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Bibliographic database Airbase

AIRBASE is the Bibliographic Database of the AIVC.

It contains publications and abstracts of articles related to energy efficient ventilation. Where possible, sufficient detail is supplied in the bibliographic details for users to trace and order the material via their own libraries. Topics include: ventilation strategies, design and retrofit methods, calculation techniques, standards and regulations, measurement methods, indoor air quality and energy implications etc.

Entries are based on articles and reports published in journals, internal publications and research reports, produced both by university departments and by building research institutions throughout the world. AIRBASE has grown and evolved over many years (1979 to present day, over 22000 references and 16000 documents available online). For most of the references, the full document is also available online.

Access to the publications is free of charge.

The tombs of the Pharonic kings in "valley of the kings", Thebes, Egypt are famous for their unique wall paintings and structure.

Essam E Khalil

The paper describes the simulation model for the prediction of the dynamic behavior of the complex system.

Dalibor Vytlacil

This paper presents the development of a model, using TRNSYS, of a large central cooling and heating plant.

Danielle Monfet and Radu Zmeureanu

A detailed model of the Net Zero Energy Town House in Toronto is developed in TRNSYS.

Omar Siddiqui and Alan Fung

Many building related products and systems such as insulation, solar shading, reflective roof coverings have an important impact on the energy performance of the building where it is installed.

Bertrand Labedan, Roel De Coninck

Evaporative cooling is able to generate the cooling medium at a temperature approaching to the ambient wet bulb temperature.

Jianlei Niu, Xichun Wang, A.H.C. van Paassen

In practise many buildings show significant deviation between the predicted annual energy consumption and the actual energy consumption.

H. Brohus, P. Heiselberg, A. Hesselholt, H. Rasmussen

In this study, a multizone model of an existing shopping mall is developed in IDA Indoor Climate and Energy (IDA ICE).

Sofia Stensson, Monica Axell, Per Fahlén, Jörgen Eriksson and Simon Roos
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