Question 12.7: A cogeneration plant using a CFB combustor is designed for t......

A cogeneration plant using a CFB combustor is designed for the following operat-ing conditions:

• Electric capacity of the cogeneration plant P_{el} is 19 MWe
• Thermal capacity of the cogeneration plant Q_{u} is 26 MWt
• Fuel: bituminous coal with LHV of 30 MJ/kg
• Efficiency of power generation in a separate power plant \eta_{el} is 0.43
• Efficiency of useful heat production in a separate heating plant \eta_{h} is 0.85
• Overall efficiency (energy utilization factor) of the cogeneration plant \eta_{CG} is 0.9

Calculate (i) the fuel requirements of the cogeneration plant and the separate plants, and (ii) the fuel savings of the cogeneration plant per day.

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1. Fuel requirements of the CFB cogeneration plant

m_\mathrm{f,CG}=(P_{\mathrm{el}}+Q_{\mathrm{u}})/(\mathrm{LHV~\eta}_{\mathrm{CG}})=(19+26)/(30\times0.9)=1.67\mathrm{~kg/s}

2. Total fuel requirements of two separate plants together

m_{ \mathrm{f,sep}}=(P_{\mathrm{el}}/\eta_{\mathrm{el}}+Q_{\mathrm{u}}/\eta_{\mathrm{h}})/ \mathrm{LHV}=(19/0.43+26/0.85)/30=2.49~{\mathrm{kg/s}}

3. Fuel savings rate of the CFB cogeneration plant

\Delta m_\mathrm{f}=m_{ \mathrm{f,sep}}-m_{ \mathrm{f,CG}}=2.49-1.67=0.82\ {\mathrm{kg/s\,or}} \,0.82/2.49=33\%

4. Daily fuel savings rate of the CFB cogeneration plant

\Delta m_\mathrm{f,d}=\Delta m_\mathrm{f}\times24\times3600=0.82\mathrm{~kg/s}\times24\mathrm{~h/day}\times3600\mathrm{~s/h}=70,848\mathrm{~kg/day}

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