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II. İLERİ TEKNOLOJİLER ÇALIŞTAYI (İTÇ 2011) - Bilgesam

II. İLERİ TEKNOLOJİLER ÇALIŞTAYI (İTÇ 2011) - Bilgesam

II. İLERİ TEKNOLOJİLER ÇALIŞTAYI (İTÇ 2011) - Bilgesam

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162<br />

Kaynaklar<br />

1. Shi, X., Che, D., Agnew, B., Gao, J., An investigation of the performance of<br />

compact heat exchanger for latent heat recovery exhaust flue gases., İnternational<br />

Journal of Heat and Mass Transfer 54(<strong>2011</strong>) 606-615.<br />

2. Mavridou, S., Mavropoulos, G.C., Bouris, D., Hountalas,D.H., Bergeles, G.,<br />

Comparative design study of a diesel exhaust gas heat exchanger for truck applications<br />

with conventional and state of the art heat transfer enhancements.,<br />

Applied Thermal Engineering 30 (2010) 935-947.<br />

3. Wei Li, Xialing Wang., Heat transfer and pressure drop correlations for compact<br />

heat exchangers with multi-region louver fins., İnternational Journal of Heat and<br />

Mass Transfer 53(2010) 2955-2962.<br />

4. Shuhuan Wei., Lingen Chen., Fengrui Sun., Constructal entransy dissipation<br />

minimization of round tube heat exchanger cross-section., İnternational Journal<br />

of Thermal Science 50 (<strong>2011</strong>) 1285-1292.<br />

5. Saji, N., Nagai, S., Tsuchiya, K., Asakura, H., Obata, M., Development of a<br />

compact laminar flow heat exchanger with stainless steel micro-tubes., Physica<br />

C 354 (2001) 148-151.<br />

6. Tan, C.K., Ward, J. Wilcox, S.J. Payne, R., Artificial neural network modelling<br />

of the thermal performance of a compact heat exchanger., Applied Thermal Engineering<br />

29 (2009) 3609-3617.<br />

7. Grillot J.M., compact heat exchangers liquid-side fauling., Applied Thermal<br />

Engineering vol. 17. Nos. 8-10. pp.717-726. (1997).<br />

8. Che, D., Lui, Y., Gao, C., Evaluat'on of retrof'tt'ng a conventional natural gas<br />

fired boiler into a condensing boiler., Energy Conversion and Management 45<br />

(2004) 3251-3266.<br />

9. Kauranen, P., Elonen, T., Wikstromm, L., Heikkinen, J., Laurikko, J., Temperature<br />

optimisation of a diesel engine using exhaust gas heat recovery and<br />

thermal energy storage (diesel engine with thermal energy storage)., Applied<br />

Thermal Engineering 30 (2010) 631-638.<br />

10. Alessandro, F., Nicolas, G., Optimum thermal design of modular compact heat<br />

exchangers structure for heat recovery steam generators., Applied Thermal Engineering<br />

25 (2005) 1293-1313.<br />

11. Yanhua, L., Yiping, W., Li, Z., Qi, W., Enhanced performance of heat recovery<br />

ventilator by airflow-induced film vibration (HRV performance enhanced by<br />

FIV) International Journal of Thermal Sciences 49 (2010) 2037e2041.<br />

12. Li, Q., Flamant G., Yuan, X., Neveu, P., Luo,L., Compact heat exchangers: A<br />

review and future applications for a new generation of high temperature solar<br />

receivers. Renewable and Sustainable Energy Reviews xxx (<strong>2011</strong>) xxx-xxx.<br />

13. Karri, M.A., Thacher, E.F., Helenbrook, B.T., Exhaust energy conversion by<br />

thermoelectric generator: Two case studies. Energy Conversion and Management<br />

52 (<strong>2011</strong>) 1596-1611.<br />

14. Noie, S.H., Investigation of thermal performance of an air-to-air thermosyphon<br />

heat exchanger using e-NTU method Applied Thermal Engineering 26 (2006)<br />

559-567.

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