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1. Overview
1.1 Development of External Thermal Insu- lation Technology
1.1.1 Status Quo of Buildings Energy Con- sumption in China
1.1.2 Development of Overseas External Thermal Insulation Technology
1.1.3 Development of Domestic External Thermal Insulation Technology
1.2 Overview of China's Building Energy Conservation Standardization
1.2.1 Design Standards of Building Energy Conservation
1.2.2 Construction Standards of Building Energy Conservation
1.2.3 Standards of Building Energy Conservation Products
1.2.3.1 External Thermal Insulation Composite System based on Expanded Polystyrene (JG 149-2003)
1.2.3.2 External Thermal Insulation Systems based on Mineral Binder and Expanded Polystyrene Granule Plaster (JG 158-2004)
1.2.3.3 Technical Requirements of External Thermal Insulation with Expanded Polystyrene Panel for In-situ Concrete (JG/T 228-2007)
1.3 Theoretical Research on External Ther- mal Insulation Technology at Home and Abroad
1.3.1 Basic Points of Theory of External Thermal Insulation Technology
1.3.2 Progress of Theoretical Research on External Thermal Insulation Technology
2. Theoretical Research on Temperature Field of Outer Insulated Wall
2.1 Numerical Simulation of Temperature Field of Insulated Outer Wall
2.1.1 Calculation Model for Temperature Field of Insulated Outer Wall
2.1.1.1 Heat Conduction Equation
2.1.1.2 Initial and Boundary Conditions
2.1.2 Solution to One-dimensional Heat Conduction Equation of Wall with External Thermal Insulation by Finite Difference Method
2.1.2.1 Heat Convection Boundary Conditions of Inner Surface of Outer Wall
2.1.2.2 Boundary Conditions for Convective Heat Transfer of Outer Surface of Outer Wall
2.1.2.3 Numerical Simulation of Thermal Environment Related to Solar Radiation
2.1.2.4 Finite Difference Equation for Calculation of Temperature Field of Wall with External Thermal Insulation
2.1.3 Temperature Field Calculation Results and Analysis
2.1.3.1 Wall Insulation for Calculation
2.1.3.2 Indoor and Outdoor Air Temperature
2.1.3.3 Initial Conditions and Loading Time
2.1.3.4 Material Parameters
2.1.3.5 Calculation Results and Analysis
2.1.4 Conclusions
……
3. Study on Waterproofing Performance and Air Permeability of Insultated Outer Wall
4. Study on Waterproofing Resistance of External Thermal Insulation System
5. Study on Fire Resistance of External Thermal Insulation System
6. Impact of Wind Load on External Thermal Insulation System
7. Study on Seismic Performance of External Thermal Insulation System
8. Safety of Bonded Face Brick of External Thermal Insulation System
9. Technology Research on and Application of Adhesive polystyrene granule Composite External Thermal Insulation System
10.Comprehensive Resource Utilization of External Thermal Insulation System
11. Case Study of External Thermal Insulation Engineering Quality
12. Conclutions
References
Postscript 2100433B
本书是对我社2015年出版的《外墙外保温技术理论与应用》进行了翻译,目的是向海外推广,本书2015年在我社出版后多次印刷。内容上既有理论又有工程实践,是外保温领域一本优秀的工具书。本书内容既有理论基础又有工程实践,内容详实,图文并茂,是我国外保温技术国外推广的一个重要工具书。
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CAD快速看图怎么把英文版改成中文版,用安装包装出来的软件就是英文版的
搜索下载中文版或破解版看看回复补充:追问无法显示
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英文版会邀请函
英文版年会邀请函 英文版年会邀请函【一】 Dear sir/madam: On [date], we will host an evening of celebration in honor of the retirement of [name], President of [company]. You are cordially invited to attend the celebration at [hotel], [location], on [date] from [time] to [time]. [name] has been the President of [company] since [year]. During this period, [company] expanded its business from [size] to [size].
本书详细介绍了建筑外墙保温技术的原理和应用方法,共十章。作者经过对国内外建筑外墙外保温技术大量调查、试验、研究和工程实践的基础上,总结分析我国建筑外墙外保温技术的经验和教训,提出用有限差分法建立温度场和热应力的数学模型,对外保温、内保温、夹芯保温和自保温墙体形式进行对比,分析了墙体湿迁移现象产生的危害和应对措施,分析了大型耐候性试验、抗震试验和大尺寸模型火试验的结果,分析了风压对保温层空腔结构的破坏作用,研究出多种工业废弃物在外保温墙体的应用可能性。
编 号: 366969
著 作 者: 北京振利节能环保科技股份有限公司等
出 版 社: 中国建筑工业出版社
书 号: 9787112130030
出版日期: 2011-4-1
页 数:226
开 本:16开本
装 帧:平装
C10建筑施工·设备安装技术>>>施工技术
《炉内传热理论与计算(英文版)》简明而系统地阐述了炉内传热的基本原理、计算方法。全书共分七章,包括辐射换热的基本理论与计算,层燃炉、室燃炉和循环床锅炉的炉膛传热计算方法,锅炉热力计算方法以及积灰、结渣对炉膛传热的影响等内容。
《炉内传热理论与计算(英文版)》作为衔接基础课传热学和锅炉课程设计之间的教材,对从基础理论到工程实际的处理方法给予了充分的重视。结合实际的工程案例,提供了完整的炉膛传热和热力计算的实例,并结合新的研究进展系统介绍了气固两相流的传热和循环流化床锅炉的传热计算。
《炉内传热理论与计算(英文版)》可作为高等学校热能工程类专业的高年级本科生教材或教学参考书,也可供相关专业工程技术人员参考。