Analysis of Performance of a Cogeneration System

碩士 === 國立海洋大學 === 航運技術研究所 === 86 === The world's population has grown rapidly since industrial revolution. The extension of human activity, which have greatly increased the greenhouse warming potential gas-carbon dioxide, led to damag...

Full description

Bibliographic Details
Main Authors: Hung, Chin Ming, 洪健明
Other Authors: Yeh Rong-Hua
Format: Others
Language:zh-TW
Published: 1998
Online Access:http://ndltd.ncl.edu.tw/handle/56508572772630233742
Description
Summary:碩士 === 國立海洋大學 === 航運技術研究所 === 86 === The world's population has grown rapidly since industrial revolution. The extension of human activity, which have greatly increased the greenhouse warming potential gas-carbon dioxide, led to damaging effects on living material as well as environment. The greenhouse effect may be reduced by utilized waste heat effectively. A theoretical study of the cogeneration system is thus proposed. In the heating process, the boiler tubes consists of superheated, saturated, and subcooled sections. It is shown that the saturated area of the boiler tube increases with exhaust mass flow rate whereas the superheated region decreases with the mass flow rate of heating gas at a fixed outlet exhaust temperature. No significant change of the subcooled portion is observed. On the other hand, the saturated and subcooled areas, at a fixed mass flow rate of exhaust gas, increase with exhaust temperature. In addition, the power consumption of the working fluid's circulating pump increases as the outlet temperature of the exhaust gas decreases. The more the net turbine work produces, the lower the outlet temperature of working fluid in the condenser for a fixed mass flow rate of exhaust gas.