ImageVerifierCode 换一换
格式:PPT , 页数:20 ,大小:341KB ,
资源ID:448953      下载积分:12 文钱
快捷下载
登录下载
邮箱/手机:
温馨提示:
快捷下载时,用户名和密码都是您填写的邮箱或者手机号,方便查询和重复下载(系统自动生成)。 如填写123,账号就是123,密码也是123。
特别说明:
请自助下载,系统不会自动发送文件的哦; 如果您已付费,想二次下载,请登录后访问:我的下载记录
支付方式: 支付宝    微信支付   
验证码:   换一换

加入VIP,省得不是一点点
 

温馨提示:由于个人手机设置不同,如果发现不能下载,请复制以下地址【https://www.wenke99.com/d-448953.html】到电脑端继续下载(重复下载不扣费)。

已注册用户请登录:
账号:
密码:
验证码:   换一换
  忘记密码?
三方登录: QQ登录   微博登录 

下载须知

1: 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。
2: 试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。
3: 文件的所有权益归上传用户所有。
4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
5. 本站仅提供交流平台,并不能对任何下载内容负责。
6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。

版权提示 | 免责声明

本文(工程热力学与传热学(双语)第9章习题课.ppt)为本站会员(ga****84)主动上传,文客久久仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知文客久久(发送邮件至hr@wenke99.com或直接QQ联系客服),我们立即给予删除!

工程热力学与传热学(双语)第9章习题课.ppt

1、- Chapter 9 Conduction -,Tutorial,Heat Transfer,1. 如图所示的墙壁,其导热系数为50 W/(m.K), 厚度为50mm,在稳态情况下墙壁内一维温度 分布为 t = 200 2000 x2 。式中x 的单位为m。 试求 (1)墙壁两侧表面的热流密度; (2)壁内单位体积的内热源生成热。,2. 有一锅炉围墙由三层平壁组成,内层是厚度1=0.23m, 1=0.63W/(m.K) 的耐火粘土砖;外层是厚度3=0.25m, 3=0.56W/(m.K)的红砖层;两层中间填以厚度2=0.1m, 2=0.08 W/(m.K)的珍珠岩材料。炉墙内侧与温度为 tf

2、1=520的烟气接触,其表面传热系数h1=35W/(m2.K), 炉墙外侧空气温度tf2=22,空气侧表面传热系数 h2=15W/(m2.K)。 试求(1)通过该炉墙单位面积的散热损失; (2)炉墙内外表面温度及层与层交界面的温度; (3)画出炉墙内的温度分布曲线。,3. 一建筑物墙壁由如图所示的空心砖砌成,空心砖尺寸 300mm300mm300mm。设该混凝土导热系数为 0.8W/(m.K),空气当量导热系数为0.28W/(m.K)。设温度 只沿墙壁厚度X方向发生变化,室内温度为25,表面传 热系数为10W/(m2.K),室外空气温度为 -10,表面传热 系数为20W/(m2.K)。 求通过

3、每块砖的导热量。,4. 外径5cm的不锈钢管,外面包扎着厚度为6.4mm 的石棉隔热层,导热系数为0.166W/(m.K), 再外面包扎着厚度为2.5mm的玻璃纤维隔热层, 导热系数为0.0485W/(m.K)。不锈钢管外壁温度 为315,隔热层外表面温度为38。 试计算石棉-玻璃纤维交界面的温度。,5. 蒸汽管道的外直径d1=30mm,准备包两层厚度 都是15mm的不同材料的热绝缘层。a种材料的 导热系数a = 0.04W/(m.K),b 种材料的导热 系数b= 0.1W/(m.K)。若温差一定。 试问从减少热损失的观点看下列两种方案: (1)a在里层,b在外层; (2)b在里层,a在外层。

4、哪一种好,为什么?,6. 一高为30cm铝制圆锥台,顶面直径为8.2cm, 底面直径为13cm;底面和顶面温度各自均匀且 恒定,分别为520和120,侧面(曲面)绝 热。试确定通过此台的导热量(铝的导热系数 取为100W/(m.K)。,7. 图中所示为纯铝制作的圆锥形截面。其圆形截面直径为 D=ax1/2,其中a=0.5m1/2。小端位于x1=25mm处,大端 位于x2=125mm处,端部温度分别为T1=600K和T2=400K, 周侧面隔热良好。 (1)作一维假定,推导用符号形式表示的温度分布T(x) 的表示式,画出温度分布的示意图。 (2)计算传热热流量Q。,8. 初始温度为30,壁厚为9

5、mm的火箭发动机喷管,外壁 绝热,内壁与温度为1750的高温燃气接触,燃气与壁面 间的表面传热系数为1950W/(m2.K)。假定喷管壁可作为 一维无限大平壁处理,材料物性如下:=8400kg/m3, c=560J/(kg.K),=24.6W/(m.K)。试确定 (1)为使喷管材料不超过材料允许温度(1000)而能 允许的运行时间; (2)在允许时间的终了时刻,壁面中的平均温度梯度与 最大温度梯度。,9. 用热电偶测量气罐中气体的温度。热电偶的初始温度 为 20,与气体表面的表面传热系数为10W/(m2.K)。 热电偶近似为球形,直径为0.2mm。 试计算热电偶插入10s后,其过余温度为初始过

6、余温度 的百分之几?要使热电偶过余温度不大于初始过余温度 的1%,至少需要多长时间? 已知热电偶焊丝的= 67W/(m.K),=7310kg/m3, c=228J/(kg.K)。,10. 一直径为0.5mm的热电偶,其材料的密度= 8930kg/m3, 比热c= 400J/(kg.K)。初始温度为25,被突然放于表面 传热系数为95 W/(m2.K),温度为120的气流中。 试问热电偶的过余温度为初始过余温度的1%及0.1% 时 需要多少时间?这时热电偶指示的温度是多少?,11. A large window glass 0.5cm thick =0.78W/(m.) is exposed t

7、o warm air at 25 over its inner surface, and the heat transfer coefficient for the inside air is 15W/(m2.K). The outside air is -15, and the heat transfer coefficient associated with the outside surface is 50W/(m2.K). Determine the temp of the inner and outer surface of the glass.,12. A steel tube=1

8、5W/(m.) of outside diameter 7.6cm and thickness 1.3cm is covered with an insulation material =0.2W/(m.) of thickness 2cm. A hot gas at 320 with a heat transfer coefficient of 200W/(m2.K) flows inside the tube. The outer surface of the insulation is exposed to cooler air at 20 with a heat transfer co

9、efficient of 50W/(m2.K) 。Calculate (1) the heat loss from the tube to the air for a 5-m length of the tube. (2) the temp drops due to the thermal resistances of the hot gas flow, the steel tube, the insulation layer, and the outside air.,13. A Steam pipe with an outside radius of 4cm is covered with

10、 a layer of asbestos insulation =0.15W/(m.) 1cm thick, which is in turn covered with fiberglass insulation =0.05W/(m.) 3cm thick. The outside surface of the steam pipe is at a temp of 330, and the outside surface of the fiberglass insulation is at 30. Determine the heat transfer rate per meter lengt

11、h of the pipe and the interface temp between the asbestos and the fiberglass insulation.,Tutorial,One-Dimensional Unsteady State Conduction Problem,14. A steel plate a=1.210-5m2/s,=43W/(m.), cp=465J/(kg.) , =7833kg/m3 of thickness 10cm, initially at a uniform temp of 240, is suddenly immersed in an

12、oil bath at 40. The convection heat transfer coefficient between the fluid and the surface is 600W/(m2.). (a) How long will it take for the center-plane to cool to 100? (b) What is the temp at a depth 3cm from the outer surface? (c) Calculate the energy removed from the plate during this time .,15.

13、Using lumped system analysis, determine the time required for a solid steel ball of radius R=2.5cm, =54W/(m.),=7833kg/m3, and c=0.465kJ/(kg.) to cool from 850 to 250 if it is exposed to an air stream at 50 having a heat transfer coefficient h=100W/(m2.).,16. A Large aluminum plate =204W/(m.), =2702k

14、g/m3, and c=0.896kJ/(kg.) of thickness L=0.1m, that is initially at a uniform temperature of 250 is cooled by exposing it to an air stream at temperature 50 . Using lumped system analysis, determine the time required to cool the aluminum plate to 100 if the heat transfer coefficient between the air

15、stream and the plate surface is h=80W/(m2.).,17. A 6-cm-diameter steel ball =61W/(m.), =7865kg/m3, and c=0.46kJ/(kg.) is at a temperature of 800. It is to be hardened by suddenly dropping it into an oil bath at a temperature of 50. If the quenching occurs when the ball reaches a temperature of 100 a

16、nd the heat transfer coefficient between the oil and the sphere is 500W/m2., determine how long the ball should be kept in the oil bath. If 100 balls are to be quenched per minute, determine the rate at which heat must be removed from the oil bath in order to maintain the bath temperature at 50.,18.

17、 A thermocouple is to be used to measure the temperature in a gas stream. The junction is approximated as a sphere with thermal conductivity of 25W/(m.), density of 9000kg/m3, and specific heat of 0.35kJ/(kg.). The heat transfer coefficient between the junction and the gas is 250W/(m2.). Calculate t

18、he diameter of the junction if the thermocouple should measure 95 percent of the applied temperature difference in 3s.,19. The temperature of a gas steam is to be measured by a thermocouple whose junction can be approximated as a 1-mm-diameter sphere, The properties of the junction are =35W/(m.), =8500kg/m3, and cp=320kJ/(kg.), and the convection heat transfer coefficient between the junction and the gas is h=210 W/(m2.). Determine how long it will take for the thermocouple to read 99 percent of the initial temperature difference.,

Copyright © 2018-2021 Wenke99.com All rights reserved

工信部备案号浙ICP备20026746号-2  

公安局备案号:浙公网安备33038302330469号

本站为C2C交文档易平台,即用户上传的文档直接卖给下载用户,本站只是网络服务中间平台,所有原创文档下载所得归上传人所有,若您发现上传作品侵犯了您的权利,请立刻联系网站客服并提供证据,平台将在3个工作日内予以改正。