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The presented studies are devoted for usefulness of Waste Heat Recovery System (WHRS). The main core is developed original optimization method for exhaust boiler (EB) evaluation in dependence on different thermo-technical factors at the condition of fixed boiler dimensions. In a result system of non-linear equations is built up. To achieve the highest output per one equipment volume unit thorough optimization of WHRS is carried at different technical and operational conditions. WHRS for advanced slow speed diesel power plants is separately highlighted due to significantly lowered flue gas…mehr

Produktbeschreibung
The presented studies are devoted for usefulness of Waste Heat Recovery System (WHRS). The main core is developed original optimization method for exhaust boiler (EB) evaluation in dependence on different thermo-technical factors at the condition of fixed boiler dimensions. In a result system of non-linear equations is built up. To achieve the highest output per one equipment volume unit thorough optimization of WHRS is carried at different technical and operational conditions. WHRS for advanced slow speed diesel power plants is separately highlighted due to significantly lowered flue gas potential. Therefore to utilize gas heat as deep as possible another system of non-linear equations is built up based on fixed gas cooling rate in EB. In a result the pressure and other characteristic choice is carried out at various operational and ambient conditions. Here the main task is to get as high output as possible. Due to significance the impact and measurement method for pollution coefficient from gas side is explored.
Autorenporträt
1983 graduation of Sankt-Petersburg Marine Academy mechanical engineer 1983-1986 ¿ post-graduate in the Academy 1986-1996 sailing as engineer on chemical tankers; 1st Class Engineer 1996-2002 in LSCo Ship Management as technical superintendent 2003 ¿ Det Norske Veritas Latvia. 2009 ¿ presentation of theses in Riga Technical University, Dr.Sc.Ing.