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Optimum insulation thickness for piping system using exergy and environmental methods
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G. Özel Et Al. , "Optimum insulation thickness for piping system using exergy and environmental methods," International Journal of Global Warming , vol.11, no.1, pp.107-123, 2017

Özel, G. Et Al. 2017. Optimum insulation thickness for piping system using exergy and environmental methods. International Journal of Global Warming , vol.11, no.1 , 107-123.

Özel, G., AÇIKKALP, E., GÖRGÜN, B., YAMIK, H., & CANER, N., (2017). Optimum insulation thickness for piping system using exergy and environmental methods. International Journal of Global Warming , vol.11, no.1, 107-123.

Özel, GÜLCAN Et Al. "Optimum insulation thickness for piping system using exergy and environmental methods," International Journal of Global Warming , vol.11, no.1, 107-123, 2017

Özel, GÜLCAN Ö. Et Al. "Optimum insulation thickness for piping system using exergy and environmental methods." International Journal of Global Warming , vol.11, no.1, pp.107-123, 2017

Özel, G. Et Al. (2017) . "Optimum insulation thickness for piping system using exergy and environmental methods." International Journal of Global Warming , vol.11, no.1, pp.107-123.

@article{article, author={GÜLCAN ÖZEL EROL Et Al. }, title={Optimum insulation thickness for piping system using exergy and environmental methods}, journal={International Journal of Global Warming}, year=2017, pages={107-123} }