2. a. wt' = 6300.00 kw b. x'2 = 94% %3D c. wt = 6720.00 kw d. T2 = 24.1 e. T1 = 465 f. s2' = 34.10 g. T2' = 24.1 %3D h. Ne' = 93.75 i. delta s = 1.55 kj/sec K


2.<br>a. wt' = 6300.00 kw<br>b. x'2 = 94%<br>%3D<br>c. wt = 6720.00 kw<br>d. T2 = 24.1<br>e. T1 = 465<br>f. s2' = 34.10<br>g. T2' = 24.1<br>%3D<br>h. Ne' = 93.75<br>i. delta s = 1.55 kj/sec K<br>

Extracted text: 2. a. wt' = 6300.00 kw b. x'2 = 94% %3D c. wt = 6720.00 kw d. T2 = 24.1 e. T1 = 465 f. s2' = 34.10 g. T2' = 24.1 %3D h. Ne' = 93.75 i. delta s = 1.55 kj/sec K
2. Use only the MD below to solve this Item. Use it by plotting data and process to determine items being asked. Steam enters a turbine at<br>3.0 MPaa and 700 deg. C, and expands isentropically to 0.098325 MPavac. For 4.2| steam undergoing an irreversible adiabatic process<br>under the same properties, what is (a) the actual work done (KJ) if AKE = 0 and h2' = 2,400 KJ/kg; Ans:<br>the following: actual quality at exhaust. Ans:<br>(b) Determine<br>_c) Ideal turbine work. Ans:<br>d) Ideal steam temp at the<br>f) actual entropy at steam outlet.<br>_h) irreversible adiabatic expansion efficiency.<br>exhaust. Ans.<br>e) Degree Superheat of the steam at turbine inlet. Ans_<br>g) Actual temp. of steam at the exhaust. Ans.<br>i) AS for irreversible adiabatic process<br>Ans<br>Ans.<br>

Extracted text: 2. Use only the MD below to solve this Item. Use it by plotting data and process to determine items being asked. Steam enters a turbine at 3.0 MPaa and 700 deg. C, and expands isentropically to 0.098325 MPavac. For 4.2| steam undergoing an irreversible adiabatic process under the same properties, what is (a) the actual work done (KJ) if AKE = 0 and h2' = 2,400 KJ/kg; Ans: the following: actual quality at exhaust. Ans: (b) Determine _c) Ideal turbine work. Ans: d) Ideal steam temp at the f) actual entropy at steam outlet. _h) irreversible adiabatic expansion efficiency. exhaust. Ans. e) Degree Superheat of the steam at turbine inlet. Ans_ g) Actual temp. of steam at the exhaust. Ans. i) AS for irreversible adiabatic process Ans Ans.

Jun 11, 2022
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