Computational Simulation of Thermoelectric Generators in Marine Power Plants
Компьютерное моделирование термоэлектрических генераторов на морских энергетических установках
2011-01-01
SCID: 54.1/9y37g6ex
Discuss with AI
CFD modelingmarine power plantsthermoelectric generationthermoelectric generatorswaste heat recovery
Figures from the paper
Abstract (AI)
In thermoelectric generation applications, the two indispensable conditions are the hot source and the cold source to provide the temperature difference for the generator. Thus, the waste heat recovery from various high temperature gas or steam turbines on ships by thermoelectric generators (TEG) is promising because the ocean naturally plays a role as an infinitely large cold source. Among other options, a pilot study of the applicability of thermoelectric generation to the boiler section of marine power plants is presented through CFD (Computational Fluid Dynamics) modeling. It is found that more than 600 W power may be produced from the waste heat of a 300 kW boiler but without an obvious loss of the system safety.
Key Findings
1
A CFD-based pilot study evaluates the applicability of thermoelectric generation to the boiler section of marine power plants.
2
More than 600 W of electrical power may be produced from the waste heat of a 300 kW marine boiler.
3
The modeled thermoelectric recovery produces this power without an obvious reduction in system safety.
4
Thermoelectric generators can recover waste heat from marine boilers by using the ocean as a naturally available cold source.
Research Object
thermoelectric generators applied to waste-heat recovery from the boiler section of marine power plants
Research Subject
the power-generation potential and system-safety impact of recovering boiler waste heat using the natural ocean cold source
Publication Details
Publication Date
2011-01-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest