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author | priyanka | 2015-06-24 15:03:17 +0530 |
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committer | priyanka | 2015-06-24 15:03:17 +0530 |
commit | b1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (patch) | |
tree | ab291cffc65280e58ac82470ba63fbcca7805165 /2417/CH8/EX8.10/Ex8_10.sce | |
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initial commit / add all books
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-rwxr-xr-x | 2417/CH8/EX8.10/Ex8_10.sce | 19 |
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diff --git a/2417/CH8/EX8.10/Ex8_10.sce b/2417/CH8/EX8.10/Ex8_10.sce new file mode 100755 index 000000000..73833e163 --- /dev/null +++ b/2417/CH8/EX8.10/Ex8_10.sce @@ -0,0 +1,19 @@ +//scilab 5.4.1
+clear;
+clc;
+printf("\t\t\tProblem Number 8.10\n\n\n");
+// Chapter 8 : Vapor Power Cycles
+// Problem 8.10 (page no. 389)
+// Solution
+
+//Some of the property data required was found in problem8.4.In addition we have,
+//at 200 psia,s=1.7566 Btu/lbm*R,
+h7=1413.6; //Unit:Btu/lbm //Enthalpy
+//at 200 psia,s=1.8320 Btu/lbm*R,
+h4=1514.0; //Unit:Btu/lbm //Enthalpy
+//at 14.696 psia,s=1.8320 Btu/lbm*R,
+h5=1205.2; //Unit:Btu/lbm //Enthalpy
+h1=180.17; //Unit:Btu/lbm //enthalpy
+//Using these data,
+nreheat=((h4-h5)+(h4-h7))/((h4-h1)+(h4-h7)); //The efficiency of the reheat cycle
+printf("The efficiency of the reheat cycle is %f percentage",nreheat*100);
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