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1.
采用热力学方法和Benedict-Webb-Rubin(BWR)方程及相应的参数,计 算了临界温度附近H2气体的绝对焓和熵值,同时拟合了一组高准确度的定压比热容与温度 关联式参数.通过计算值与实验值的比较发现:在临界温度以上,计算值与实验值符合良好 ,对低于临界温度的未饱和H2气体也能计算出较好了结果.但对临界点和温度低于临界温 度、压强高于临界压强的过饱和H2气体的计算误差比较大,说明此时的H2气体的热力学性质特别,应当专门处理.  相似文献   

2.
杨谋  孟英峰  李皋  邓建民  张林  唐思洪 《物理学报》2013,62(7):79101-079101
本文基于井筒与地层间能量平衡原理, 将井筒钻井液划分成不同径向单元网格, 建立了考虑径向温度梯度条件下钻井液层间温度模型; 同时引入钻井液轴向导热项, 建立了钻井液轴向导热温度模型, 将数学模型应用隐式有限差分法离散与求解. 计算结果表明: 钻井液径向温度梯度对井筒径向与轴向温度产生的误差分别为0.15 ℃和0.2 ℃左右; 而钻井液轴向导热对井筒温度分布几乎不产生影响. 因此, 通过建立的数学模型进行系统分析表明, 在建立井筒-地层耦合瞬态传热模型时可忽略两者对井筒温度分布的影响. 基于数学建模方法验证了以前学者模型假设条件的正确性, 为油气井与地热井井下温度分布规律深入研究奠定了可靠的理论基础. 关键词: 径向温度梯度 轴向导热 井筒温度 瞬态传热模型  相似文献   

3.
列车客车用低温电地板辐射供暖传热模拟   总被引:1,自引:0,他引:1  
以传热学理论为基础,建立了低温电地板辐射供暖非稳态过程的二维传热数学模型,并应用有限元分析软件ANSYS对数学模型进行了求解;通过实测及理论计算,得出地板内温度及热流密度分布特点;计算值与实测值相对误差小于10%。  相似文献   

4.
用有限时间热力学方法分析存在传热损失时,热声制冷机微热力学循环模型的火用经济性能,导出循环利润率与工质振荡温度,以及利润率与制冷系数的特性关系,并数值分析了价格比、横向温度梯度等参数对火用经济性能的影响。  相似文献   

5.
本文自行设计、安装和调试了一个小型制冷实验装置,并且在此小型制冷装置上进行绝热毛细管流动过程的实验研究.详细阐述了实验系统的设计,各个部件的机构以及制作工艺.利用此实验装置测量了制冷剂R22的替代制冷剂R134a、R407C和R410A在毛细管中的流动参数,并与已经过验证的绝热毛细管数学模型的计算结果进行了比较,实验值与计算值吻合良好.  相似文献   

6.
文中建立了R410A风冷房间空调器启动与停机过程的动态数学模型。其中压缩与节流过程采用稳态模型,而换热过程采用动态分布参数分相流模型。用自适应步长法对该过程进行了数值计算,得出了蒸发压力、冷凝压力、空气温度、制冷量及性能系数等随时间的变化规律,并在焓差法空调器性能实验台上对一台R410A风冷房间空调器的启、停过程进行实验研究。将实验结果与数值计算结果进行比较,验证了模型的可靠性。  相似文献   

7.
金属氢化物作阴极的真空弧离子源,假设其放电产生双温度的非平衡态Ti-H等离子体,其内部的气体解离过程和粒子电离过程分别由Culdberg-Waage解离方程和Saha电离方程进行描述,结合原子发射光谱以及电荷准中性条件,求出Ti-H等离子体的电子温度Te、重粒子温度Th和粒子数密度之后,可更进一步对等离子体的质量密度、焓、比热容等热力学参数进行描述。在不同的电子数密度下,研究各参数随变量θ(电子温度Te与重粒子温度Th的比值)变化的情况。计算结果显示:电子数密度已知,随θ值升高,除氢气分子数密度外,等离子体温度和单原子粒子数密度的计算结果均变化甚微。高电子数密度时,等离子体中单原子粒子占绝对优势,热力学参数由其控制;低电子数密度下,随θ值的升高,等离子体逐步由单原子粒子占优势转为氢气分子占绝对优势,热力学参数的变化情况表现出相同的规律。  相似文献   

8.
杨谋  孟英峰  李皋  邓建民  李永杰  周玉良 《物理学报》2013,62(17):179101-179101
应用比例积分控制原理将瞬态传热模型预测结果与出口 温度实测数据逐步进行反馈可准确预测原始静态地层温度. 为此, 本文基于井下各控制组件质量、动量及能量守恒原理, 建立了实际井身结构与钻具组合条件下循环和停止循环期间井筒-地层温度分布全瞬态传热模型, 应用全隐式有限差分法进行求解, 并引入比例积分控制原理对比分析实测温度与预测温度的误差范围进而精确、 快速获取原始地层温度. 结合一口深井基础数据计算表明, 套管下入深度改变了井筒-地层间热交换效率, 进而影响了近井壁地层温度分布状况; 同时, 钻井过程中循环和停止循环作业过程改变了井下各控制组件的初始条件与边界条件, 致使近井壁原始地层温度分布距离产生变化. 建立的数学模型和研究方法可为石油钻井、地热井开采及地球深部原始地层温度信息准确、 经济、快速获取提供理论基础. 关键词: 原始地层温度 循环与停止循环 瞬态传热模型 比例积分控制原理  相似文献   

9.
本文探索了一种直接测量W-J参数的方法. 实验选用NaCl作为试样, 在快速压缩过程中原位测量样品的温度和压力的变化值. 通过温度修正使测量值在原理上更符合等熵压缩过程的结果, 并采用大幅度增压结合中值定理得出中点压力处温度随压力的变化率, 进而根据R=(P/T) (∂T/∂P)S关系式求出W-J参数, 整个过程没有引入其他参数. 此外, 作为对比, 我们还从相关的物态方程、经验公式和已知参数出发计算了NaCl的W-J参数及其随压力变化的关系. 结果表明: 实验测得的NaCl的W-J参数随压力增加而增加; 实验结果与计算值符合得很好. 这说明快速增压直接测量物质的W-J参数是一种可行且可靠的方法. 关键词: NaCl W-J参数 快速增压 高压  相似文献   

10.
季振林  张志华 《计算物理》1993,10(4):467-470
采用摄动法将具有线性温度梯度介质中的声传播方程化为Helmholtz方程,然后用边界元法进行计算,由边界元法计算出消声器的四极参数,从而预测传递损失等消声量。文中计算了直管段的四极参数及膨胀腔的传递损失,并与一维理论结果进行了比较。  相似文献   

11.
12.
Song Ge  Youwei Gu 《Molecular physics》2013,111(7):703-710
The understanding of the flow and heat transfer processes for fluid through micro- and nanochannels becomes imperative due to its wide application in micro- and nano-fluidic devices. In this paper, the method to simulate the convective heat transfer process in molecular dynamics is improved based on a previous study. With this method, we simulate a warm dense fluid flowing through a cold parallel-plate nanochannel with constant wall temperature. The characteristics of the velocity and temperature fields are analysed. The temperature difference between the bulk average temperature of fluid and the wall temperature decreases in an exponential form along the flow direction. The Nusselt number for the laminar flow in parallel-plate nanochannel is smaller than its corresponding value at macroscale. It could be attributed to the temperature jump at the fluid–wall interface, which decreases the temperature gradient near the wall. The results also reveal that the heat transfer coefficient is related to the surface wettabilities, which differs from that in the macroscopic condition.  相似文献   

13.
We examine, via two-dimensional numerical simulation of a model system, some unsteady transient ignition scenarios and sustained oscillatory combustion modes that can occur in a single-pass, conductive channel, premixed microburner. These issues are relevant to the problem of ignition, evolution to stable combustion and the operational modes of microcombustors. First, we describe an unsteady ignition sequence that may occur when a single-pass microburner with initially cold walls has its exit walls heated and maintained at a fixed temperature. In particular, we demonstrate that as the heat from the exit walls propagates down the microburner walls, a reaction wave is driven rapidly down the channel towards the inlet via a sequence of oscillatory ignition and quenching transients. This scenario has been observed experimentally during the ignition of a single-pass microburner. Secondly, we show how an initial axial wall temperature gradient can lead to a variety of sustained combustion modes within the channel, including stable stationary flames, regimes of periodic motion involving quenching and re-ignition, regimes of regular oscillatory combustion, and regimes consisting of a combination of re-ignition/quenching events and regular oscillatory motions, all of which have been observed experimentally.  相似文献   

14.
Liu C  Li Z 《Physical review letters》2010,105(17):174501
In this Letter, we propose a composite nanochannel system, where half of the channel is of low surface energy, while the other half has a relatively high surface energy. Molecular dynamics simulations show that fluids in such channels can be continuously driven by a symmetric temperature gradient. In the low surface energy part, the fluid moves from high to low temperature, while the fluid migrates from low to high temperature in the high surface energy part. The mechanisms that govern the flow are explained and the conditions required to guarantee the flow and the possible applications are discussed.  相似文献   

15.
本文利用基于非正交网格的二阶精度有限体积法,对氨热法生长过程中温度场和流场进行了模拟,其中隔板开孔率分别为10%(中心开孔5%,侧壁与隔板边缘开孔5%)和20%(中心开孔10%,侧壁与隔板边缘开孔10%).通过对流场和温度场的分析,了解了高压釜内部营养素的输运及溶液结晶的本质.结果显示在釜底的多孔介质层流动较弱,在流体层流动较强.在多孔介质层热量的输运主要通过热传导;在流体层中,流体与原料的分界处以及流体和高压釜的侧壁出现了大的温度梯度.  相似文献   

16.
Since the concept of invisible cloak was proposed by Pendry and Leonhardt in 2006, many researchers have applied the theory of coordinate transformation to thermodynamics and overcome the complexity of inhomogeneous and anisotropic of material parameters. However, only two-dimensional(2 D) thermal illusion devices are researched recently. According to this situation, our study focuses on three-dimensional(3 D) thermal illusion devices including shrinker(or invisible cloak),concentrator, amplifier, reshaper, and rotator with arbitrary shape in a general way. In this paper, the corresponding material parameters of thermal illusion devices mentioned above are derived based on the theory of transformation thermodynamics and the simulated results agree well with the theoretical derivations. In addition, the conventional invisible cloak just controls the temperature gradient rather than the temperature value which is more concerned in physical applications. Here,we find that the temperature value of the cloaked object can be controlled by adjusting the location of the original point of the coordinate system.  相似文献   

17.
In this paper Williamson fluid is taken into account to study its peristaltic flow with heat effects. The study is carried out in a wave frame of reference for symmetric channel. Analysis of heat transfer is accomplished by accounting the effects of non-constant thermal conductivity and viscosity and viscous dissipation. Modeling of fundamental equations is followed by the construction of closed form solutions for pressure gradient, stream function and temperature while assuming Reynold's number to be very low and wavelength to be very long. Double perturbation technique is employed, considering Weissenberg number and variable fluid property parameter to be very small. The effects of emerging parameters on pumping, trapping, axial pressure gradient, heat transfer coefficient, pressure rise, velocity profile and temperature are analyzed through the graphical representation. A direct relation is observed between temperature and thermal conductivity whereas the indirect proportionality with viscosity. The heat transfer coefficient is lower for a fluid with variable thermal conductivity and variable viscosity as compared to the fluid with constant thermal conductivity and constant viscosity.  相似文献   

18.
Introduction: The flow of pedestrians through narrow doorways is one of the most common features of crowd motions and evacuations. It is particularly an important aspect of pedestrian simulations models since their accuracy depends highly on their ability to produce realistic exit flow rates. The problem has been extensively studied in the literature, but many aspects of it have remained controversial with mixed (and often contradictory) evidence emerging from different studies and different methods. Methods: We discuss the significance of parameter calibration for accurate simulation of pedestrian flow through narrow exits using social force model. Based on sensitivity analyses, we show how simulated exit throughput rate can vastly differ by changing the value of certain parameters. We identify the two parameters that are most critical, and then calibrate them based on a set of experimental observations (at macro level). Using these calibrated parameters, we then re-examine three fundamental questions related to pedestrian flow at bottlenecks, (1) the relation between desired velocity and simulated egress time; (2) the effect of barricade at exits; and (3) the effect of exit in the corner versus the middle. Results: Our numerical analyses showed that, with the calibrated parameters, increasing the desired velocity in the social-force model results in monotonically shorter egress times (at a marginal rate that rapidly diminishes as the desired velocity increases). We showed that placing a panel-like barricade at exit can facilitate the outflow and reduces the egress time, but its effect depends on the widths of exit, as well as the size of the barricade and its distance to exit. We show that the positioning the exit in the corner is also effective in terms of reducing egress time, but only for very narrow exits. The benefit diminishes quickly as the exit becomes wider. Applications: These outcomes demonstrated the significance of parameter calibration for accurate simulation of crowd flows. The findings may also help to identify simple modifications that can facilitate crowd flows at narrow bottlenecks.  相似文献   

19.
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通过构建等离子体数字测控系统,测量了等离子体发生器不同工况下的工作参数,包括工作气体流量、冷却水温升、弧电压与弧电流等。运用能量平衡原理,计算了等离子体发生器出口射流平均焓值、平均温度及其分布。结果表明,在等离子体发生器的出口处,射流温度呈抛物线分布,增加主气气体流量,射流焓值与温度呈下降趋势,而添加氢气为辅助工作气体时,射流焓值与温度将会得到显著提高。  相似文献   

20.
We present a theoretical analysis for heat transfer in power law non-Newtonian fluid by assuming that the thermal diffusivity is a function of temperature gradient. The laminar boundary layer energy equation is considered as an example to illustrate the application. It is shown that the boundary layer energy equation subject to the corresponding boundary conditions can be transformed to a boundary value problem of a nonlinear ordinary differential equation when similarity variables are introduced. Numerical solutions of the similarity energy equation are presented.  相似文献   

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