Design and practical application of an innovative net-zero energy house with integrated photovoltaics: a case study from Solar Decathlon China 2013

2015 ◽  
Vol 58 (2) ◽  
pp. 144-161 ◽  
Author(s):  
Changhai Peng ◽  
Lu Huang ◽  
Jianxun Liu ◽  
Ying Huang
2014 ◽  
Vol 9 (2) ◽  
pp. 20-37 ◽  
Author(s):  
Mona Azarbayjani ◽  
Benjamin Futrell ◽  
Valentina Cecchi ◽  
Thomas Gentry ◽  
Aba Ebong

Author(s):  
Benjamin P. Barnes ◽  
Luis A. Martinez ◽  
Trishan Esram ◽  
Ty A. Newell ◽  
Patrick L. Chapman

This paper describes the mechanical systems, the DC-coupled electrical system, the simulation approach and the preliminary results of the University of Illinois entry in the 2007 Department of Energy Solar Decathlon competition. The competition showcased twenty net-zero energy solar powered houses. The University of Illinois entry was the only one that featured an all-electric design. No solar thermal collectors were used; space and water heating was accomplished primarily through heat pumps. Each of three house modules is sensibly conditioned with autonomous, custom mini-split heat pumps using all radiant and natural convection heat exchange for the interior side. Simulation methods are described and assumptions of wall and window properties, mechanical system performance and electrical system performance are disclosed. Details are provided on the theoretical analysis of internal heat transfer and the basic design of the custom mechanical system. The electrical system topology and equipment choices are presented and initial performance results are shown. Additionally, preliminary analysis is carried out on the data taken during the Solar Decathlon competition and on the observations of post-competition winter performance. The success in being awarded comfort conditioning points during the competition is discussed along with drawbacks not represented in the competition results.


2014 ◽  
Vol 20 (44) ◽  
pp. 197-202 ◽  
Author(s):  
Shota TAJIMA ◽  
Akihiko ONO ◽  
Masamichi HANAZATO ◽  
Chisato MORI ◽  
Hiroki SUZUKI ◽  
...  

Author(s):  
Caroline Hachem-vermette ◽  
Chinyere Dara ◽  
Rhys Kane

The paper summarizes an investigation of the performance of container based housing units developed by Ladacor Ltd, and compares this performance to traditional housing constructed according to existing standards and codes. The results indicate that the case study housing system can reduce thermal loads (heating and cooling) by about 57% as compared to the same house designed according to the code. Implementing additional efficiency measures and solar design strategies such as increased south window size, suitable shading devices, thermal mass, and more airtight construction, leads to improved performance. This enhanced scenario can reduce the thermal load by 72% as compared to the code scenario and by about 35% as compared to the original case study system. Achieving a net-zero energy status can be reached by integrating photovoltaics on the south roof of the single-family housing designed with Ladacor roof, assuming energy efficient appliances, lighting and domestic hot water. The optimal case can reach a net positive energy status, with a PV system integrated on the south facing roof surface. Results from this investigation can serve in developing innovative design concepts and guidelines for the design of low cost, self-sufficient modular housing.


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