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Optimization of Dividing Wall Column with Heat Transfer Process Across the Wall for Feed Properties Variation 被引量:2
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作者 Hu Yuqi Li Chunli 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2019年第2期118-124,共7页
This paper investigates the thermal-coupled effect across the wall and the optimal heat transfer region of the wall for enhancing the energy saving effect of dividing wall column (DWC), and also studies the effects of... This paper investigates the thermal-coupled effect across the wall and the optimal heat transfer region of the wall for enhancing the energy saving effect of dividing wall column (DWC), and also studies the effects of feed thermal condition (q) and middle component composition of feed (cB) on the heat transfer process, the optimal heat transfer region, and the maximum heat transfer quantity across the wall. The simulation results show that the maximum heat transfer quantity across the wall and the potential for energy saving increase with the increase of q, while with the limitation of temperature difference across the wall, the beneficial heat transfer effect between certain range of stages, which are involved in the optimal heat transfer region, cannot be realized completely for a specific value of q. Besides, compared with q, a changing cB does not change the degree of realizing the beneficial heat transfer effect, but can bring about the variation of liquid split ratio (RL) and vapor split ratio (Rv). Thus, for achieving a maximum energy-saving effect of DWC, different q and cB need to find its own corresponding suitable heat transfer process across the wall. 展开更多
关键词 dividing WALL COLUMN heat transfer process thermal-coupled effect FEED PROPERTIES
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Analysis Process of Finite Element Method in Heat Transfer through Fabrics
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作者 程中浩 孙玉钗 冯勋伟 《Journal of Donghua University(English Edition)》 EI CAS 2006年第1期140-143,共4页
According to heat transfer principle and the process of solving engineering problems by finite element method, examples were given to demonstrate how finite element analysis can be used to describe transient heat tran... According to heat transfer principle and the process of solving engineering problems by finite element method, examples were given to demonstrate how finite element analysis can be used to describe transient heat transfer through fabrics. Details were given to describe how conduction and convection affect temperature distribution and heat loss during heat transfer processes by taking advantage of the quick calculation of FEA software MSC.Marc. Experimental results show good agreement with the theoretical results. 展开更多
关键词 finite element method transient heat transfer process temperature distribution heat flux
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Study on Numerical Simulation of Mold Filling and Heat Transfer in Die Casting Process 被引量:17
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作者 Liangrong JIA, Shoumei XIONG and Baicheng LIU (Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第3期269-272,共4页
A 3-D mathematical model considering turbulence phenomena has been established based on a computational fluid dynamics technique, so called 3-D SOLA-VOF (Solution Algorithm-Volume of Fluid), to simulate the fluid flow... A 3-D mathematical model considering turbulence phenomena has been established based on a computational fluid dynamics technique, so called 3-D SOLA-VOF (Solution Algorithm-Volume of Fluid), to simulate the fluid flow of mold filling process of die casting. In addition, the mathematical model for simulating the heat transfer in die casting process has also been established. The computation program has been developed by the authors with the finite difference method (FDM) recently. As verification, the mold filling process of a S-shaped die casting has been simulated and the simulation results coincide with that of the benchmark test. Finally, as a practical application, the gating design of a motorcycle component was modified by the mold filling simulation and the dies design of another motorcycle component was optimized by the heat transfer simulation. All the optimized designs were verified by the production practice. 展开更多
关键词 Study on Numerical Simulation of Mold Filling and heat transfer in Die Casting process MOLD SIMULATION
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Grain Size Distribution and Interfacial Heat Transfer Coefficient during Solidification of Magnesium Alloys Using High Pressure Die Casting Process 被引量:11
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作者 P. Sharifi J. Jamali +1 位作者 K. Sadayappan J.T. Wood 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第2期324-334,共11页
The objective of this study is to predict grain size and heat transfer coefficient at the metal-die interface during high pressure die casting process and solidification of the magnesium alloy AM60. Multiple runs of t... The objective of this study is to predict grain size and heat transfer coefficient at the metal-die interface during high pressure die casting process and solidification of the magnesium alloy AM60. Multiple runs of the commercial casting simulation package, ProCASTTM, were used to model the mold filling and solidification events employing a range of interfacial heat transfer coefficient values. The simulation results were used to estimate the centerline cooling curve at various locations through the casting. The centerline cooling curves, together with the die temperature and the thermodynamic properties of the alloy, were then used as inputs to compute the solution to the Stefan problem of a moving phase boundary, thereby providing the through-thickness cooling curves at each chosen location of the casting, Finally, the local cooling rate was used to calculate the resulting grain size via previously established relationships. The effects of die temperature, filling time and heat transfer coefficient on the grain structure in skin region and core region were quantitatively characterized. It was observed that the grain size of skin region strongly depends on above three factors whereas the grain size of core region shows dependence on the interracial heat transfer coefficient and thickness of the samples. The grain size distribution from surface to center was estimated from the relationship between grain size and the predicted cooling rate. The prediction of grain size matches well with experimental results. A comparison of the predicted and experimentally determined grain size profiles enables the determination of the apparent interracial heat transfer coefficient for different locations. 展开更多
关键词 High pressure die casting Grain size lnterfacial heat transfer coefficient Solidification of magnesium alloys process parameters
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Analysis of prompt supercritical process with heat transfer and temperature feedback 被引量:2
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作者 ZHU Bo ZHU Qian CHEN Zhiyun 《Nuclear Science and Techniques》 SCIE CAS CSCD 2009年第5期317-320,共4页
The prompt supercritical process of a nuclear reactor with temperature feedback and initial power as well as heat transfer with a big step reactivity (ρ0>β) is analyzed in this paper. Considering the effect of he... The prompt supercritical process of a nuclear reactor with temperature feedback and initial power as well as heat transfer with a big step reactivity (ρ0>β) is analyzed in this paper. Considering the effect of heat transfer on temperature of the reactor, a new model is set up. For any initial power, the variations of output power and reactivity with time are obtained by numerical method. The effects of the big inserted step reactivity and initial power on the prompt supercritical process are analyzed and discussed. It was found that the effect of heat transfer on the output power and reactivity can be neglected under any initial power, and the output power obtained by the adiabatic model is basically in accordance with that by the model of this paper, and the analytical solution can be adopted. The results provide a theoretical base for safety analysis and operation management of a power reactor. 展开更多
关键词 超临界 温度反应 核技术 核反应堆
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Numerical analysis on solidification process and heat transfer of FGH95 superalloy droplets during PREP
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作者 HuanmingChen BenfuHu +2 位作者 YiwenZhang QuanmaoYu HuiyingLi 《Journal of University of Science and Technology Beijing》 CSCD 2003年第5期53-58,共6页
In order to understand the relation between microstructure of superalloypowders and its solidification progress, the processing parameters are optimized during plasmarotating electrode processing (PREP). It was predic... In order to understand the relation between microstructure of superalloypowders and its solidification progress, the processing parameters are optimized during plasmarotating electrode processing (PREP). It was predicted from the results that the droplet velocities,droplet temperature, and fractional solidification with flight time about FGH95 superalloy droplethave been carried out based on Newtonian heat transfer formulation coupled with the classicalheterogeneous nucleation and the specific solidification process. It has been found that the dropletdynamic and thermal behavior is strongly affected by the distribution of droplet diameters, theproportion of cooling atmosphere, but is relatively unaffected by the droplet superheat. 展开更多
关键词 plasma rotating electrode processing (PREP) heat transfer FGH95 superalloypowder numerical analysis
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Heat Transfer between Casting and Die during High Pressure Die Casting Process of AM50 Alloy-Modeling and Experimental Results
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作者 Zhipeng GUO Shoumei XIONG +1 位作者 Sang-Hyun Cho Jeong-Kil Choi 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2008年第1期131-135,共5页
A method based on die casting experiments and mathematic modeling is presented for the determination of the heat flow density (HFD) and interfacial heat transfer coefficient (IHTC) during the high pressure die cas... A method based on die casting experiments and mathematic modeling is presented for the determination of the heat flow density (HFD) and interfacial heat transfer coefficient (IHTC) during the high pressure die casting (HPDC) process.Experiments were carried out using step shape casting and a commercial magnesium alloy,AM50.Temperature profiles were measured and recorded using thermocouples embedded inside the die. Based on these temperature readings,the HFD and IHTC were successfully determined and the calculation results show that the HFD and IHTC at the metal-die interface increases sharply right after the fast phase injection process until approaching their maximum values,after which their values decrease to a much lower level until the dies are opened.Different patterns of heat transfer behavior were found between the die and the casting at different thicknesses.The thinner the casting was,the more quickly the HFD and IHTC reached their steady states.Also,the values for both the HFD and IHTC values were different between die and casting at different thicknesses. 展开更多
关键词 Interfacial heat transfer coefficient High pressure die casting process AM50 Magnesium alloy
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ANALYSIS OF THE THERMOPHYSICAL PARAMETERS OF MOIST WOOD PARTICLE MATERIAL IN A COUPLED HEAT AND MASS TRANSFER PROCESS OF FREEZING BY USING FINITE ELEMENT METHOD
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作者 Shang DekuNortheast Forestry University 《Journal of Northeast Forestry University》 SCIE CAS CSCD 1991年第2期69-76,共8页
The coupled heat and moisture transfer in a freezing process of wood particle material was mathematically modeled in the paper. The models were interactively solved by using the numerical method(the finite element met... The coupled heat and moisture transfer in a freezing process of wood particle material was mathematically modeled in the paper. The models were interactively solved by using the numerical method(the finite element method and the finite difference method). By matching the theoretical calculation to an experiment, the nonlinear problem was analyzed and the variable thermophysical parameters concerned was evaluated. The analysis procedure and the evaluation of the parameters were presented in detail. The result of the study showed that by using the method as described in the paper, it was possible to determine the variable (with respect to temperature, moisture content and freezing state) thermophysical parameters which were unknown or difficult to measure as long as the governing equations for a considered process were available. The method can significantly reduces the experiment efforts for determining thermophysical parameters which arc very complicated to measure. The determined variable of the effective heat conductivity of wood particle material was given in the paper. The error of the numerical calculation was also estimated by the comparison with a matched experiment. 展开更多
关键词 Finite element method Freezing process Coupled heat and mass transfer Variable thermophysical parameters
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STUDY OF THE HEAT AND HUMIDITY TRANSFER PROCESSES BETWEEN AIR AND WATER IN THE AIR WASHER
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作者 刘刚 《Journal of China Textile University(English Edition)》 EI CAS 1997年第1期49-53,共5页
The processes of heat and humidity transfer between air and water are what to be studied mainly in the paper, we put forward some main factors which influence the processes of heat and humidity transfer in the air was... The processes of heat and humidity transfer between air and water are what to be studied mainly in the paper, we put forward some main factors which influence the processes of heat and humidity transfer in the air washer. We come to the conclusion that we can change these main factors to achieve different heat and humidity transfer processes and decide processes of heat and humidity transfer of air and water with the initial temperature of spraying water in the air washer. All these results can make things convenient for the air conditioning management. 展开更多
关键词 AIR WASHER the processes of heat and humidity transfer water-air ratio the initialstate of the AIR the initial temperature of SPRAYING WATER AIR CONDITIONING WATER droplet.
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HEAT TRANSFER ANALYSIS DURING ROLLING OF THIN SLAB IN CSP
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作者 W.F. Wu Y.H. Feng X.X. Zhang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2006年第4期244-250,共7页
A mathematical model has been built to numerically predict the thermal history of thin slab during CSP (compact strip process) rolling. To estimate the temperature distribution in the slab mare accurately, the mathe... A mathematical model has been built to numerically predict the thermal history of thin slab during CSP (compact strip process) rolling. To estimate the temperature distribution in the slab mare accurately, the mathematical model combines heat transfer in the slab, in the roll, and at the roll-slab interface during bite. The numerical results agree with on-site running data, which proves the reliabili~, of the mathematical model. The results show that roll chilling has a significant effect on the temperature distribution in the slab. 展开更多
关键词 numerical simulation heat transfer CSP(compact strip process ROLLING thermal process
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An Efficient Acceleration of Solving Heat and Mass Transfer Equations with the First Kind Boundary Conditions in Capillary Porous Radially Composite Cylinder Using Programmable Graphics Hardware
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作者 Hira Narang Fan Wu Abdul Rafae Mohammed 《Journal of Computer and Communications》 2019年第7期267-281,共15页
With the latest advances in computing technology, a huge amount of efforts have gone into simulation of a range of scientific phenomena in engineering fields. One such case is the simulation of heat and mass transfer ... With the latest advances in computing technology, a huge amount of efforts have gone into simulation of a range of scientific phenomena in engineering fields. One such case is the simulation of heat and mass transfer in capillary porous media, which is becoming more and more necessary in analyzing a number of eventualities in science and engineering applications. However, this procedure of numerical solution of heat and mass transfer equations for capillary porous media is very time consuming. Therefore, this paper pursuit is at making use of one of the acceleration methods developed in the graphics community that exploits a graphical processing unit (GPU), which is applied to the numerical solutions of such heat and mass transfer equations. The nVidia Compute Unified Device Architecture (CUDA) programming model offers a correct approach of applying parallel computing to applications with graphical processing unit. This paper suggests a true improvement in the performance while solving the heat and mass transfer equations for capillary porous radially composite cylinder with the first type of boundary conditions. This heat and mass transfer simulation is carried out through the usage of CUDA platform on nVidia Quadro FX 4800 graphics card. Our experimental outcomes exhibit the drastic overall performance enhancement when GPU is used to illustrate heat and mass transfer simulation. GPU can considerably accelerate the performance with a maximum found speedup of more than 5-fold times. Therefore, the GPU is a good strategy to accelerate the heat and mass transfer simulation in porous media. 展开更多
关键词 Numerical Solution heat and Mass transfer General Purpose GRAPHICS processing Unit (GPGPU) CUDA
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An Efficient Acceleration of Solving Heat and Mass Transfer Equations with the Second Kind Boundary Conditions in Capillary Porous Composite Cylinder Using Programmable Graphics Hardware
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作者 Hira Narang Fan Wu Abdul Rafae Mohammed 《Journal of Computer and Communications》 2018年第9期24-38,共15页
With the recent developments in computing technology, increased efforts have gone into simulation of various scientific methods and phenomenon in engineering fields. One such case is the simulation of heat and mass tr... With the recent developments in computing technology, increased efforts have gone into simulation of various scientific methods and phenomenon in engineering fields. One such case is the simulation of heat and mass transfer in capillary porous media, which is becoming more and more important in analysing various scenarios in engineering applications. Analysing such heat and mass transfer phenomenon in a given environment requires us to simulate it. This entails simulation of coupled heat mass transfer equations. However, this process of numerical solution of heat and mass transfer equations is very much time consuming. Therefore, this paper aims at utilizing one of the acceleration techniques developed in the graphics community that exploits a graphics processing unit (GPU) which is applied to the numerical solutions of heat and mass transfer equations. The nVidia Compute Unified Device Architecture (CUDA) programming model caters a good method of applying parallel computing to program the graphical processing unit. This paper shows a good improvement in the performance while solving the heat and mass transfer equations for capillary porous composite cylinder with the second kind of boundary conditions numerically running on GPU. This heat and mass transfer simulation is implemented using CUDA platform on nVidia Quadro FX 4800 graphics card. Our experimental results depict the drastic performance improvement when GPU is used to perform heat and mass transfer simulation. GPU can significantly accelerate the performance with a maximum observed speedup of more than 7-fold times. Therefore, the GPU is a good approach to accelerate the heat and mass transfer simulation. 展开更多
关键词 Numerical Solution heat and Mass transfer General Purpose GRAPHICS processing Unit (GPGPU) CUDA
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基于微通道扁管的蓄热耦合重力热管供热装置运行特性
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作者 赵圣月 徐荣吉 +2 位作者 董英健 徐强 李高超 《化工进展》 北大核心 2026年第3期1285-1295,共11页
提出了一种基于微通道扁管的相变蓄热耦合重力热管供暖装置,并通过实验对其蓄释热特性及供暖性能予以评价。实验重点探究了工质充液率、室内温度等对装置供热性能的影响。结果表明,在蓄热阶段,相变材料熔化均匀,装置运行良好;在释热阶段... 提出了一种基于微通道扁管的相变蓄热耦合重力热管供暖装置,并通过实验对其蓄释热特性及供暖性能予以评价。实验重点探究了工质充液率、室内温度等对装置供热性能的影响。结果表明,在蓄热阶段,相变材料熔化均匀,装置运行良好;在释热阶段,装置能稳定持续供暖。工质充液率对系统释热性能影响显著,30%充液率时释热功率达到最大,较20%充液率时提升10.8%。室温变化直接影响热管供暖末端的散热能力,在相变材料温度稳定的情况下,室温从20℃降至10℃,释热功率可提升73.1%。此外,在较低室温(如10℃)环境中,热管蒸发端温度因工质蒸发吸热降至相变材料凝固点以下,致使相变材料在蒸发端表面局部凝固,增加了释热过程的热阻,对系统稳定性产生影响。本文提出的相变储能与热管供暖末端耦合的方案,可为相变蓄热技术在建筑供暖领域的应用提供参考。 展开更多
关键词 微通道扁管 相变蓄热 重力热管 传热过程 供暖系统
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A novel method based on entransy theory for setting energy targets of heat exchanger network 被引量:5
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作者 Li Xia Yuanli Feng +1 位作者 Xiaoyan Sun Shuguang Xiang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第8期1037-1042,共6页
A T-Q diagram based on entransy theory is applied to graphically and quantitatively describe the irreversibility of the heat transfer processes.The hot and cold composite curves can be obtained in the T-Q diagram.The ... A T-Q diagram based on entransy theory is applied to graphically and quantitatively describe the irreversibility of the heat transfer processes.The hot and cold composite curves can be obtained in the T-Q diagram.The entransy recovery and entransy dissipation that are affected by temperature differences can be obtained through the shaded area under the composite curves.The method for setting the energy target of the HENs in T-Q diagram based on entransy theory is proposed.A case study of the diesel oil hydrogenation unit is used to illustrate the application of the method.The results show that three different heat transfer temperature differences is 10 K,15 K and 20 K,and the entransy recovery is 5.498×10~7k W·K,5.377×10~7k W·K,5.257×10~7k W·K,respectively.And the entransy transfer efficiency is 92.29%,91.63%,90.99%.Thus,the energy-saving potential of the HENs is obtained by setting the energy target based on the entransy transfer efficiency. 展开更多
关键词 heat transfer process systems Entransy Energy target T-Qdiagram
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槽式太阳能集热场出口温度的变参数自抗扰控制
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作者 孙明 赵吉兴 +2 位作者 徐文鑫 徐建花 姜炜 《太阳能学报》 北大核心 2026年第3期40-48,共9页
首先建立全局非线性集热管道机理模型在典型工况点处的相对阶次传递函数模型集;其次基于该模型集整定的线性自抗扰控制器参数训练高斯过程回归模型,以此预测不同出口温度设定值下的控制器参数;然后基于Kharitonov定理给出该变参数策略... 首先建立全局非线性集热管道机理模型在典型工况点处的相对阶次传递函数模型集;其次基于该模型集整定的线性自抗扰控制器参数训练高斯过程回归模型,以此预测不同出口温度设定值下的控制器参数;然后基于Kharitonov定理给出该变参数策略下闭环控制系统的稳定性分析;最后,仿真结果表明,当槽式太阳能集热场出口温度系统处于复杂运行条件时,所提出的变参数自抗扰控制策略具有良好的设定值跟踪性能、扰动抑制能力以及鲁棒性,与传统比例积分控制(PI)、自抗扰控制(ADRC)以及变参数PI控制器相比,同样具有更佳的单项性能和积分性能的指标表现。 展开更多
关键词 槽式太阳能集热场 线性自抗扰控制 高斯过程回归 变参数 稳定性分析 导热油温度
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基于Fluent有限体积法的智能储能纤维研究
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作者 陈旭 吴炳洋 《丝网印刷》 2026年第2期24-26,共3页
通过Fluent软件对相变储能纤维的热湿耦合过程进行数值模拟,并将拟合结果与实验结果进行比对。模拟结果直观地显示了不同时间节点相变储能纤维的温度场分布情况以及各区域的温度变化趋势。在此基础上设置了相变储能纤维的降温动力学试验... 通过Fluent软件对相变储能纤维的热湿耦合过程进行数值模拟,并将拟合结果与实验结果进行比对。模拟结果直观地显示了不同时间节点相变储能纤维的温度场分布情况以及各区域的温度变化趋势。在此基础上设置了相变储能纤维的降温动力学试验,以检验模型的模拟精度。经检验,试验结果与模拟结果的误差小于7.53%,该模拟结果准确地还原了相变储能纤维的传温过程。 展开更多
关键词 相变储能纤维 传热过程 数值模拟
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针状焦煅烧装置冷却方案改进
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作者 张泽生 《当代化工》 2026年第2期454-458,共5页
针状焦生焦经过高温煅烧后进入冷却窑冷却,在较短时间内将煅后针状焦从1000℃以上冷却到100℃左右。传统冷却窑使用循环水对煅后针状焦进行冷却,循环冷水依靠重力沿夹套外壁下流,生产中夹套外壁存在不同程度的水流分布不均、局部出现“... 针状焦生焦经过高温煅烧后进入冷却窑冷却,在较短时间内将煅后针状焦从1000℃以上冷却到100℃左右。传统冷却窑使用循环水对煅后针状焦进行冷却,循环冷水依靠重力沿夹套外壁下流,生产中夹套外壁存在不同程度的水流分布不均、局部出现“干点”导致夹套壁超温的情况,冷却水用量大,能耗增加,煅后针状焦冷后温度偏高,限制回转窑加工负荷。本文通过对夹套壁传热原理的研究,优化循环水流动传热方式,通过选用专用螺旋喷洒嘴提高冷却水流速,在夹套外壁形成水膜。结果表明:该优化方案在提高传热系数、强化传热的同时,增加了有效换热面积,明显改善了冷却窑冷却效果,循环水用量显著降低,回转窑加工负荷增加14%,循环水用量降低24%,降低了装置能耗。 展开更多
关键词 针状焦 冷却窑 冷却工艺 传热 改进
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不同规格高碳钢线材相变前风冷过程分析
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作者 曹杰 梁磊 +3 位作者 孙浩 王会廷 沈晓辉 潘红波 《钢铁》 北大核心 2026年第1期101-112,共12页
高碳钢线材通常要求斯太尔摩风冷工艺有较强的冷却能力,但随着线材规格尺寸的增大,其风冷冷却能力下降。为确定线材规格尺寸对风冷能力的影响,以ϕ5.5~18.0 mm规格的线材为研究对象,计算确定了不同规格线材的风冷换热系数,采用有限元法... 高碳钢线材通常要求斯太尔摩风冷工艺有较强的冷却能力,但随着线材规格尺寸的增大,其风冷冷却能力下降。为确定线材规格尺寸对风冷能力的影响,以ϕ5.5~18.0 mm规格的线材为研究对象,计算确定了不同规格线材的风冷换热系数,采用有限元法模拟了高碳钢线材风冷过程。主要分析了不同规格线材相变前的风冷参数、线材规格尺寸及风速变化对风冷效果的影响。研究表明,风冷过程中线材在高温段的冷却速度变化较大,之后冷却速度变化平缓且线材内外冷却速度差值较小;线材相变开始时的冷却速度小于相变前的平均冷却速度;线材相变开始时的冷却速度与线材直径呈幂函数关系,与风速呈线性关系;而相变起始时刻的心表温差与直径和风速均呈线性相关。小规格线材相变开始时的冷却速度较大,且断面温度分布较为均匀。随着线材规格尺寸的增大,相变开始时的冷却速度减小、心表温差增加,强化风冷效果变差。当风速为40 m/s时,ϕ5.5~10.0 mm规格的线材相变开始时的冷却速度大于或接近所研究钢种珠光体转变的临界冷却速度;而ϕ12.5~18.0 mm大规格线材的相应冷却速度仅为14.4~9.0℃/s,远低于珠光体转变的临界冷却速度,风冷能力仍显不足。 展开更多
关键词 高碳钢线材 线材规格 风冷工艺 换热系数 有限元模拟 冷却速度 心表温差 冷却效果
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THERMO": COMPUTER PROGRAM FOR SIMULATION OF SURFACE PULSE HEATING
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作者 S. Fedosov Samara State Technical University, Galaktionovskaya 141, Samara 443010, Russia 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2000年第2期557-560,共4页
Thermo' computer program is described. It is intended for computation of thermal cycle parameters during surface pulse heating. For example, during laser processing, surface heating owing to grinding, etc. It gi... Thermo' computer program is described. It is intended for computation of thermal cycle parameters during surface pulse heating. For example, during laser processing, surface heating owing to grinding, etc. It gives rates of heating, cooling, as well as temperature gradients and cumulative exposure time as function of the CURRENT TEMPERATURE, with the peak temperature at the surface as variable parameter. The indicated parameters are calculated at a surface, close to a surface (at 0.01μm)and for the points at a depth of the body. Demo ver. of the software: http://www. sstu.samara.ru/physics/fedosov/thermo_d. zip 展开更多
关键词 heat transfer computer software laser processing
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工业化枸杞常温真空干燥的工艺试验对比 被引量:1
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作者 宗学文 宋增全 +3 位作者 刘登科 杨勇 叶凡 庞盈 《现代食品科技》 北大核心 2025年第3期243-250,共8页
为实现枸杞单次大批量干燥的增质提效,设计制造了满足1 125 kg枸杞鲜果的常温真空干燥系统。在空载能力测试的基础上,采用侧抽、端抽等不同方式开展制干效能研究,并进行了枸杞干燥工艺试验验证。试验结果表明:设备的真空能力及供热能力... 为实现枸杞单次大批量干燥的增质提效,设计制造了满足1 125 kg枸杞鲜果的常温真空干燥系统。在空载能力测试的基础上,采用侧抽、端抽等不同方式开展制干效能研究,并进行了枸杞干燥工艺试验验证。试验结果表明:设备的真空能力及供热能力满足设计要求。枸杞常温真空干燥过程中的最大失水速率为4 kg/h,随干燥时间逐渐下降为1.5 kg/h。侧抽真空方式干燥时间相比端抽、组合抽分别缩短7.00%、3.13%,单位能耗除湿量增大29.27%、19.23%。枸杞优质干果比例随干燥水温的下降而逐渐增大(54%~79%),汽泡果比例逐渐随干燥温度的下降逐渐减少。干燥箱局部温湿度均匀性是影响干果成品比例的重要因素。研究结果为4吨级枸杞常温真空干燥系统开发奠定了基础,对果蔬类、中草药等常温真空干燥系统的开发以及枸杞真空干燥成果的品质优化具有参考价值。 展开更多
关键词 枸杞 常温真空干燥 传质传热 工艺优化 气泡果
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