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Simulations and experiments on a Solar-Assisted Heat Pump Water Heater-Comparisons between R290 and R22

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目录

声明

1. Preface

致谢

3. Summary

3.1. In English

3.2. In Norwegian

4. Intro duction to master thesis

5. Objectives

Background and objective

The following tasks are to be considered:

6. Literature review

6.1. Intro duction

6.2. Solar-Assited Heat Pump

6.3. Exp erimental studies on Solar-Assisted Heat Pumps

6.4. Mathematical mo dels of Solar-Assisted Heat Pump Systems

6.5. Refrigerants

7. Where is the research front in the area of work

8. Theory of problems lo oked into

8.1. Heat transfer equations at the solar collector

8.2. Heat pump cycle

8.3. Water tank

9. Calculations

9.1. Mo del implementation

9.2. Calculations of exp erimental data

10. Presentation of results

10.1. Weather conditions during exp eriment

10.2. Exp erimental results

10.3. Simulation results

10.4. Comparison b etween simulations and exp eriments

11. Discussions

11.1. Suggested improvements of exp eriments

11.2. Suggested improvements in simulations

11.3. From a technical and theoretical p ossibility to a commercial success

11.4. Suggestions on how to organize a work group

12. Conclusions

13. Prop osals for further work

参考文献

A. MATLAB Scripts

A.1. Initialisation script

A.2. Prop erty generator

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摘要

Worldwide buildings currently accounts for one-third of all final energy consumption and more than half of the world electricity consumption. Choices made by governments and industry regarding energy effciency,future energy supply and fuel feedstook,and building energy effciency standards will ultimately decide the path for energy use in the future. This preface will highlight some findings in global energy trends and energy effciency from IEA’s World Energy Outlook (WEO) 2015 followed by a short summary of the Montreal Protocol .

著录项

  • 作者

    Per Kjellsen;

  • 作者单位

    上海交通大学;

  • 授予单位 上海交通大学;
  • 学科 Mechanical Engineering
  • 授予学位 硕士
  • 导师姓名 代言军;
  • 年度 2016
  • 页码
  • 总页数
  • 原文格式 PDF
  • 正文语种 中文
  • 中图分类 TU111.195;
  • 关键词

    建筑物; 能源消耗量; 节能设计;

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