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A Turbine Blade Parametric Modeling Method Considering 1-D Heat Transfer Analysis
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作者 LI Ji-xing XI Ping +1 位作者 GUO Yan-fei ZHANG Jian-qi 《Computer Aided Drafting,Design and Manufacturing》 2015年第3期1-9,共9页
Traditional feature-based turbine blade models can match the needs of geometric modeling but could hardly meet the requirement of data extraction in 1-D heat transfer analysis. In this paper, the requirements of data ... Traditional feature-based turbine blade models can match the needs of geometric modeling but could hardly meet the requirement of data extraction in 1-D heat transfer analysis. In this paper, the requirements of data extraction in 1-D heat transfer analysis are taken into consideration as well as geometric representation in parametric design process. An improved turbine blade parametric modeling method is proposed. Based on the modeling method proposed, a system structure of blade modeling process considering 1-D heat transfer analysis is devised. Eventually, a turbine blade parametric modeling system is constructed to test and verify the feasibility of the proposed modeling method and system structure. Experiments show that the blade parametric modeling method proposed can make geometric models better adapt to the specific requirements of 1-D heat transfer analysis and has certain reference value to the creation of high quality digital models. 展开更多
关键词 turbine blade parametric modeling 1-D heat transfer analysis data extraction
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Analysis of influence of heat exchangerfouling on heat transfer performancebased on thermal fluid coupling 被引量:1
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作者 HUANG Si MURAD Tariq +2 位作者 NIU Qifeng LIN Guangtang CHEN Jianxun 《排灌机械工程学报》 CSCD 北大核心 2023年第7期695-700,共6页
A study on heat transfer performance by thermal fluid coupling simulation for the fouling in a shell-tube heat exchanger used in engineering was presented. The coupling simulation was performed in a fluid and solid do... A study on heat transfer performance by thermal fluid coupling simulation for the fouling in a shell-tube heat exchanger used in engineering was presented. The coupling simulation was performed in a fluid and solid domains under three different fouling conditions: fouling inside the tube, fouling outside the tube, and fouling inside the shell. The flow field, temperature, and pressure distributions in the heat exchanger were solved numerically to analyze the heat transfer performance parameters, such as thermal resistance. It is found that the pressure drop of the heat exchanger and the thermal resistance of the tube wall increase by nearly 30% and 20%, respectively, when the relative fouling thickness reaches 10%. The fouling inside the tube has more impact on the heat transfer performance of the heat exchanger, and the fouling inside the shell has less impact. 展开更多
关键词 shell-tube heat exchanger thermal fluid coupling fouling thermal resistance heat transfer analysis
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NUMERICAL ANALYSIS OF THREE-DIMENSIONAL FLUID FLOW AND HEAT TRANSFER IN TIG WELD POOL WITH FULL PENETRATION WU Chuansong,CAO Zhenning,WU Lin Harbin Institute of Technology,Harbin,China 被引量:4
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作者 WU Chuansong,CAO Zhenning,WU Lin Harbin Institute of Technology,Harbin,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1993年第8期130-136,共7页
A model is established to analyze three-dimensional fluid flow and heat transfer in TICweld pools with full penetration.It considers the deformation of the molten pool surfaceat the condition of full penetrated workpi... A model is established to analyze three-dimensional fluid flow and heat transfer in TICweld pools with full penetration.It considers the deformation of the molten pool surfaceat the condition of full penetrated workpieees,takes the are pressure as the drivingforce of the pool surface deformation,and determines the surface configuration of weldpool based on the dynamic balance of arc pressure,pool gravity and surface tension atdeformed weld pool surface. The SIMPLER algorithm is used to calculate the fluid flowfield and temperature distribution in TIG weld pools of stainless steel workpieces.TIGwelding experiments are made to verify the validity of the model.It shows the calculatedresults by the model are in good agreement with experimental measurements. professor,Dept of Welding Engineering,Harbin Institute of Technology,Harbin 150006,China 展开更多
关键词 TIG weld pool full penetration fluid flow heat transfer numerical analysis
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Lie group analysis for thermophoretic and radiative augmentation of heat and mass transfer in a Brinkman-Darcy flow over a flat surface with heat generation
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作者 Faiza A.Salama 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2011年第4期531-540,共10页
A boundary layer analysis is presented to investigate numerically the effects of radiation, thermophoresis and the dimensionless heat generation or absorption on hydromagnetic flow with heat and mass transfer over a f... A boundary layer analysis is presented to investigate numerically the effects of radiation, thermophoresis and the dimensionless heat generation or absorption on hydromagnetic flow with heat and mass transfer over a flat surface in a porous medium. The boundary layer equations are transformed to non-linear ordinary differential equations using scaling group of transformations and they are solved numerically by using the fourth order Runge-Kutta method with shooting technique for some values of physical parameters. Comparisons with previously published work are performed and the results are found to be in very good agreement. Many results are obtained and a representative set is displayed graphically to illustrate the influence of the various parameters on the dimensionless velocity, temperature and concentration profiles as well as the local skin-friction coefficient, wall heat transfer, particle deposition rate and wall thermophoretic deposition velocity. The results show that the magnetic field induces acceleration of the flow, rather than deceleration (as in classical magnetohydrodynamics (MHD) boundary layer flow) but to reduce temperature and increase concentration of particles in boundary layer. Also, there is a strong dependency of the concentration in the boundary layer on both the Schmidt number and mass transfer parameter. 展开更多
关键词 Lie group analysis Brinkman-Darcy flowBoundary layer heat and mass transfer
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Analytical transient phase change heat transfer model of wearable electronics with a thermal protection substrate
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作者 Yingli SHI Junyun JI +2 位作者 Yafei YIN Yuhang LI Yufeng XING 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2020年第11期1599-1610,共12页
As thermal protection substrates for wearable electronics,functional soft composites made of polymer materials embedded with phase change materials and metal layers demonstrate unique capabilities for the thermal prot... As thermal protection substrates for wearable electronics,functional soft composites made of polymer materials embedded with phase change materials and metal layers demonstrate unique capabilities for the thermal protection of human skin.Here,we develop an analytical transient phase change heat transfer model to investigate the thermal performance of a wearable electronic device with a thermal protection substrate.The model is validated by experiments and the finite element analysis(FEA).The effects of the substrate structure size and heat source power input on the temperature management efficiency are investigated systematically and comprehensively.The results show that the objective of thermal management for wearable electronics is achieved by the following thermal protection mechanism.The metal thin film helps to dissipate heat along the in-plane direction by reconfiguring the direction of heat flow,while the phase change material assimilates excessive heat.These results will not only promote the fundamental understanding of the thermal properties of wearable electronics incorporating thermal protection substrates,but also facilitate the rational design of thermal protection substrates for wearable electronics. 展开更多
关键词 wearable electronics functional composite theoretical heat transfer analysis thermal management
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Mixed convection heat transfer in horizontal channel filled with nanofluids 被引量:1
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作者 Tao FAN Hang XU I. POP 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2013年第3期339-350,共12页
The laminar fully developed nanofluid flow and heat transfer in a horizonal channel are investigated. Highly accurate solutions for the temperature and nanopavticle concentration distributions are obtained. The effect... The laminar fully developed nanofluid flow and heat transfer in a horizonal channel are investigated. Highly accurate solutions for the temperature and nanopavticle concentration distributions are obtained. The effects of the Brownian motion parameter Nb, the thermophoresis parameter Nt, and the Lewis number Le on the temperature and nanoparticle concentration distributions are discussed. The current analysis shows that the nanoparticles can improve the heat transfer characteristics significantly for this flow problem. 展开更多
关键词 nanofluid flow horizontal channel mixed convection heat transfer homotopy analysis method (HAM)
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AN ADAPTIVE ALGORITHM OF PRECISE INTEGRATION FOR TRANSIENT ANALYSIS 被引量:8
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作者 Zhang Hongwu Chen Biaosong gu Yuanxian 《Acta Mechanica Solida Sinica》 SCIE EI 2001年第3期215-224,共10页
This paper presents an improved precise integration algorithm fortransient analysis of heat transfer and some other problems. Theoriginal precise integration method is improved by means of the inve-rse accuracy analys... This paper presents an improved precise integration algorithm fortransient analysis of heat transfer and some other problems. Theoriginal precise integration method is improved by means of the inve-rse accuracy analysis so that the parameter N, which has been takenas a constant and an independent pa- rameter without consideration ofthe problems in the original method, can be generated automaticallyby the algorithm itself. 展开更多
关键词 heat transfer analysis precise integration method inverse accuracyanalysis
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Application of First-Order Differential Equation to Heat Convection in Fluid
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作者 Zahidullah Rehan 《Journal of Applied Mathematics and Physics》 2020年第8期1456-1462,共7页
Differential equation is very important in science and engineering, because it required the description of some measurable quantities (position, temperature, population, concentration, electrical current, etc.) in mat... Differential equation is very important in science and engineering, because it required the description of some measurable quantities (position, temperature, population, concentration, electrical current, etc.) in mathematical form of ordinary differential equations (ODEs). In this research, we determine heat transferred by convection in fluid problems by first-order ordinary differential equations. So in this research work first we discuss the solution of ordinary homogeneous and non-homogeneous differential equation and then apply the solution of first-order ODEs to heat transferring particularly in heat convection in fluid. 展开更多
关键词 Differential Equation heat transfer analysis heat Convection in Fluid Newton Cooling Law
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Finite Element Analysis for Temperature Compensation of ITO Conductive Film System
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作者 Wen-Chang Tsao Wen-Ning Chuang Min-Wei Hung 《Journal of Mechanics Engineering and Automation》 2021年第4期91-96,共6页
Indium tin oxide(ITO)heating film is primarily used as the defogging component of an instrument observation window.Conventionally,a constant current is used to heat the film.Through the feedback of the temperature sen... Indium tin oxide(ITO)heating film is primarily used as the defogging component of an instrument observation window.Conventionally,a constant current is used to heat the film.Through the feedback of the temperature sensing component,the output current is adjusted to achieve a set temperature.However,the temperature of the heating film is nonuniformly distributed,and determining the correct output current is time-consuming.This study adopted finite element heat transfer analysis to determine a heating method(such as heat power and heat flux)for an ITO conductive heating film system.The results of the analysis may serve as a reference for temperature compensation in ITO conductive heating films. 展开更多
关键词 ITO film heater heat transfer analysis heat power heat flux.
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EXPERIMENTAL ANALYSIS OF THE TURBULENT TRANSFER COEFFICIENT FOR SENSIBLE HEAT IN THE SURFACE LAYER OVER THE QINGHAI-XIZANG PLATEAU
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作者 陈万隆 Anders P.Daniels 《Acta meteorologica Sinica》 SCIE 1989年第1期34-42,共9页
This study deals with the turbulent structure in the surface layer over the Qinghai-Xizang Plateau.Using gradient transfer and heat balance methods we have determined the nondimensional coefficient 1/(?)_m(?)h in the ... This study deals with the turbulent structure in the surface layer over the Qinghai-Xizang Plateau.Using gradient transfer and heat balance methods we have determined the nondimensional coefficient 1/(?)_m(?)h in the expression of turbulent transfer coefficient for sensible heat (K_h).It is found that the results are in good agreement with the 1/(?)_m(?)_h obtained by Pruitt,et al.The K_h at a height of 1m under cloudy and cloudless conditions is calculated.Finally,the ratio of K_h to momentum turbulent coefficient over the plateau is compared with those over plains. 展开更多
关键词 OVER EXPERIMENTAL analysis OF THE TURBULENT transfer COEFFICIENT FOR SENSIBLE heat IN THE SURFACE LAYER OVER THE QINGHAI-XIZANG PLATEAU
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Research on Temperature Field of the Support Structure for the Independent LNG Tank
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作者 Shifeng Ding Li Zhou +2 位作者 Yajun Zhou Yingjie Gu Vladimir GTsuprik 《Hydro Science & Marine Engineering》 2020年第1期33-39,共7页
The independent LNG(Liquified Nature Gas)containment is widely used for small or medium-sized LNG carrier and ship using LNG as fuels.The common tank pattern includes single-spherical-cylindrical tank and double-spher... The independent LNG(Liquified Nature Gas)containment is widely used for small or medium-sized LNG carrier and ship using LNG as fuels.The common tank pattern includes single-spherical-cylindrical tank and double-spherical-cylindrical tank,which is the key to design the hull structure and its support.The support is designed to connect the hull structure and LNG tank.Its main functions are heat transferring and force loading.This paper focus on the temperature field distribution of hull and its support structure.The thermal boundary conditions are simulated according to the heat transfer action,such as thermal convection,heat conduction and thermal radiation.The method on how to carry out thermal analysis is presented for an independent LNG containment.The case study is carried out with two typical independent LNG tanks.One is a tank with double spherical cylindrical in the LNG carrier,and the other is a tank with single spherical cylindrical on the deck of the ship using LNG as fuels.The result shows the method presented in this paper is a good reference for the structural design with independent LNG containment. 展开更多
关键词 Temperature filed heat transfer analysis Thermal convection Support structure Independent LNG carrier
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Flow and Heat Transfer Characteristics in Rotating Two-pass Channels Cooled by Superheated Steam 被引量:7
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作者 WANG Wei GAO Jianmin +1 位作者 XU Liang SHI Xiaojun 《Chinese Journal of Aeronautics》 SCIE EI CSCD 2012年第4期524-532,共9页
关键词 turbine steam cooling rotation numerical analysis heat transfer secondary flow Reynolds stress
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Design and Implementation of a System for Laser Assisted Milling of Advanced Materials 被引量:2
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作者 WU Xuefeng FENG Gaocheng LIU Xianli 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第5期921-929,共9页
Laser assisted machining is an effective method to machine advanced materials with the added benefits of longer tool life and increased material removal rates. While extensive studies have investigated the machining p... Laser assisted machining is an effective method to machine advanced materials with the added benefits of longer tool life and increased material removal rates. While extensive studies have investigated the machining properties for laser assisted milling(LAML), few attempts have been made to extend LAML to machining parts with complex geometric features. A methodology for continuous path machining for LAML is developed by integration of a rotary and movable table into an ordinary milling machine with a laser beam system. The machining strategy and processing path are investigated to determine alignment of the machining path with the laser spot. In order to keep the material removal temperatures above the softening temperature of silicon nitride, the transformation is coordinated and the temperature interpolated, establishing a transient thermal model. The temperatures of the laser center and cutting zone are also carefully controlled to achieve optimal machining results and avoid thermal damage. These experiments indicate that the system results in no surface damage as well as good surface roughness, validating the application of this machining strategy and thermal model in the development of a new LAML system for continuous path processing of silicon nitride. The proposed approach can be easily applied in LAML system to achieve continuous processing and improve efficiency in laser assisted machining. 展开更多
关键词 laser assisted milling laser assisted milling device silicon nitride ceramic finite element analysis heat transfer
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Experimental and numerical analysis of the hydraulic and thermal performances of the gradually-varied porous volumetric solar receiver 被引量:1
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作者 DU Shen LI ZengYao +3 位作者 HE YaLing LI Dong XIE XiangQian GAO Yang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2020年第7期1224-1234,共11页
A gradually-varied porous structure is designed to increase the thermal performance of the porous volumetric solar receiver.Based on the replica method and multilayer recoating technique, the silicon carbide porous ce... A gradually-varied porous structure is designed to increase the thermal performance of the porous volumetric solar receiver.Based on the replica method and multilayer recoating technique, the silicon carbide porous ceramic with linear-changed geometrical parameters is fabricated. The performances of the uniform and gradually-varied porous volumetric solar receivers are studied by both experiment and numerical simulation. An optimization method combining genetic algorithm and computational fluid dynamics analysis is applied to determine the optimum porosity distribution. The results present that porous volumetric solar receiver with linear-changed geometrical parameters exhibits better thermal performance than the uniform porous volumetric solar receivers, especially when the thickness of the receiver is small. Larger porosity in the front is beneficial for increasing the solar radiation penetration depth, which limits the reflectance and thermal radiative losses. Smaller porosity in the rear traps more solar radiation and increases the convective heat transfer. When the receiver’s thickness is larger, the performance of the gradually-varied volumetric solar receiver is nearly identical to that of the uniform receiver with largest porosity. The double-layer configuration is found to be the optimized structure of the gradually-varied porous volumetric solar receiver. The thermal efficiency could be further improved using genetic algorithm with an 11 K increase of the outlet temperature. 展开更多
关键词 gradually-varied porous volumetric solar receiver replica method local thermal non-equilibrium heat transfer analysis optimization design
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一种耦合SPH方法求解涉及流固耦合的热传导问题
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作者 唐晓静 张驰 +1 位作者 Oskar Haidn 胡湘渝 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2023年第2期71-85,共15页
由于流体动力学、固体运动学和传热的共存,热-流体-结构相互作用(TFSI)问题通常在基于网格的方法中造成数值复杂性.本文介绍了一种在材料界面处具有强耦合方案的耦合光滑粒子流体动力学(SPH)求解器来研究TFSI问题.本方法耦合了一些有效... 由于流体动力学、固体运动学和传热的共存,热-流体-结构相互作用(TFSI)问题通常在基于网格的方法中造成数值复杂性.本文介绍了一种在材料界面处具有强耦合方案的耦合光滑粒子流体动力学(SPH)求解器来研究TFSI问题.本方法耦合了一些有效的技术,包括固体动力学拉格朗日公式中的核修改和流体结构相互作用(FSI)的多时间步进,以提高计算精度和效率;还应用基于位置的Verlet积分格式来实现严格的动量守恒;两级龙格-库塔积分方案用于求解热扩散方程.本文执行了两个模拟案例来测试本方法,包括微通道中传热的数值示例和FSI案例,在加热通道流中使用不同的涡流发生器研究和量化传热性能.本SPH-TFSI求解器获得的详细热量和涡流信息表明,FSI通过涡流与边界层内的流体相互作用来加强传热.这项研究证明了无网格SPH方法在涉及具有大结构变形的涡流发生器的工业传热应用中的多功能性和潜力. 展开更多
关键词 Smoothed particle hydrodynamics heat transfer analysis Thermal-fuid-structure interaction Vortex generator
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Thermal Characteristics in the Cutting of Inconel 718 Superalloy Using CW Nd:YAG Laser 被引量:3
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作者 D.G. Ahn K.W. Byun M.C. Kang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2010年第4期362-366,共5页
The objective of the this study is to investigate the effects of cutting parameters on thermal characteristics, including practical cutting regions, the formation of the kerfwidth and the heat transfer phenomenon, in ... The objective of the this study is to investigate the effects of cutting parameters on thermal characteristics, including practical cutting regions, the formation of the kerfwidth and the heat transfer phenomenon, in the cutting of Inconel 718 super-alloy sheets using a CW Nd:YAG laser. From the results of the experiments, the influence of process parameters on both the practical cutting region and the kerfwidth has been examined. In addition, it has been shown that the kerfwidth of the specimen lies in the range of 0.53-0.61 mm. In order to examine characteristics of the heat transfer during the laser cutting process, a three-dimensional quasi-steady heat transfer analysis has been performed using the commercial code SYSWELD V9.0. From the results of the analysis, the influence of cutting parameters on the temperature distribution in the vicinity of the cut section has been quantitatively evaluated. Based on these results, optimal cutting conditions have been estimated. 展开更多
关键词 CW Nd:YAG laser Inconel 718 Kerfwidth Quasi-steady heat transfer analysis
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