← Back
ExamFull examExam paper only

16 07 18sol

Study material for Energy Systems LM, shared by the Studwiz community and reviewed by moderators.

Energy Systems LMFull exam

Document information

What's included in this study material

Study material for Energy Systems LM, shared by the Studwiz community and reviewed by moderators.

Import quality: text was extracted directly from the original document.

Extracted content from the document

Representative passages recognised in different parts of the material. The full extracted text remains available to search, while this compact preview makes the page easier to read.

Page 1

PROBLEM 1: combustion power 5000 kW biomass composition weight basis, % C 40,0% H 8,0% O 15,0% N 0,3% S 0,1% Ash 1,0% moisture 35,6% LHV, MJ/kg 15,0 MJ/kg ambient air T 35,00 °C air excess 0,70 flue gas T 140,00 °C flue gas cp/cv 1,33 ashes T 140,00 °C air molar ratio N2 3,76 O2 1,00 air molecular weight 28,85 kg/kmol air cp/cv 1,40 flue gas molecular weight 28,17 kg/kmol combustion efficiency 0,99 heat capacity of ashes 2,00 kJ/kg-K equivalent macromolecule xC 1,000 xH 2,400 xO 0,281 xN 0,006 xS 0,001 xH2O 0,593 Beta-O2st 1,460 kmol_O2/kmol_C alfa_air 11,37 kg_air/kg_bio FLUE GAS COMPOSITION stoic coeff concentration CO2, a 1,000 0,076022379 H2O, b 1,793 0,136333467 SO2, c 0,001 7,1271E-05 N2, d 9,338 0,709861382 O2, e 1,022 0,077711501 O2 concentration in FG 7,77% mass flow rate of fuel 0,3333 kg/s mass flow rate of air 3,7895 kg/s SOLUTION CxCHxHOxONxNSxS CxCHxHOxONxNSxS+(1+excess)*Beta- O2st*(O2 + 3.76 N2)--> aCO2+bH2O + cSO2 + dN2 + eO2 a, b, c, d, e from the atomic balance equations Beta_O2st = xC + xS + xH/4 - xO/2 xO2_FG = e/(a+b+c+d+e) m_fuel= 5MW/LHV; m_air=alfa*m_fuel; m_ash = m_fuel*y_ash; mass flow rate of flue gas 4,1195 kg/s mass flow rate ashes 0,0033 kg/s cp flue gas 1,19 kJ/(kg K) cp air 1,01 kJ/(kg K) useful thermal power 4423,95 kW boiler efficiency 88,48% x_SO2 0,000071 mg_SO2 / Nm3 203,50 x_SO2_dry flue gas 0,00008 x_O2_dry flue gas 0,08998 x_SO2_@6% 0,00010 mg_SO2 /Nm3_@6%_O2 294,48 flame temperature 1314,76 K 1041,61 °C feedwater pressure 30 bar feedwater temperature 150,000 °C feedwater enthalpy 633,8 kJ/kg from calculation for subcooled water steam pressure 20,000 bar steam temperature 400,00 °C steam enthalpy 3248,2 kJ/kg from Mollier diagram steam mass flow rate 1,69215 kg/s m_steam = Quseful/(hout-hin) m_air=alfa*m_fuel; m_ash =…

Preview

First page of the document.

First page: 16 07 18sol