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Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions

Yıl 2009, Cilt: 12 Sayı: 4, 193 - 202, 01.12.2009

Öz

In the field of automotive propulsion, environmental issues (need for drastic reduction of greenhouse gases) and diminishing fossil fuels supplies enhance the need to reduce fuel consumption. To reach this goal, a possible solution is downsizing. Unfortunately, the degradation of the transient performance of the engine limits the expected benefits of downsizing. Engine manufacturers try to improve turbocharger matching using simulation. However, the literature and experiments on a turbocharger test bench show that, contrary to general opinions, heat transfer can influence the turbocharger performance. Thus it seems essential to determine and correlate the different types of heat transfer phenomena occurring in a turbocharger. First a complete experimental characterization of turbocharger heat transfer is performed in steady and transient conditions. The experimental results are used to correlate turbocharger heat transfer coefficients. Then, the equivalent heat transfer resistance method is explained. The correlations obtained are then used in this method to calculate all heat transfer interactions within the turbocharger and transferred to the surroundings in steady and transient conditions. In each case, comparisons between numerical and experimental results are performed to verify the quality of the method proposed.

Yıl 2009, Cilt: 12 Sayı: 4, 193 - 202, 01.12.2009

Öz

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Ayrıntılar

Birincil Dil İngilizce
Bölüm Regular Original Research Article
Yazarlar

Mickaël Cormerais Bu kişi benim

Pascal Chesse Bu kişi benim

Jean-françois Hetet Bu kişi benim

Yayımlanma Tarihi 1 Aralık 2009
Yayımlandığı Sayı Yıl 2009 Cilt: 12 Sayı: 4

Kaynak Göster

APA Cormerais, M., Chesse, P., & Hetet, J.-f. (2009). Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions. International Journal of Thermodynamics, 12(4), 193-202.
AMA Cormerais M, Chesse P, Hetet Jf. Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions. International Journal of Thermodynamics. Aralık 2009;12(4):193-202.
Chicago Cormerais, Mickaël, Pascal Chesse, ve Jean-françois Hetet. “Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions”. International Journal of Thermodynamics 12, sy. 4 (Aralık 2009): 193-202.
EndNote Cormerais M, Chesse P, Hetet J-f (01 Aralık 2009) Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions. International Journal of Thermodynamics 12 4 193–202.
IEEE M. Cormerais, P. Chesse, ve J.-f. Hetet, “Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions”, International Journal of Thermodynamics, c. 12, sy. 4, ss. 193–202, 2009.
ISNAD Cormerais, Mickaël vd. “Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions”. International Journal of Thermodynamics 12/4 (Aralık 2009), 193-202.
JAMA Cormerais M, Chesse P, Hetet J-f. Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions. International Journal of Thermodynamics. 2009;12:193–202.
MLA Cormerais, Mickaël vd. “Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions”. International Journal of Thermodynamics, c. 12, sy. 4, 2009, ss. 193-02.
Vancouver Cormerais M, Chesse P, Hetet J-f. Turbocharger Heat Transfer Modeling Under Steady and Transient Conditions. International Journal of Thermodynamics. 2009;12(4):193-202.