensitive, subjected to enormous wind loads at high wind speeds and may exhibit aeroelastic behavior at normal wind speeds. Many residential buildings often have an irregular shape with apartments arranged as wing sections extending from a central core so that all apartments on the floor can enjoy views. Between adjacent building wings are deeply recessed cavities. Most wind loading codes and guidelines assume stagnant flow inside the recessed cavities and wind loads are calculated based on the simplified enveloping building shape. This research studies how the static and dynamic wind loads on a tall building are modified by the presence of recessed cavities. The H-section tall building, with square enveloping shape, is selected to represent a building with two recessed cavities. A number of these building models with a systematic variation of breadths and depths of the recessed cavities are tested in the wind tunnel. Fluctuating wind forces and moments on the building models are measured and the dynamic building responses are investigated by the HFFB technique. The results show significant reductions in across-wind load fluctuations on the H-section buildings at wind incidence normal to building face with a cavity. Greater reductions are found on the fluctuation levels and the spectral energies at the vortex excitation frequency when the width/depth of the recessed cavities becomes larger. A resonant across-wind response modification factor (RMF) is adopted to quantify the effect on wind-induced dynamic building responses. For the across-wind response at critical wind incidence, the presence of recessed cavities can lead the value of RMF to as low as 0.67, that is reduction of building responses by 33%. To understand the mechanism of wind load modification caused by the presence of recessed cavities, wind pressure on all faces of the H-section tall buildings including the cavity faces are measured. Correlations of across-wind forces contributed by different building faces are analyzed. A clear quasi-periodic fluctuating component is found on the forces from the two building side faces and they act in phase in the across-wind direction. The across-wind force contributions from side faces of the windward or leeward recessed cavity are generally out-of-phase. As a result, the overall excitation levels of the total across-wind force on the building are reduced due to the presence of recessed cavities. To complement the wind tunnel study, computational fluid dynamics modeling using large-eddy simulation (LES) is carried out to study the unsteady wind flow around and wind loads on the H-section tall building with the widest and deepest recessed cavities. Furthermore, the two-dimensional (2D) case of smooth flow past 2D H-section cylinders is investigated. Both the LES and 2D experimental results give consistent observations and mechanisms of the effects of recessed cavities on the modification of dynamic wind loads on the tall building as the wind tunnel results. The thesis also reports studies on the effects of upstream terrain types, building heights and building shapes on the wind effects of H-section tall buildings. DOI: 10.5353/th_b5153712 Subjects: Wind resistant design Buildings - Aerodynamics

Wind Environment Around Buildings

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Publisher :
ISBN 13 :
Total Pages : 70 pages
Book Rating : 4.:/5 (89 download)

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Book Synopsis Wind Environment Around Buildings by : A. D. Penwarden

Download or read book Wind Environment Around Buildings written by A. D. Penwarden and published by . This book was released on 1975 with total page 70 pages. Available in PDF, EPUB and Kindle. Book excerpt: Copies are supplied by TSO's on-demand publishing service

Wind Effect on '+' Plan Shaped Tall Buildings

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Publisher : LAP Lambert Academic Publishing
ISBN 13 : 9783659690945
Total Pages : 120 pages
Book Rating : 4.6/5 (99 download)

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Book Synopsis Wind Effect on '+' Plan Shaped Tall Buildings by : Souvik Chakraborty

Download or read book Wind Effect on '+' Plan Shaped Tall Buildings written by Souvik Chakraborty and published by LAP Lambert Academic Publishing. This book was released on 2015-04-02 with total page 120 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book deals with experimental and numerical simulation of wind effect on '+' plan shaped tall building. Although such buildings are common in practice, no codal provision for calculating wind load on such building is available in the international standards. Two popular numerical schemes, namely k-epsilon and shear stress transport technique has been used for determining pressure coefficient on various faces of the '+' plan shaped building. The result presented will be helpful for practicing engineers in designing such peculiar shaped building. Furthermore, this book will also be useful in developing basic understanding regarding wind flow around buildings.

Computational Wind Engineering 1

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Publisher : Elsevier
ISBN 13 : 0444598618
Total Pages : 925 pages
Book Rating : 4.4/5 (445 download)

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Book Synopsis Computational Wind Engineering 1 by : S. Murakami

Download or read book Computational Wind Engineering 1 written by S. Murakami and published by Elsevier. This book was released on 2014-06-28 with total page 925 pages. Available in PDF, EPUB and Kindle. Book excerpt: The aim of this volume is to explore the challenges posed by the rapid development of Computational Fluid Dynamics (CFD) within the field of engineering. CFD is already essential to research concerned with fluid flow in civil engineering, and its further potential for application in wind engineering is highly promising. State-of-the-art papers from all over the world are contained here, illuminating the present parameters of the field, as well as suggesting fruitful areas for further research. Eleven papers have been contributed by invited speakers outstanding in the fields of CFD and wind engineering. This volume will serve as a vehicle to promote further development in computational wind engineering.

Wind Tunnel Testing of High-Rise Buildings

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Publisher : Routledge
ISBN 13 : 1317999959
Total Pages : 144 pages
Book Rating : 4.3/5 (179 download)

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Book Synopsis Wind Tunnel Testing of High-Rise Buildings by : Peter Irwin

Download or read book Wind Tunnel Testing of High-Rise Buildings written by Peter Irwin and published by Routledge. This book was released on 2013-06-19 with total page 144 pages. Available in PDF, EPUB and Kindle. Book excerpt: Since the 1960s, wind tunnel testing has become a commonly used tool in the design of tall buildings. It was pioneered, in large part, during the design of the World Trade Center Towers in New York. Since those early days of wind engineering, wind tunnel testing techniques have developed in sophistication, but these techniques are not widely understood by the designers using the results. As a direct result, the CTBUH Wind Engineering Working Group was formed to develop a concise guide for the non-specialist. The primary goal of this guide is to provide an overview of the wind tunnel testing process for design professionals. This knowledge allows readers to ask the correct questions of their wind engineering consultants throughout the design process. This is not an in-depth guide to the technical intricacies of wind tunnel testing, it focusses instead on the information the design community needs, including: a unique methodology for the presentation of wind tunnel results to allow straightforward comparison of results from different wind tunnel laboratories. advice on when a tall building is likely to be sufficiently sensitive to wind effects to benefit from a wind tunnel test background for assessing whether design codes and standards are applicable details of the types of tests that are commonly conducted descriptions of the fundamentals of wind climate and the interaction of wind and tall buildings This unique book is an essential guide for all designers of tall buildings, and anyone else interested in the process of wind tunnel testing for tall buildings.

Wind Effects on Structures

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Publisher : John Wiley & Sons
ISBN 13 : 1119375886
Total Pages : 533 pages
Book Rating : 4.1/5 (193 download)

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Book Synopsis Wind Effects on Structures by : Emil Simiu

Download or read book Wind Effects on Structures written by Emil Simiu and published by John Wiley & Sons. This book was released on 2019-03-11 with total page 533 pages. Available in PDF, EPUB and Kindle. Book excerpt: Provides structural engineers with the knowledge and practical tools needed to perform structural designs for wind that incorporate major technological, conceptual, analytical and computational advances achieved in the last two decades. With clear explanations and documentation of the concepts, methods, algorithms, and software available for accounting for wind loads in structural design, it also describes the wind engineer's contributions in sufficient detail that they can be effectively scrutinized by the structural engineer in charge of the design. Wind Effects on Structures: Modern Structural Design for Wind, 4th Edition is organized in four sections. The first covers atmospheric flows, extreme wind speeds, and bluff body aerodynamics. The second examines the design of buildings, and includes chapters on aerodynamic loads; dynamic and effective wind-induced loads; wind effects with specified MRIs; low-rise buildings; tall buildings; and more. The third part is devoted to aeroelastic effects, and covers both fundamentals and applications. The last part considers other structures and special topics such as trussed frameworks; offshore structures; and tornado effects. Offering readers the knowledge and practical tools needed to develop structural designs for wind loadings, this book: Points out significant limitations in the design of buildings based on such techniques as the high-frequency force balance Discusses powerful algorithms, tools, and software needed for the effective design for wind, and provides numerous examples of application Discusses techniques applicable to structures other than buildings, including stacks and suspended-span bridges Features several appendices on Elements of Probability and Statistics; Peaks-over-Threshold Poisson-Process Procedure for Estimating Peaks; estimates of the WTC Towers’ Response to Wind and their shortcomings; and more Wind Effects on Structures: Modern Structural Design for Wind, 4th Edition is an excellent text for structural engineers, wind engineers, and structural engineering students and faculty.

Numerical Evaluation of Wind Effects on Buildings

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (13 download)

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Book Synopsis Numerical Evaluation of Wind Effects on Buildings by : Yongsheng Zhou

Download or read book Numerical Evaluation of Wind Effects on Buildings written by Yongsheng Zhou and published by . This book was released on 1995 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Applied Mechanics Reviews

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Publisher :
ISBN 13 :
Total Pages : 620 pages
Book Rating : 4.:/5 (26 download)

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Book Synopsis Applied Mechanics Reviews by :

Download or read book Applied Mechanics Reviews written by and published by . This book was released on 1974 with total page 620 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Wind Effects on Structures

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Publisher : John Wiley & Sons
ISBN 13 : 1119375932
Total Pages : 661 pages
Book Rating : 4.1/5 (193 download)

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Book Synopsis Wind Effects on Structures by : Emil Simiu

Download or read book Wind Effects on Structures written by Emil Simiu and published by John Wiley & Sons. This book was released on 2019-01-14 with total page 661 pages. Available in PDF, EPUB and Kindle. Book excerpt: Provides structural engineers with the knowledge and practical tools needed to perform structural designs for wind that incorporate major technological, conceptual, analytical and computational advances achieved in the last two decades. With clear explanations and documentation of the concepts, methods, algorithms, and software available for accounting for wind loads in structural design, it also describes the wind engineer's contributions in sufficient detail that they can be effectively scrutinized by the structural engineer in charge of the design. Wind Effects on Structures: Modern Structural Design for Wind, 4th Edition is organized in four sections. The first covers atmospheric flows, extreme wind speeds, and bluff body aerodynamics. The second examines the design of buildings, and includes chapters on aerodynamic loads; dynamic and effective wind-induced loads; wind effects with specified MRIs; low-rise buildings; tall buildings; and more. The third part is devoted to aeroelastic effects, and covers both fundamentals and applications. The last part considers other structures and special topics such as trussed frameworks; offshore structures; and tornado effects. Offering readers the knowledge and practical tools needed to develop structural designs for wind loadings, this book: Points out significant limitations in the design of buildings based on such techniques as the high-frequency force balance Discusses powerful algorithms, tools, and software needed for the effective design for wind, and provides numerous examples of application Discusses techniques applicable to structures other than buildings, including stacks and suspended-span bridges Features several appendices on Elements of Probability and Statistics; Peaks-over-Threshold Poisson-Process Procedure for Estimating Peaks; estimates of the WTC Towers’ Response to Wind and their shortcomings; and more Wind Effects on Structures: Modern Structural Design for Wind, 4th Edition is an excellent text for structural engineers, wind engineers, and structural engineering students and faculty.

A Multi-fidelity Numerical Framework for Predicting Wind Loads on Buildings

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (122 download)

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Book Synopsis A Multi-fidelity Numerical Framework for Predicting Wind Loads on Buildings by : Giacomo Lamberti

Download or read book A Multi-fidelity Numerical Framework for Predicting Wind Loads on Buildings written by Giacomo Lamberti and published by . This book was released on 2020 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: According to the Revision of World Urbanization Prospects, published by the United Nations in 2018, 2.5 billion people are expected to populate big cities by $2050$. As a consequence, the number of high-rise buildings has drastically increased over the last decades, to fulfill the need of expansion of urban areas. Not only are tall buildings increasing in number, they are also becoming taller, more slender and complex in shape, making the design process very challenging. Another recent tendency in high-rise buildings' construction is the employment of glazed panels to cover the external facades. Cladding design requires accurate estimations of wind loads to guarantee the structural integrity of the panels, without resorting to overly conservative designs. This is especially important near the corners and edges of high-rise buildings' side walls, where the wind-induced pressure can result in extreme suction loads. Nowadays wind tunnel experiments are required by the building standards to estimate the wind loads on tall buildings and their components. The procedure is well established, but limited in the number of measurements locations and spatial resolution. Computational fluid-dynamics (CFD) offers an attractive alternative to the wind engineering community, given the potential to provide the complete $3$-dimensional flow field in complex geometries with a spatial resolution equal to the grid resolution. Nevertheless, significant progress is still necessary to guarantee the accuracy of the results and extensively employ CFD simulations for design purposes. In addition, the computational cost should be reasonable to practically use the simulations in the design process. The accuracy of CFD simulations of atmospheric boundary layer (ABL) flows can be compromised by two factors: uncertainties in the operating parameters, such as the boundary conditions, and simplified model assumptions, such as the turbulence model. The presence of these uncertainties is limiting the use of CFD to qualitative analysis in early design phases. This could be addressed by incorporating methods for uncertainty quantification (UQ) in the predictive models. By providing predictions in terms of mean values and confidence intervals, the models can provide significantly more meaningful information to designers and engineers than the outcome of a single deterministic simulation. Therefore, the long-term goal of this research is to enable the extensive use of CFD simulations throughout the different phases of high-rise building's design, by improving the reliability and efficiency of the numerical simulations. To achieve this goal, two CFD models with different level of fidelity and computational cost are employed: large-eddies simulations (LES) and Reynolds-averaged Navier-Stokes (RANS) simulations. Validation with wind tunnel data is carried out at all stages, to evaluate the performance of the proposed numerical framework. LES can directly provide the main quantities of interest (QoIs) of cladding design, i.e. the peak pressure distribution around the building and the design pressure of the panels. However, the generation of proper inflow conditions can be challenging and result in significant uncertainty in the results. Therefore the first goal of this thesis is to address this challenge and improve the confidence in the LES prediction of the pressure distribution around high-rise buildings. As a first step, an inflow generation method able to accurately produce user-specified turbulence statistics, while maintaining low computational cost, is developed. The method is the starting point of a LES UQ framework, that has not only the goal to produce desired ABL statistics, but also to account for the inherent uncertainty in the definition of these target profiles. The framework provides a systematic way to address the great sensitivity to the inflow conditions, that LES on high-rise buildings manifested in literature. The results demonstrate that, if the incoming boundary layer is properly generated and the underlying uncertainty is considered, LES can provide accurate prediction of the QoIs of cladding design. The computational cost of LES simulations can be prohibitive for wind engineering applications, especially during the early phases of design; for this reason, despite the turbulence model represents an important source of error, RANS simulations still represent an attractive tool. In this regard, the second objective of this thesis is to improve the confidence in the RANS prediction of the mean pressure distribution around the building, by quantifying the combined effect of uncertainties in the inflow conditions and turbulence model. The results confirm the well know RANS limitations in dealing with the flow around bluff bodies and the great level of uncertainty introduced by the turbulence model. Therefore, to overcome these issues a multi-fidelity framework is established, by leveraging a limited number of LES simulations. Validation against LES at different wind directions, shows significant improvement in the mean pressure prediction, over the standard RANS method. When designing cladding systems, we are ultimately interested in the pressure fluctuations. Therefore, the third objective of the thesis is to extend the multi-fidelity framework to enable the calculation of the root mean square pressure from RANS simulations and a limited number of LES. In this regard, a machine learning framework is proposed, to relate the LES data of rms pressure coefficient to RANS time-averaged quantities. The results demonstrate that the procedure has the potential to drastically reduce the number of LES simulations needed for design, while assuring good level of accuracy.

Wind Loading of Structures

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Publisher : CRC Press
ISBN 13 : 1000220753
Total Pages : 639 pages
Book Rating : 4.0/5 (2 download)

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Book Synopsis Wind Loading of Structures by : John D. Holmes

Download or read book Wind Loading of Structures written by John D. Holmes and published by CRC Press. This book was released on 2020-12-08 with total page 639 pages. Available in PDF, EPUB and Kindle. Book excerpt: Wind forces from extreme wind events are the dominant loading for many parts of the world, exacerbated by climate change and the continued construction of tall buildings and structures. This authoritative source, for practising and academic structural engineers and graduate students, ties the principles of wind loads on structures to the relevant aspects of meteorology, bluff-body aerodynamics, probability and statistics, and structural dynamics. This new edition covers: Climate change effects on extreme winds – particularly those from tropical cyclones, hurricanes and typhoons Modelling of potential wind vulnerability and damage Developments in extreme value probability analysis of extreme wind speeds and directions Explanation of the difference between ‘return period’ and ‘average recurrence interval’, as well as ‘bootstrapping’ techniques for deriving confidence limits Wind over water, and profiles and turbulence in non-synoptic winds An expanded chapter on internal pressures produced by wind for various opening and permeability scenarios Aerodynamic shaping of high- and low-rise buildings Recent developments in five major wind codes and standards A new chapter on computational fluid dynamics (CFD), as applied to wind engineering A greatly expanded appendix providing the basic information on extreme wind climates for over 140 countries and territories Additional examples for many chapters in this book

Vibration Analysis and Control in Mechanical Structures and Wind Energy Conversion Systems

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Publisher : BoD – Books on Demand
ISBN 13 : 178923056X
Total Pages : 132 pages
Book Rating : 4.7/5 (892 download)

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Book Synopsis Vibration Analysis and Control in Mechanical Structures and Wind Energy Conversion Systems by : Francisco Beltran-Carbajal

Download or read book Vibration Analysis and Control in Mechanical Structures and Wind Energy Conversion Systems written by Francisco Beltran-Carbajal and published by BoD – Books on Demand. This book was released on 2018-04-18 with total page 132 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book focuses on recent and innovative methods on vibration analysis, system identification, and diverse control design methods for both wind energy conversion systems and vibrating systems. Advances on both theoretical and experimental studies about analysis and control of oscillating systems in several engineering disciplines are discussed. Various control devices are synthesized and implemented for vibration attenuation tasks. The book is addressed to researchers and practitioners on the subject, as well as undergraduate and postgraduate students and other experts and newcomers seeking more information about the state of the art, new challenges, innovative solutions, and new trends and developments in these areas. The six chapters of the book cover a wide range of interesting issues related to modeling, vibration control, parameter identification, active vehicle suspensions, tuned vibration absorbers, electronically controlled wind energy conversion systems, and other relevant case studies.

Computational Science and Its Applications – ICCSA 2022 Workshops

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Publisher : Springer Nature
ISBN 13 : 3031105427
Total Pages : 729 pages
Book Rating : 4.0/5 (311 download)

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Book Synopsis Computational Science and Its Applications – ICCSA 2022 Workshops by : Osvaldo Gervasi

Download or read book Computational Science and Its Applications – ICCSA 2022 Workshops written by Osvaldo Gervasi and published by Springer Nature. This book was released on 2022-07-22 with total page 729 pages. Available in PDF, EPUB and Kindle. Book excerpt: The eight-volume set LNCS 13375 – 13382 constitutes the proceedings of the 22nd International Conference on Computational Science and Its Applications, ICCSA 2022, which was held in Malaga, Spain during July 4 – 7, 2022. The first two volumes contain the proceedings from ICCSA 2022, which are the 57 full and 24 short papers presented in these books were carefully reviewed and selected from 279 submissions. The other six volumes present the workshop proceedings, containing 285 papers out of 815 submissions. These six volumes includes the proceedings of the following workshops: ​ Advances in Artificial Intelligence Learning Technologies: Blended Learning, STEM, Computational Thinking and Coding (AAILT 2022); Workshop on Advancements in Applied Machine-learning and Data Analytics (AAMDA 2022); Advances in information Systems and Technologies for Emergency management, risk assessment and mitigation based on the Resilience (ASTER 2022); Advances in Web Based Learning (AWBL 2022); Blockchain and Distributed Ledgers: Technologies and Applications (BDLTA 2022); Bio and Neuro inspired Computing and Applications (BIONCA 2022); Configurational Analysis For Cities (CA Cities 2022); Computational and Applied Mathematics (CAM 2022), Computational and Applied Statistics (CAS 2022); Computational Mathematics, Statistics and Information Management (CMSIM); Computational Optimization and Applications (COA 2022); Computational Astrochemistry (CompAstro 2022); Computational methods for porous geomaterials (CompPor 2022); Computational Approaches for Smart, Conscious Cities (CASCC 2022); Cities, Technologies and Planning (CTP 2022); Digital Sustainability and Circular Economy (DiSCE 2022); Econometrics and Multidimensional Evaluation in Urban Environment (EMEUE 2022); Ethical AI applications for a human-centered cyber society (EthicAI 2022); Future Computing System Technologies and Applications (FiSTA 2022); Geographical Computing and Remote Sensing for Archaeology (GCRSArcheo 2022); Geodesign in Decision Making: meta planning and collaborative design for sustainable and inclusive development (GDM 2022); Geomatics in Agriculture and Forestry: new advances and perspectives (GeoForAgr 2022); Geographical Analysis, Urban Modeling, Spatial Statistics (Geog-An-Mod 2022); Geomatics for Resource Monitoring and Management (GRMM 2022); International Workshop on Information and Knowledge in the Internet of Things (IKIT 2022); 13th International Symposium on Software Quality (ISSQ 2022); Land Use monitoring for Sustanability (LUMS 2022); Machine Learning for Space and Earth Observation Data (MALSEOD 2022); Building multi-dimensional models for assessing complex environmental systems (MES 2022); MOdels and indicators for assessing and measuring the urban settlement deVElopment in the view of ZERO net land take by 2050 (MOVEto0 2022); Modelling Post-Covid cities (MPCC 2022); Ecosystem Services: nature’s contribution to people in practice. Assessment frameworks, models, mapping, and implications (NC2P 2022); New Mobility Choices For Sustainable and Alternative Scenarios (NEMOB 2022); 2nd Workshop on Privacy in the Cloud/Edge/IoT World (PCEIoT 2022); Psycho-Social Analysis of Sustainable Mobility in The Pre- and Post-Pandemic Phase (PSYCHE 2022); Processes, methods and tools towards RESilient cities and cultural heritage prone to SOD and ROD disasters (RES 2022); Scientific Computing Infrastructure (SCI 2022); Socio-Economic and Environmental Models for Land Use Management (SEMLUM 2022); 14th International Symposium on Software Engineering Processes and Applications (SEPA 2022); Ports of the future - smartness and sustainability (SmartPorts 2022); Smart Tourism (SmartTourism 2022); Sustainability Performance Assessment: models, approaches and applications toward interdisciplinary and integrated solutions (SPA 2022); Specifics of smart cities development in Europe (SPEED 2022); Smart and Sustainable Island Communities (SSIC 2022); Theoretical and Computational Chemistryand its Applications (TCCMA 2022); Transport Infrastructures for Smart Cities (TISC 2022); 14th International Workshop on Tools and Techniques in Software Development Process (TTSDP 2022); International Workshop on Urban Form Studies (UForm 2022); Urban Regeneration: Innovative Tools and Evaluation Model (URITEM 2022); International Workshop on Urban Space and Mobilities (USAM 2022); Virtual and Augmented Reality and Applications (VRA 2022); Advanced and Computational Methods for Earth Science Applications (WACM4ES 2022); Advanced Mathematics and Computing Methods in Complex Computational Systems (WAMCM 2022).

High-Rise Buildings under Multi-Hazard Environment

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Publisher : Springer
ISBN 13 : 9811017441
Total Pages : 251 pages
Book Rating : 4.8/5 (11 download)

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Book Synopsis High-Rise Buildings under Multi-Hazard Environment by : Mingfeng Huang

Download or read book High-Rise Buildings under Multi-Hazard Environment written by Mingfeng Huang and published by Springer. This book was released on 2016-08-15 with total page 251 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book discusses performance-based seismic and wind-resistant design for high-rise building structures, with a particular focus on establishing an integrated approach for performance-based wind engineering, which is currently less advanced than seismic engineering. This book also provides a state-of-the-art review of numerous methodologies, including computational fluid dynamics (CFD), extreme value analysis, structural optimization, vibration control, pushover analysis, response spectrum analysis, modal parameter identification for the assessment of the wind-resistant and seismic performance of tall buildings in the design stage and actual tall buildings in use. Several new structural optimization methods, including the augmented optimality criteria method, have been developed and employed in the context of performance-based design. This book is a valuable resource for students, researchers and engineers in the field of civil and structural engineering.

Computational Fluid Dynamics for Wind Engineering

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Publisher : John Wiley & Sons
ISBN 13 : 1119845076
Total Pages : 245 pages
Book Rating : 4.1/5 (198 download)

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Book Synopsis Computational Fluid Dynamics for Wind Engineering by : R. Panneer Selvam

Download or read book Computational Fluid Dynamics for Wind Engineering written by R. Panneer Selvam and published by John Wiley & Sons. This book was released on 2022-07-29 with total page 245 pages. Available in PDF, EPUB and Kindle. Book excerpt: COMPUTATIONAL FLUID DYNAMICS FOR WIND ENGINEERING An intuitive and comprehensive exploration of computational fluid dynamics in the study of wind engineering Computational Fluid Dynamics for Wind Engineering provides readers with a detailed overview of the use of computational fluid dynamics (CFD) in understanding wind loading on structures, a problem becoming more pronounced as urban density increases and buildings become larger. The work emphasizes the application of CFD to practical problems in wind loading and helps readers understand important associated factors such as turbulent flow around buildings and bridges. The author, with extensive research experience in this and related fields, offers relevant and engaging practice material to help readers learn and retain the concepts discussed, and each chapter includes accessible summaries at the end. In addition, the use of the OpenFOAM tool—an open-source wind engineering application—is explored. Computational Fluid Dynamics for Wind Engineering covers topics such as: Fluid mechanics, turbulence in fluid mechanics, turbulence modelling, and mathematical modelling of wind engineering problems The finite difference method for CFD, solutions to the incompressible Navier-Stokes equations, visualization, and animation in CFD, and the application of CFD to building and bridge aerodynamics How to compare CFD analysis with wind tunnel measurements, field measurements, and the ASCE-7 pressure coefficients Wind effects and strain on large structures Providing comprehensive coverage of how CFD can explain wind load on structures along with helpful examples of practical applications, Computational Fluid Dynamics for Wind Engineering serves as an invaluable resource for senior undergraduate students, graduate students, researchers and practitioners of civil and structural engineering.

Advances in Structures, Systems and Materials

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Publisher : Springer Nature
ISBN 13 : 9811532540
Total Pages : 316 pages
Book Rating : 4.8/5 (115 download)

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Book Synopsis Advances in Structures, Systems and Materials by : M. Vinyas

Download or read book Advances in Structures, Systems and Materials written by M. Vinyas and published by Springer Nature. This book was released on 2020-04-28 with total page 316 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book comprises select peer-reviewed papers from the International Conference on Emerging Research in Civil, Aeronautical and Mechanical Engineering (ERCAM-2019). The contents focus on the latest research trends in engineering materials, mechanics, structures and systems. A wide variety of interesting problems in civil, aeronautical and mechanical engineering have been addressed in this book through various experimental, numerical and analytical methods. The topics covered also provide insight into the challenges prevailing in the aforementioned engineering domains and the potential solutions to address those. Given the contents, the book is a valuable resource for students as well as researchers.