Answer:
the amount of bleed steam required to heat 1 kg of feedwater in this unit is 0.078 kg/s
Step-by-step explanation:
Given that:
Pressure of the feed water = 7000 kPa
Temperature of the closed feedwater heater = 260 ° C
Pressure of of the turbine = 6000 kPa
Temperature of the turbine = 325 ° C
The objective is to calculate the amount of bleed steam required to heat 1 kg of feedwater in this unit.
From the table A-4 of saturated water temperature table at temperature 260° C at state 1 ;
Enthalpies:
![h_1 = h_f = 1134.8 \ kJ/kg](https://img.qammunity.org/2021/formulas/engineering/college/eouk6xxxjgue9otvm0u3zf6ai8lek2n5ff.png)
From table A-6 superheated water at state 3 ; the value of the enthalpy relating to the pressure of the turbine at 6000 kPa and temperature of 325° C is obtained by the interpolating the temperature between 300 ° C and 350 ° C
At 300° C; enthalpy = 2885.6 kJ/kg
At 325° C. enthalpy = 3043.9 kJ/kg
Thus;
![(325-300)/(350-300)=\frac{h_(325^0)-{h_(300^0)}}{{h_(350^0)}- {h_(300^0)}}](https://img.qammunity.org/2021/formulas/engineering/college/ng2qxnleu441w09uagshol1p36jayzavkj.png)
![(325-300)/(350-300)=(h_(325^0)-2885.6)/(3043.9-2885.6 )}](https://img.qammunity.org/2021/formulas/engineering/college/vlz6tm4flj9azydvndeelq9nd08zdncpjq.png)
![(25)/(50)=(h_(325^0)-2885.6)/(3043.9-2885.6 )}](https://img.qammunity.org/2021/formulas/engineering/college/g5rx15r97mkwx0kbloyg9ezmex77beqs1i.png)
![h_(325^0) = 2885.6 + (25)/(50)({3043.9-2885.6 )](https://img.qammunity.org/2021/formulas/engineering/college/nbxzz4vqsob7ixqwe892s4bgdibp7vhmdz.png)
![h_(325^0) = 2885.6 + 0.5({3043.9-2885.6 )](https://img.qammunity.org/2021/formulas/engineering/college/by3z6ynybpcampskc8haf3php0cj33ecix.png)
![h_(325^0) =2964.75 \ kJ/kg](https://img.qammunity.org/2021/formulas/engineering/college/8spf96chrx07s0snas335kc9ps5sw21z2a.png)
At pressure of 7000 kPa at state 6; we obtain the enthalpies corresponding to the pressure at table A-5 of the saturated water pressure tables.
![h_6 = h_f = 1267.5 \ kJ/kg](https://img.qammunity.org/2021/formulas/engineering/college/y6sc9setynjar9n60lozmgj4c5ou09h04v.png)
From state 4 ;we obtain the specific volume corresponding to the pressure of 6000 kPa at table A-5 of the saturated water pressure tables.
![v_4 = v_f = 0.001319\ m^3 /kg](https://img.qammunity.org/2021/formulas/engineering/college/ocefsf0vyseujtumlnfa4dqm6sovxf30ho.png)
However; the specific work pump can be determined by using the formula;
![W_p = v_4 (P_5-P_4)](https://img.qammunity.org/2021/formulas/engineering/college/ptal1ti61h0aew858nfzf0d5s76gkstkoy.png)
where;
= pressure at state 4
= pressure at state 5
![W_p = 0.001319 (7000-6000)](https://img.qammunity.org/2021/formulas/engineering/college/n4vlf27vs817l9q0vi83rl12wy1azyh2lm.png)
![W_p = 0.001319 (1000)](https://img.qammunity.org/2021/formulas/engineering/college/qrf3qth71qxw0dmj5eer77w4ureb0krww3.png)
![W_p =1.319 \ kJ/kg](https://img.qammunity.org/2021/formulas/engineering/college/neogolq9xj6944dxgfy5wd6k452vjinxu6.png)
Using the energy balance equation of the closed feedwater heater to calculate the amount of bleed steam required to heat 1 kg of feed water ; we have:
![E_(in) = E_(out) \\ \\ m_1h_1 +m_3h_3 + m_3W_p = (m_1+m_3)h_6](https://img.qammunity.org/2021/formulas/engineering/college/5im9r5180q8mig2ynce7e5ogiaw0cyyg5m.png)
where;
![m_1 = 1 \ kg](https://img.qammunity.org/2021/formulas/engineering/college/mn2bihm5hq5rmqd43omipumgf5bohea673.png)
Replacing our other value as derived above into the energy balance equation ; we have:
![1 * 1134.8 +m_3 * 2964.75 + m_3 * 1.319 = (1+m_3)* 1267.5](https://img.qammunity.org/2021/formulas/engineering/college/5gocly6btr41wfooeck8mcfaxv0z6eug5n.png)
![1134.8 + 2966.069 \ m_3 = 1267.5 + 1267.5m_3](https://img.qammunity.org/2021/formulas/engineering/college/l9s61d8gq2w06qrqkz1at8j9g7wfffjma2.png)
Collect like terms
![2966.069 \ m_3- 1267.5m_3 = 1267.5-1134.8](https://img.qammunity.org/2021/formulas/engineering/college/2wj7yu72pck4ajx3hw4flmqxl6sbhpm6jr.png)
![1698.569 \ m_3 =132.7](https://img.qammunity.org/2021/formulas/engineering/college/v7o6j5h07p41rs46hsg133y0z7lqfbmmt2.png)
![\ m_3 = (132.7)/(1698.569)](https://img.qammunity.org/2021/formulas/engineering/college/2i9g5da7s6zx4bsakcuhkc7sx9duznomt0.png)
![\mathbf{ m_3 = 0.078 \ kg/s}](https://img.qammunity.org/2021/formulas/engineering/college/32axewhejo41i6dqvxpsoj68zfkfj1lrbx.png)
Hence; the amount of bleed steam required to heat 1 kg of feedwater in this unit is 0.078 kg/s