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Heat and Mass Transfer in MHD Visco-Elastic Fluid Flow through a Porous Medium over a Stretching Sheet with Chemical Reaction 被引量:5
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作者 Saleh M. Alharbi Mohamed A. A. Bazid Mahmoud S. El Gendy 《Applied Mathematics》 2010年第6期446-455,共10页
This paper presents the study of convective heat and mass transfer characteristics of an incompressible MHD visco-elastic fluid flow immersed in a porous medium over a stretching sheet with chemical reaction and therm... This paper presents the study of convective heat and mass transfer characteristics of an incompressible MHD visco-elastic fluid flow immersed in a porous medium over a stretching sheet with chemical reaction and thermal stratification effects. The resultant governing boundary layer equations are highly non-linear and coupled form of partial differential equations, and they have been solved by using fourth order Runge-Kutta integration scheme with Newton Raphson shooting method. Numerical computations are carried out for the non-dimensional physical parameters. Here a numerical has been carried out to study the effect of different physical parameters such as visco-elasticity, permeability of the porous medium, magnetic field, Grashof number, Schmidt number, heat source parameter and chemical reaction parameter on the flow, heat and mass transfer characteristics. 展开更多
关键词 Heat and Mass transfer INCOMPRESSIBLE MHD VISCO-ELASTIC POROUS medium Chemical Reaction
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Effects of Solid Matrix and Porosity of Porous Medium on Heat Transfer of Marangoni Boundary Layer Flow Saturated with Power-Law Nanofluids
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作者 陈晖 肖天丽 +1 位作者 陈嘉阳 沈明 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第10期80-84,共5页
The effect of the solid matrix and porosity of the porous medium are first introduced to the study of power-law nanofluids, and the Marangoni boundary layer flow with heat generation is investigated. Two cases of soli... The effect of the solid matrix and porosity of the porous medium are first introduced to the study of power-law nanofluids, and the Marangoni boundary layer flow with heat generation is investigated. Two cases of solid matrix of porous medium including glass balls and aluminum foam are considered. The governing partial differential equations are simplified by dimensionless variables and similarity transformations, and are solved numerically by using a shooting method with the fourth-fifth-order Runge-Kutta integration technique. It is indicated that the increase of the porosity leads to the enhancement of heat transfer in the surface of the Marangoni boundary layer flow. 展开更多
关键词 of is as Effects of Solid Matrix and Porosity of Porous medium on Heat transfer of Marangoni Boundary Layer Flow Saturated with Power-Law Nanofluids in with on
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MHD Heat and Mass Transfer of an Oscillatory Flow over a Vertical Permeable Plate in a Porous Medium with Chemical Reaction
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作者 Mohammad Al Zubi 《Modern Mechanical Engineering》 2018年第3期179-191,共13页
The problem of magneto-hydro-dynamic (MHD) mass and heat transfer of an oscillatory fluid in two-dimensional viscous, electrically conducting over an infinite vertical permeable moving plate in a saturated porous medi... The problem of magneto-hydro-dynamic (MHD) mass and heat transfer of an oscillatory fluid in two-dimensional viscous, electrically conducting over an infinite vertical permeable moving plate in a saturated porous medium with the presence of a transverse magnetic field and chemical reaction is analytically presented. The governing equations, momentum, energy, and concentration are solved. Various flow parameters effects on velocity, temperature and concentration fields are discussed. It is found that, the fluid velocity increases with increasing both the permeability and chemical reaction parameters. While, it increases with decreasing the magnetic field parameter. Furthermore, the concentration increases with increasing chemical reaction parameters. 展开更多
关键词 Chemical Reaction Mass and Heat transfer OSCILLATORY Flow POROUS medium
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Heat transfer in a porous saturated wavy channel with asymmetric convective boundary conditions 被引量:2
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作者 Q.Hussain S.Asghar +1 位作者 T.Hayat A.Alsaedi 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期392-401,共10页
The viscous flow in a wavy channel with convective boundary conditions is investigated. The channel is filled with a porous viscous fluid. Two cases of equal and different external convection coefficients on the walls... The viscous flow in a wavy channel with convective boundary conditions is investigated. The channel is filled with a porous viscous fluid. Two cases of equal and different external convection coefficients on the walls are taken into account. Effect of viscous dissipation is also considered. The governing equations are derived employing long wavelength and low Reynolds number approximations. Exact closed form solutions are obtained for the simplified equations. Important physical features for peristaltic flow caused by the wavy wave are pumping, trapping and heat transfer rate at the channel walls. These are discussed one by one in depth and detail through graphical illustrations. Special attention has been given to the effects of convective boundary conditions. The results show that for Bi1≠Bi2, there exists a critical value of Brinkman number Brc at which the temperatures of both the walls become equal. And, for Bi1>Bi2 and Br>Brc, the temperature of the cold wall exceeds the temperature of hot wall. 展开更多
关键词 peristalsis heat transfer porous medium convective boundary conditions
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Establishment and Application of UFC-ACC Heat Transfer Coefficient Model 被引量:3
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作者 Tian-Liang Fu Zhao-Dong Wang +2 位作者 Yong Li Jia-Dong Li Guo-Dong Wang 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2014年第2期57-62,共6页
Based on medium plate runout table ultra-fast cooling( UFC)-accelerated cooling equipment( ACC) system,a heat transfer coefficient model was constructed. Firstly,according to the measured data,heat transfer coefficien... Based on medium plate runout table ultra-fast cooling( UFC)-accelerated cooling equipment( ACC) system,a heat transfer coefficient model was constructed. Firstly,according to the measured data,heat transfer coefficients under different roll speed and water volume were calculated by using an inverse heat conduction method. Secondly,a monofactorial heat transfer coefficient calculation formula was obtained. Finally,the heat transfer coefficient model based on medium plate runout table UFC-ACC system was constructed by intercept function,slope function,interaction influence function and linear or nonlinear influencing factors. The precision of these models was validated by comparing model prediction value with measured data,and the results were in good agreement with practical needs,and the average deviation was less than 5%. 展开更多
关键词 medium plate ultra-fast cooling heat transfer coefficient mathematical model
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Unsteady Heat Transfer of Viscous Incompressible Boundary Layer Fluid Flow through a Porous Plate with Induced Magnetic Field
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作者 Ariful Islam Muhammad Minarul Islam +2 位作者 Mahabur Rahman Lasker Ershad Ali Md. Shakhaoath Khan 《Journal of Applied Mathematics and Physics》 2016年第2期294-306,共13页
Because of the great importance of thermal instability in nature, in chemical processes, in separation processes, in industrial applications as well as in geophysical and astrophysical engineering, the effect of therm... Because of the great importance of thermal instability in nature, in chemical processes, in separation processes, in industrial applications as well as in geophysical and astrophysical engineering, the effect of thermal diffusion on the combined MHD heat transfer in an unsteady flow past a continuously moving semi-infinite vertical porous plate which is subjected to constant heat has been investigated numerically under the action of strong applied magnetic field taking into account the induced magnetic field. This study is performed for cooling problem with lighter and heavier particles. Numerical solutions for the velocity field, induced magnetic field as well as temperature distribution are obtained for associated parameters using the explicit finite difference method. The obtained results are also discussed with the help of graphs to observe effects of various parameters on the above mentioned quantities. 展开更多
关键词 Heat transfer Porous medium Induced Magnetic Field Finite Difference Method
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Joule Heating and Thermal Radiation Effects on MHD Boundary Layer Flow of a Nanofluid over an Exponentially Stretching Sheet in a Porous Medium
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作者 Jakkula Anand Rao Gandamalla Vasumathi Jakkula Mounica 《World Journal of Mechanics》 2015年第9期151-164,共14页
A numerical study on boundary layer flow behaviour, heat and mass transfer characteristics of a nanofluid over an exponentially stretching sheet in a porous medium is presented in this paper. The sheet is assumed to b... A numerical study on boundary layer flow behaviour, heat and mass transfer characteristics of a nanofluid over an exponentially stretching sheet in a porous medium is presented in this paper. The sheet is assumed to be permeable. The governing partial differential equations are transformed into coupled nonlinear ordinary differential equations by using suitable similarity transformations. The transformed equations are then solved numerically using the well known explicit finite difference scheme known as the Keller Box method. A detailed parametric study is performed to access the influence of the physical parameters on longitudinal velocity, temperature and nanoparticle volume fraction profiles as well as the local skin-friction coefficient, local Nusselt number and the local Sherwood number and then, the results are presented in both graphical and tabular forms. 展开更多
关键词 EXPONENTIALLY STRETCHING Sheet MHD Thermal Radiation Chemical Reaction Joule Heating Heat and Mass transfer Porous medium
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Peristaltic Transport of Magnetohydrodynamic Carreau Nanofluid with Heat and Mass Transfer inside Asymmetric Channel 被引量:1
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作者 Nabil T. M. Eldabe Osama M. Abo-Seida +2 位作者 Adel A. S. Abo-Seliem A. A. ElShekhipy Nada Hegazy 《American Journal of Computational Mathematics》 2017年第1期1-20,共20页
In this work, the peristaltic motion of a nano non-Newtonian fluid which obeys Carreau model through a porous medium inside an asymmetric channel is investigated. The hall current effects with Joule heating and viscou... In this work, the peristaltic motion of a nano non-Newtonian fluid which obeys Carreau model through a porous medium inside an asymmetric channel is investigated. The hall current effects with Joule heating and viscous dissipation are considered. The problem is modulated mathematically by a set of nonlinear partial differential equations which describe the conservation of mass, momentum, energy and concentration of nanoparticles. The non-dimensional form of these equations is simplified under the assumption of long wavelength and low Reynolds number, and then resulting equations of coupled nonlinear differential equations are tackled numerically with appropriate boundary conditions. Graphical results are presented for dimensionless velocity, temperature, concentration and pressure gradient in order to illustrate the variations of various parameters of this problem on these obtained solutions. 展开更多
关键词 Peristaltic Motion MHD Carreau NANOFLUID ASYMMETRIC Channel POROUS medium Heat and Mass transfer
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无线电能传输系统多孔磁介质任意位置矩形线圈间互感计算方法
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作者 李中启 包明晗 +2 位作者 孔令军 胡昌轩 黄守道 《电工技术学报》 北大核心 2025年第24期7863-7878,共16页
在无线电能传输技术中,互感是影响能量传输的关键因素之一。在线圈耦合结构中添加磁介质材料可以减少漏磁,显著提升互感。精确的互感计算模型能够为无线电能传输系统的线圈模型设计奠定可靠的理论基础,但现阶段仍缺乏针对多孔磁介质任... 在无线电能传输技术中,互感是影响能量传输的关键因素之一。在线圈耦合结构中添加磁介质材料可以减少漏磁,显著提升互感。精确的互感计算模型能够为无线电能传输系统的线圈模型设计奠定可靠的理论基础,但现阶段仍缺乏针对多孔磁介质任意位置矩形线圈间互感的分析。该文首先通过空间截面分析法推导出二维截面各区域的磁矢势方程,再利用边界条件,将各二维平面的结果联结,得到了同轴时的互感计算公式。其次,进一步提出了一种镜像约束法,用镜像线圈来等效磁介质对线圈的作用,通过分析镜像系数的规律,得到了任意位置情况时的互感表达式,解决了任意位置线圈间的互感计算问题。最后,搭建了一套双边有界多孔型磁介质矩形线圈的系统实验装置,互感计算、实验和仿真值的最大误差为4.96%,验证了该文方法的有效性。在相同的参数下,所提模型比矩形磁介质结构节省材料56.25%。 展开更多
关键词 无线电能传输 磁介质 互感计算 矩形螺旋线圈
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基于空气标定的热式流量仪表研制与应用 被引量:1
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作者 刘华成 孙偲 +1 位作者 韩少云 张磊 《传感器与微系统》 北大核心 2025年第5期164-168,共5页
热式流量仪表信号源于发热探头与介质之间的热交换量,在同一流速场下受介质类型影响,而国内标定装置的介质一般为空气。为解决热式流量仪表在非空气介质管路中流量测量精度低的问题,从热扩散原理出发,研制了一种基于空气标定的热式流量... 热式流量仪表信号源于发热探头与介质之间的热交换量,在同一流速场下受介质类型影响,而国内标定装置的介质一般为空气。为解决热式流量仪表在非空气介质管路中流量测量精度低的问题,从热扩散原理出发,研制了一种基于空气标定的热式流量仪表,并采用多项式拟合算法对仪表标定数据进行拟合,同时,通过对原理中涉及介质传热的比热容cp、导热系数k等参量进行分析,得到传热特性差异,提出了一种在不同介质工况应用中的信号修正方法,并将修正算法应用到仪表中。本文验证了常温常压空气标定的精度,满足1.0级精度要求,量程比达100!1,并搭建了不同介质的试验平台,将空气标定的仪表在氩气介质条件下开展应用测试。测试结果表明:通过对信号补偿,仪表输出精度显著提升,满足1.5级精度要求。本文方法可有效解决特定空间内非空气流量测量精度低的问题,对于扩大本仪表使用范围及精准测量目标场所气体流量等具有实际应用价值。 展开更多
关键词 热式流量仪表 热扩散原理 多项式拟合 介质传热
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Consideration of transient heat conduction in a semi-infinite medium using homotopy analysis method
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作者 A. Rezania A. Ghorbali +1 位作者 G. Domairry H. Bararnia 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2008年第12期1625-1632,共8页
In the current work, transient heat conduction in a semi-infinite medium is considered for its many applications in various heat fields. Here, the homotopy analysis method (HAM) is applied to solve this problem and ... In the current work, transient heat conduction in a semi-infinite medium is considered for its many applications in various heat fields. Here, the homotopy analysis method (HAM) is applied to solve this problem and analytical results are compared with those of the exact and integral methods results. The results show that the HAM can give much better approximations than the other approximate methods: Changes in heat fluxes and profiles of temperature are obtained at different times and positions for copper, iron and aluminum. 展开更多
关键词 homotopy analysis method semi-infinite medium conduction transient heat transfer integral methods temperature profile
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Modeling of Coupled Heat and Mass Transfer in a Trapezoidal Porous Bed on a Grid
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作者 Kokou N’Wuitcha Gagnon Koffi Apedanou +1 位作者 Yendoubé Lare Kossi Napo 《Open Journal of Fluid Dynamics》 CAS 2023年第1期1-15,共15页
We investigate heat and mass transfer in an isosceles trapezoidal cavity, filled with charcoal considered as a granular porous medium. The Darcy-Brinkman-Forchheimer flow model is coupled to the energy and mass equati... We investigate heat and mass transfer in an isosceles trapezoidal cavity, filled with charcoal considered as a granular porous medium. The Darcy-Brinkman-Forchheimer flow model is coupled to the energy and mass equations with the assumption of non-thermal equilibrium. These equations are discretized by the finite volume method with an offset mesh and then solved by the line-by-line method of Thomas. The coupling between pressure and velocity is obtained by Semi-Implicit Method for Pressure Linked Equations. (SIMPLE) algorithm. The results show that the temperature in the cavity increases when the inclination angle of the sides walls decreases. The 15° inclination is selected as being able to offer better thermal performance in the cookstove combustion chamber. 展开更多
关键词 Heat and Mass transfer Isosceles Trapezoidal Cavity Porous medium Finite Volume Method SIMPLE Algorithm
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印染生产中多级换热器的介质温度与换热面积优化设计
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作者 陈明 朱学帅 《印染助剂》 2025年第6期36-38,共3页
分析印染生产中换热器系列成本的两项关键指标——介质温度与换热面积,建立基于传热学原理和成本分析的总成本的数学模型,采用梯度迭代法求解最优介质温度。以热风加热系统中的定形机为例,对N=6的多级换热器系列进行优化,探求优化介质... 分析印染生产中换热器系列成本的两项关键指标——介质温度与换热面积,建立基于传热学原理和成本分析的总成本的数学模型,采用梯度迭代法求解最优介质温度。以热风加热系统中的定形机为例,对N=6的多级换热器系列进行优化,探求优化介质温度以验证模型的有效性。该模型可以用于其他类似印染生产中多级传热系统的优化,具有广泛的工业生产应用价值。 展开更多
关键词 印染生产 换热器 梯度迭代 介质温度 换热面积
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粗糙表面非极性辐射器近场热光伏系统性能 被引量:1
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作者 李松 赵军明 刘林华 《太阳能学报》 北大核心 2025年第5期293-301,共9页
研究粗糙表面效应对由非极性辐射器石墨以及砷化铟(In As)电池构成的近场热光伏系统性能的影响,分析其中的系统性能与辐射换热过程、光电转换过程的量化关系。针对辐射换热过程,利用等效多层近似法以及涨落电动力学求得不同粗糙度下的... 研究粗糙表面效应对由非极性辐射器石墨以及砷化铟(In As)电池构成的近场热光伏系统性能的影响,分析其中的系统性能与辐射换热过程、光电转换过程的量化关系。针对辐射换热过程,利用等效多层近似法以及涨落电动力学求得不同粗糙度下的辐射换热量。对于光电转换过程,使用解析近似法获得系统的功率密度及效率。分析表明,一定的表面粗糙度可提升系统的性能,在50~200 nm的平均距离下,5 nm以内的粗糙度最多能提升10.7%的功率密度以及1.5%的效率。 展开更多
关键词 近场辐射换热 粗糙表面 近场热光伏 有效介质理论
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Dufour Effects on Unsteady Hydromagnetic Radiative Fluid Flow past a Vertical Plate through Porous Medium
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作者 Jagdish Prakash Avula Golla Vijaya Kumar +1 位作者 Desu Bhanumathi Sibyala Vijaya Kumar Varma 《Open Journal of Fluid Dynamics》 2012年第4期159-171,共13页
The objective of the present study is to investigate diffusion-thermo (Dufour effect) and radiation effects on unsteady MHD free convection flow past an impulsively started infinite vertical plate with variable temper... The objective of the present study is to investigate diffusion-thermo (Dufour effect) and radiation effects on unsteady MHD free convection flow past an impulsively started infinite vertical plate with variable temperature and uniform mass diffusion in the presence of transverse applied magnetic field through porous medium. At time t > 0, the plate is given an impulsive motion with constant velocity in the vertical upward direction against to the gravitational field. At the same time the plate temperature is raised linearly with time t and the level of concentration near the plate is raised to . A magnetic field of uniform strength is applied normal to the direction to the flow. The dimen- sionless governing equations are solved in closed form by Laplace-transform technique. The effect of flow parameters on velocity, temperature, concentration, the rate of heat transfer and the rate of mass transfer are shown through graphs. 展开更多
关键词 MHD Heat and Mass transfer Diffusion-Thermo (Dufour Number) Vertical Plate Porous medium
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基于改进HJC模型坚硬断层弱化爆破参数数值模拟
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作者 李重情 胡云飞 《工程爆破》 北大核心 2025年第1期1-9,共9页
为解决坚硬断层阻碍回采问题,对过坚硬断层弱化爆破技术展开了研究。通过静态力学试验确定了断层岩石的基本力学性能,根据试验结果对HJC模型参数进行了修正,同时引入新破坏准则对HJC模型进行优化,并验证了模型参数的准确性,基于改进后的... 为解决坚硬断层阻碍回采问题,对过坚硬断层弱化爆破技术展开了研究。通过静态力学试验确定了断层岩石的基本力学性能,根据试验结果对HJC模型参数进行了修正,同时引入新破坏准则对HJC模型进行优化,并验证了模型参数的准确性,基于改进后的HJC模型对断层弱化爆破进行数值模拟。结果表明:爆破粉碎区和裂隙区半径随着不耦合系数的增大而减小,当不耦合系数为1.2时,爆破范围最大为0.806 m;在该不耦合系数下,炮孔间距为1.4 m时裂纹能产生贯通效果。通过对耦合介质进行模拟,得到水作为耦合介质相较于空气具有更高的能量传递效率,且能量利用率比空气高14.7%;含水炮孔爆破后粉碎区半径随着含水体积分数的增大而增大,含水炮孔爆破粉碎区半径约为干孔爆破的2.2倍。 展开更多
关键词 坚硬断层 HJC模型 弱化爆破 耦合介质 能量传递效率
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Research of Inorganic Heat Transfer Element Starting Proprerty
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作者 Qiangqiang Chen Xi Chen +4 位作者 Xiaowei Zhang Jing Li Song Zhang Quan Ma Shuang Li 《Journal of Power and Energy Engineering》 2013年第7期25-28,共4页
This article studies the wall temperature distribution of inorganic heat transfer element in different working conditions by experiments, and analyzes the impact of inclination angle, heating power, different kinds of... This article studies the wall temperature distribution of inorganic heat transfer element in different working conditions by experiments, and analyzes the impact of inclination angle, heating power, different kinds of cooling medium and different inlet temperature of cooling medium on the starting property of inorganic heat transfer element. 展开更多
关键词 INORGANIC Heat transfer Element STARTING Property INCLINATION ANGLE HEATING Power COOLING medium
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己二酸回收结晶器回收率低的原因及优化升级方策
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作者 金保国 侯要华 李渊博 《山东化工》 2025年第3期200-202,213,共4页
己二酸装置挖潜扩能改造后,己二酸回收结晶器结晶负荷提高,结晶器冷却罐出料温度升高,己二酸回收效率降低,外排二元酸液浓度走高,造成己二酸流失,致使资源浪费,增加生产成本。为此进行工艺技术研究,通过结晶器冷却罐扩容的优化升级改造... 己二酸装置挖潜扩能改造后,己二酸回收结晶器结晶负荷提高,结晶器冷却罐出料温度升高,己二酸回收效率降低,外排二元酸液浓度走高,造成己二酸流失,致使资源浪费,增加生产成本。为此进行工艺技术研究,通过结晶器冷却罐扩容的优化升级改造,延长了冷却罐内混合液的停留时间,提升了冷却罐的换热面积,降低了冷却罐的出料温度,提高了己二酸的回收率,减轻了己二酸的生产成本。 展开更多
关键词 己二酸回收结晶器 结晶负荷 结晶方式 冷却介质 停留时间 换热面积 优化升级方策 回收率
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光热驱动褐煤固定床气化过程热质传递规律
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作者 袁梦丽 宋云彩 +1 位作者 李文英 冯杰 《化工进展》 北大核心 2025年第4期2008-2019,共12页
光热热源可解决中低价煤气化过程中元素利用率低等问题,但由于热源属性和传热方式改变,反应特性与传统煤气化过程不同,为消纳CO_(2)引入的混合气化剂会对反应器内的温度场产生影响。为研究上述问题,本文利用多场耦合软件Comsol Multiphy... 光热热源可解决中低价煤气化过程中元素利用率低等问题,但由于热源属性和传热方式改变,反应特性与传统煤气化过程不同,为消纳CO_(2)引入的混合气化剂会对反应器内的温度场产生影响。为研究上述问题,本文利用多场耦合软件Comsol Multiphysics,构建了光热热源的褐煤固定床气化反应器,研究了不同导热特性的气化介质水蒸气、二氧化碳、不同比例混合气化剂下反应器内温度分布和产物组成以及反应器内热质传递行为变化。结果表明,随着气化剂中CO_(2)添加比例由0增大至100%,由于CO_(2)加入带来了流体黏度、密度不断增大,使得流体间黏滞力增强,动量传递减少;气/固相间对流换热系数从26.3W/(m^(2)·K)降至22.7W/(m^(2)·K)。相较于水蒸气气化,CO_(2)的加入使得颗粒气化温度有所降低,煤气化反应速率下降,但CO_(2)浓度的增加又提高了半焦CO_(2)还原反应的速率,煤焦颗粒完全气化的综合时间没有明显改变。此外,光热储蓄热介质加热的方式使得反应器床层温度曲线整体呈“漏斗状”,导致炉内中心位置颗粒气化时间延长了70min,且在掺混CO_(2)后,传热效率的降低使得温升曲线出现明显的“滞后”效应。通过改变CO_(2)在气化剂中的添加比例发现,当CO_(2)添加比例增至40%(体积分数)时,气化炉表现出消纳外源CO_(2)的行为,其CO_(2)消纳量达0.013g/g;且随着气化温度的增加,CO_(2)气化反应速率升高,CO_(2)的消纳量增加,有效合成气产量增加,但H2/CO下降。 展开更多
关键词 煤气化 气化介质 传热 温度分布 反应速率
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Further Stabilization and Power Density Improvement of Stack-Type Thermoelectric Power Generating Module with Biphasic Medium by Using Various Flexible Metals as Electrodes
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作者 Seiichi Deguchi Shoichiro Imaizumi +5 位作者 Hajime Arimura Keisuke Sawada Noriyuki Kobayashi Norifumi Isu Kenji Sakai Kentaro Kimoto 《Journal of Power and Energy Engineering》 2018年第11期78-86,共9页
In order to realize further stability of a stack-type thermoelectric power generating module (i.e. no electrical connections inside), flexible materials of metal springs and/or rods having restoring forces were instal... In order to realize further stability of a stack-type thermoelectric power generating module (i.e. no electrical connections inside), flexible materials of metal springs and/or rods having restoring forces were installed between lower-temperature-sides of thermoelectric elements. These flexible materials were expected to play three important roles of interpolating different thermal expansions of the module components, enlarging heat removal area and penetration of any media through themselves. Then, a low-boiling-point medium (i.e. NOVEC manufactured by 3M Japan Ltd.) was also applied for a high-speed direct heat removal via its phase change from the lower-temperature-sides of the thermoelectric elements in the proposing stack-type thermoelectric power generating module. No electrical disconnections inside the module were confirmed for more than 9 years of use, indicating further module stability. The power generating density was improved to about 120 mW·m-2 with SUS304 springs having 0.7 mm diameter. Increasing power generating density can be expected in terms of suitable selection of flexible metal with high Vickers hardness, cavities control on the spring surface, more vigorous multiphase flow with adding powders to the medium and optimization of the module configurations according to numerical simulations. 展开更多
关键词 Thermoelectric Power Generation Stack-Type MODULE FLEXIBLE Section BIPHASIC medium Phase Change Multi-Phase Flow Heat transfer Enhancement MODULE STABILIZATION
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