Kirjojen hintavertailu – 12 903 724 kirjaa ja 27 kauppaa

Kirjailija

Jie Zhang

Kirjat ja teokset yhdessä paikassa: 34 kirjaa, julkaisuja vuosilta 2002–2026, suosituimpiin kuuluu The Strain Theory of Suicide. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

34 kirjaa

Kirjojen julkaisuvuodet: 2002–2026.

Submarine Pipeline Integrity: Assessment of Failure Modes and Advanced Evaluation Techniques

Submarine Pipeline Integrity: Assessment of Failure Modes and Advanced Evaluation Techniques

Han Zhang; Jie Zhang; Ruinan Lin; Yifei Wang

Springer International Publishing AG
2025
sidottu
This book provides readers with recent insights and practical tools for the design, maintenance and repair of submarine pipeline. Based on research and field experience of the authors, it offers a comprehensive text on both the foundational aspects of pipeline integrity and the latest advancements in inspection and repair technologies. It covers visual, non-destructive testing, and intelligent technologies for inspection, and simulations and reliability analysis for assessing corroded pipelines. In turn, it examines impact damage mechanisms, and thermal buckling behavior. Further, it covers composite pipelines, including their mechanical properties and failure mechanisms under complex loads. It addresses dent behaviors in steel pipelines, highlighting innovative repair techniques and emerging trends. Written for professionals, such as engineers, project managers, and researchers, this book offers advanced insights and practical tools for assessing submarine pipelines operating under complex conditions in the context of increasingly challenging marine environments.
Rubber Structures in Oil and Gas Equipment

Rubber Structures in Oil and Gas Equipment

Jie Zhang; Chuanjun Han

TAYLOR FRANCIS LTD
2024
nidottu
Rubber products are widely used in all aspects of oil and gas drilling and production, which play an important role in oil and gas development. The performances of rubber products determine the safe and efficient development of oil and gas. In this book, rubber experiment and the constitutive model have been introduced. The rubber sealing ring, metal-rubber sealing structure, stator rubber of PDM, wellhead BOP and downhole rubber packer have been investigated. The mechanical properties and sealing properties of rubber structures have been studied. These contents can provide a basis for the design, manufacture and maintenance of rubber structures.
Geotechnical Reliability Analysis

Geotechnical Reliability Analysis

Jie Zhang; Te Xiao; Jian Ji; Peng Zeng; Zijun Cao

SPRINGER VERLAG, SINGAPORE
2023
sidottu
This textbook systematically introduces the theories, methods, and algorithms for geotechnical reliability analysis. There are a lot of illustrative examples in the textbook such that readers can easily grasp the concepts and theories related to geotechnical reliability analysis. A unique feature of the textbook is that computer codes are also provided through carefully designed examples such that the methods and the algorithms described in the textbook can be easily understood. In addition, the computer codes are flexible and can be conveniently extended to analyze different types of realistic problems with little additional efforts.
Language Policy and Planning for the Modern Olympic Games
This book is the first longitudinal study that addresses language policy and planning in the context of a major international sporting event and examines the ideological, political, social, cultural, and economic effects of such context-specific policy initiatives on contemporary China. The book has important reference value for future research on language management at the supernational level and language services for linguistically complex events. At the same time, it presents some broader implications for current and future language policy makers, language educators and learners, particularly from non-English speaking backgrounds. Foreword by Ingrid Piller
Rubber Structures in Oil and Gas Equipment

Rubber Structures in Oil and Gas Equipment

Jie Zhang; Chuanjun Han

TAYLOR FRANCIS LTD
2022
sidottu
Rubber products are widely used in all aspects of oil and gas drilling and production, which play an important role in oil and gas development. The performances of rubber products determine the safe and efficient development of oil and gas. In this book, rubber experiment and the constitutive model have been introduced. The rubber sealing ring, metal-rubber sealing structure, stator rubber of PDM, wellhead BOP and downhole rubber packer have been investigated. The mechanical properties and sealing properties of rubber structures have been studied. These contents can provide a basis for the design, manufacture and maintenance of rubber structures.
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第十一期 彭帥被性侵事件為何火越燒越旺 王岐山鮮為人知的性格 第十二期 溫家寶為何在中共百年慶典上如喪考妣 第十三期 王澄文集(一)中國新啓蒙運動 中華民族落後性批判 第十四期 栗戰書怎麼啦?朱镕基爲香港拍了桌子 第十五期 習近平要墜崖 王岐山為何不拉一把?王岐山潛伏的紅色娘子軍團 第十六期 習近平堅持"封城清零"的真實意圖 誰是殺死吹哨人李文亮醫生的真凶? 第十七期 豐縣鐵鏈女事件是習近平給自己挖了一個大坑 谷愛淩的愛國生意經 從盆滿缽滿到滿盤皆輸 第十八期 客觀評價習近平 第十九期 怪獸普京是如何煉成的? 拜登與習近平通電話一箭雙鵰 西方對俄羅斯投下金融核彈 第二十期 迷一樣的林彪 文革濁流中的叛逆者林立果 民國女星陳璐的悲欣人生
Language Policy and Planning for the Modern Olympic Games
This book is the first longitudinal study that addresses language policy and planning in the context of a major international sporting event and examines the ideological, political, social, cultural, and economic effects of such context-specific policy initiatives on contemporary China. The book has important reference value for future research on language management at the supernational level and language services for linguistically complex events. At the same time, it presents some broader implications for current and future language policy makers, language educators and learners, particularly from non-English speaking backgrounds. Foreword by Ingrid Piller
Supercritical Water Processing Technologies for Environment, Energy and Nanomaterial Applications

Supercritical Water Processing Technologies for Environment, Energy and Nanomaterial Applications

Shuzhong Wang; Donghai Xu; Yang Guo; Xingying Tang; Yuzhen Wang; Jie Zhang; Honghe Ma; Lili Qian; Yanhui Li

Springer Verlag, Singapore
2020
nidottu
This book systematically presents the technical aspects of supercritical water oxidation and supercritical water gasification for energy and environmental applications, which include reactor design, construction materials, corrosion, salt precipitation, etc. The book provides a comprehensive introduction to the properties of supercritical water, and the industrial applications, reaction mechanisms and reaction kinetics of supercritical water oxidation (SCWO) and supercritical water gasification (SCWG). The reactions occurring in supercritical water are complex, and studying their reaction mechanisms is of great importance for the development of supercritical water processing technologies. Accordingly, the book explains the oxidative mechanisms and kinetics of organic matter in supercritical water in detail. However, the harsh reaction conditions in supercritical water can easily create severe reactor corrosion and salt deposition problems. Therefore, the book alsocomprehensively reports on the mechanism analysis, state of research, and development trends regarding these two problems. Lastly, the book summarizes the development of supercritical water processing technologies, including studies on SCWO and SCWG, as well as near-zero-emission systems of pollutants based on SCWO technology. In short, the book provides a wealth of valuable information for all readers who are interested in using SCWO for organic waste treatment, and in using SCWG for hydrogen production with wet biomass.
Structure and Changes of China’s Financial System
By virtue of several theoretical models and hypotheses, this book is one of the earliest studies which systematically investigates the structure and changes of China’s financial institutions. To begin with, it examines the relation between state utility function and China’s economic growth, and reveals the formation and transition of China’s state-owned financial institutional arrangements. Based on this analysis, the author studies the influence of monetization on the arrangements, and the financial support to China’s gradual reform which have long been neglected by researchers. Also, the model of money demand that can explain the specific conditions of the gradual reform is built, as the neoclassical framework has been incapable of explaining China’s financial performance. In the last chapter, it discusses the dilemma of property rights under the state-owned financial system, with the establishment of the credit equilibrium model and the dual model of bad debts. With insightful theoretical analysis and empirical researches, this book will appeal to scholars and students in finance, economics and economic history.
Supercritical Water Processing Technologies for Environment, Energy and Nanomaterial Applications

Supercritical Water Processing Technologies for Environment, Energy and Nanomaterial Applications

Shuzhong Wang; Donghai Xu; Yang Guo; Xingying Tang; Yuzhen Wang; Jie Zhang; Honghe Ma; Lili Qian; Yanhui Li

Springer Verlag, Singapore
2019
sidottu
This book systematically presents the technical aspects of supercritical water oxidation and supercritical water gasification for energy and environmental applications, which include reactor design, construction materials, corrosion, salt precipitation, etc. The book provides a comprehensive introduction to the properties of supercritical water, and the industrial applications, reaction mechanisms and reaction kinetics of supercritical water oxidation (SCWO) and supercritical water gasification (SCWG). The reactions occurring in supercritical water are complex, and studying their reaction mechanisms is of great importance for the development of supercritical water processing technologies. Accordingly, the book explains the oxidative mechanisms and kinetics of organic matter in supercritical water in detail. However, the harsh reaction conditions in supercritical water can easily create severe reactor corrosion and salt deposition problems. Therefore, the book alsocomprehensively reports on the mechanism analysis, state of research, and development trends regarding these two problems. Lastly, the book summarizes the development of supercritical water processing technologies, including studies on SCWO and SCWG, as well as near-zero-emission systems of pollutants based on SCWO technology. In short, the book provides a wealth of valuable information for all readers who are interested in using SCWO for organic waste treatment, and in using SCWG for hydrogen production with wet biomass.
Rainfall-Induced Soil Slope Failure

Rainfall-Induced Soil Slope Failure

Lulu Zhang; Jinhui Li; Xu Li; Jie Zhang; Hong Zhu

CRC Press
2019
nidottu
Rainfall-induced landslides are common around the world. With global climate change, their frequency is increasing and the consequences are becoming greater. Previous studies assess them mostly from the perspective of a single discipline—correlating landslides with rainstorms, geomorphology and hydrology in order to establish a threshold prediction value for rainfall-induced landslides; analyzing the slope’s stability using a geomechanical approach; or assessing the risk from field records. Rainfall Induced Soil Slope Failure: Stability Analysis and Probabilistic Assessment integrates probabilistic approaches with the geotechnical modeling of slope failures under rainfall conditions with unsaturated soil. It covers theoretical models of rainfall infiltration and stability analysis, reliability analysis based on coupled hydro-mechanical modelling, stability of slopes with cracks, gravels and spatial heterogenous soils, and probabilistic model calibration based on measurement. It focuses on the uncertainties involved with rainfall-induced landslides and presents state-of-the art techniques and methods which characterize the uncertainties and quantify the probabilities and risk of rainfall-induced landslide hazards. Additionally, the authors cover: The failure mechanisms of rainfall-induced slope failureCommonly used infiltration and stability methodsThe infiltration and stability of natural soil slopes with cracks and colluvium materialsStability evaluation methods based on probabilistic approachesThe effect of spatial variability on unsaturated soil slopes and more
The Developments and the Applications of the Numerical Algorithms in Simulating the Incompressible Magnetohydrodynamics with Complex Boundaries and Free Surfaces
This thesis presents an accurate and advanced numerical methodology to remedy difficulties such as direct numerical simulation of magnetohydrodynamic (MHD) flow in computational fluid dynamics (CFD), grid generation processes in tokamak fusion facilities, and the coupling between the surface tension force and Lorentz force in the metallurgical industry. In addition, on the basis of the numerical platform it establishes, it also investigates selected interesting topics, e.g. single bubble motion under the influence of either vertical or horizontal magnetic fields. Furthermore, it confirms the relation between the bubble’s path instability and wake instability, and observes the anisotropic (isotropic) effect of the vertical (horizontal) magnetic field on the vortex structures, which determines the dynamic behavior of the rising bubble. The direct numerical simulation of magnetohydrodynamic (MHD) flows has proven difficult in the field of computational fluid dynamic (CFD) research, because it not only concerns the coupling of the equations governing the electromagnetic field and the fluid motion, but also calls for suitable numerical methods for computing the electromagnetic field. In tokamak fusion facilities, where the MHD effect is significant and the flow domain is complex, the process of grid generation requires considerable time and effort. Moreover, in the metallurgical industry, where multiphase MHD flows are usually encountered, the coupling between the surface tension force and Lorentz force adds to the difficulty of deriving direct numerical simulations.
Wafer Fabrication

Wafer Fabrication

Jie Zhang

De Gruyter
2018
sidottu
This book systematically introduces modeling, performance evaluation and applications of Automatic Materiel Handling System (AMHS) in semiconductor manufactucing, and focuses discussion on the coordination of two subsystems. Resources dispatch and optimization are conducted on operational research combined with cases studies. Written in a practical way, it is an essential reference for researchers and engineers in manufacturing and management.
The Developments and the Applications of the Numerical Algorithms in Simulating the Incompressible Magnetohydrodynamics with Complex Boundaries and Free Surfaces
This thesis presents an accurate and advanced numerical methodology to remedy difficulties such as direct numerical simulation of magnetohydrodynamic (MHD) flow in computational fluid dynamics (CFD), grid generation processes in tokamak fusion facilities, and the coupling between the surface tension force and Lorentz force in the metallurgical industry. In addition, on the basis of the numerical platform it establishes, it also investigates selected interesting topics, e.g. single bubble motion under the influence of either vertical or horizontal magnetic fields. Furthermore, it confirms the relation between the bubble’s path instability and wake instability, and observes the anisotropic (isotropic) effect of the vertical (horizontal) magnetic field on the vortex structures, which determines the dynamic behavior of the rising bubble. The direct numerical simulation of magnetohydrodynamic (MHD) flows has proven difficult in the field of computational fluid dynamic (CFD) research, because it not only concerns the coupling of the equations governing the electromagnetic field and the fluid motion, but also calls for suitable numerical methods for computing the electromagnetic field. In tokamak fusion facilities, where the MHD effect is significant and the flow domain is complex, the process of grid generation requires considerable time and effort. Moreover, in the metallurgical industry, where multiphase MHD flows are usually encountered, the coupling between the surface tension force and Lorentz force adds to the difficulty of deriving direct numerical simulations.
Structure and Changes of China’s Financial System
By virtue of several theoretical models and hypotheses, this book is one of the earliest studies which systematically investigates the structure and changes of China’s financial institutions. To begin with, it examines the relation between state utility function and China’s economic growth, and reveals the formation and transition of China’s state-owned financial institutional arrangements. Based on this analysis, the author studies the influence of monetization on the arrangements, and the financial support to China’s gradual reform which have long been neglected by researchers. Also, the model of money demand that can explain the specific conditions of the gradual reform is built, as the neoclassical framework has been incapable of explaining China’s financial performance. In the last chapter, it discusses the dilemma of property rights under the state-owned financial system, with the establishment of the credit equilibrium model and the dual model of bad debts. With insightful theoretical analysis and empirical researches, this book will appeal to scholars and students in finance, economics and economic history.
Multi-Agent-Based Production Planning and Control
At the crossroads of artificial intelligence, manufacturing engineering, operational research and industrial engineering and management, multi-agent based production planning and control is an intelligent and industrially crucial technology with increasing importance. This book provides a complete overview of multi-agent based methods for today’s competitive manufacturing environment, including the Job Shop Manufacturing and Re-entrant Manufacturing processes. In addition to the basic control and scheduling systems, the author also highlights advance research in numerical optimization methods and wireless sensor networks and their impact on intelligent production planning and control system operation. Enables students, researchers and engineers to understand the fundamentals and theories of multi-agent based production planning and controlWritten by an author with more than 20 years’ experience in studying and formulating a complete theoretical system in production planning technologiesFully illustrated throughout, the methods for production planning, scheduling and controlling are presented using experiments, numerical simulations and theoretical analysis Comprehensive and concise, Multi-Agent Based Production Planning and Control is aimed at the practicing engineer and graduate student in industrial engineering, operational research, and mechanical engineering. It is also a handy guide for advanced students in artificial intelligence and computer engineering.
Rainfall-Induced Soil Slope Failure

Rainfall-Induced Soil Slope Failure

Lulu Zhang; Jinhui Li; Xu Li; Jie Zhang; Hong Zhu

Productivity Press
2016
sidottu
Rainfall-induced landslides are common around the world. With global climate change, their frequency is increasing and the consequences are becoming greater. Previous studies assess them mostly from the perspective of a single discipline—correlating landslides with rainstorms, geomorphology and hydrology in order to establish a threshold prediction value for rainfall-induced landslides; analyzing the slope’s stability using a geomechanical approach; or assessing the risk from field records. Rainfall Induced Soil Slope Failure: Stability Analysis and Probabilistic Assessment integrates probabilistic approaches with the geotechnical modeling of slope failures under rainfall conditions with unsaturated soil. It covers theoretical models of rainfall infiltration and stability analysis, reliability analysis based on coupled hydro-mechanical modelling, stability of slopes with cracks, gravels and spatial heterogenous soils, and probabilistic model calibration based on measurement. It focuses on the uncertainties involved with rainfall-induced landslides and presents state-of-the art techniques and methods which characterize the uncertainties and quantify the probabilities and risk of rainfall-induced landslide hazards. Additionally, the authors cover: The failure mechanisms of rainfall-induced slope failureCommonly used infiltration and stability methodsThe infiltration and stability of natural soil slopes with cracks and colluvium materialsStability evaluation methods based on probabilistic approachesThe effect of spatial variability on unsaturated soil slopes and more