2005•Power engineeringRequires access

Three-dimensional Numerical Simulation and Analysis of the Steam Flow Field and Heat Exchange Performance of a 300MW Steam Turbine's Condenser

Cui Hui

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Abstract

Based on the PHOENICS software, with the help of a conceived porous medium, which allows for a distributed blocking effect and has a distributed mass, a 3-dimensional steam flow field model of a condenser is set up and, taking a certain power plant's 300MW steam turbine's condenser as an example, the flow process of the complicated mixture of matter is being numerically simulated. Results of calculation almost concur with actual conditions. Accordingly, some referential conclusions are obtained by theoretical analysis. Figs 5, tables 3 and refs 8.

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What this paper is about

Based on the PHOENICS software, with the help of a conceived porous medium, which allows for a distributed blocking effect and has a distributed mass, a 3-dimensional steam flow field model of a condenser is set up and, taking a certain power plant's 300MW steam turbine's condenser as an example, the flow process of the complicated mixture of matter is being numerically simulated. Results of calculation almost concur with actual conditions. Accordingly, some referential conclusions are obtained by theoretical analysis. Figs 5, tables 3 and refs 8.

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Available abstract

Based on the PHOENICS software, with the help of a conceived porous medium, which allows for a distributed blocking effect and has a distributed mass, a 3-dimensional steam flow field model of a condenser is set up and, taking a certain power plant's 300MW steam turbine's condenser as an example, the flow process of the complicated mixture of matter is being numerically simulated. Results of calculation almost concur with actual conditions. Accordingly, some referential conclusions are obtained by theoretical analysis. Figs 5, tables 3 and refs 8.

Key concepts: Condenser (optics), Steam turbine, Surface condenser, Heat exchanger, Turbine, Engineering, Flow (mathematics), Steam-electric power station

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