{ "metadata": { "name": "", "signature": "sha256:f4a0a7844b6459633e8f9b6f741200c1545981a9763b6626d83f6d9de514c4bc" }, "nbformat": 3, "nbformat_minor": 0, "worksheets": [ { "cells": [ { "cell_type": "heading", "level": 1, "metadata": {}, "source": [ "Chapter8-Centrifugal compressor Aerodynamics" ] }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Ex1-pg505" ] }, { "cell_type": "code", "collapsed": false, "input": [ "print \"Example 8.1\"\n", "import numpy\n", "import matplotlib\n", "from matplotlib import pyplot\n", "z0=numpy.linspace(0.2,0.6,80)\n", "g1=numpy.zeros(80)\n", "gc1=0.\n", "gm=1.4\n", "i=0;\n", "M1=z0\n", "for i in range (0,80):\n", "\ty=1./((1+((gm-1)/2.)*M1[i]**2)**(1./2))\n", "\tg1[gc1]=y\n", "\tgc1=gc1+1\n", "\n", "\n", "pyplot.plot(z0,g1)\n", "pyplot.xlabel(\"Inlet Mach no M1\")\n", "pyplot.ylabel(\"Ratio of index to the impeller tip tangential Mach no.\")\n", "pyplot.title(\"Ratio of Mach index to impeller tip Mach no.\")" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "Example 8.1\n" ] }, { "metadata": {}, "output_type": "pyout", "prompt_number": 14, "text": [ "" ] }, { "metadata": {}, "output_type": "display_data", "png": 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DhGN33x1akJ1yCqyxRrGjci57BesgCdxXw7J769pJUhPgWqA/0BMYKKlHtc3O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\nKNh/f7jiClhzzWJHVLpKfmp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"text": [ "" ] } ], "prompt_number": 14 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Ex3-pg515" ] }, { "cell_type": "code", "collapsed": false, "input": [ "import math\n", "#calculate static pressure ratio across the rotor and diffuser and estimate diffuser staic presure rise\n", "print(\"Example 8.3\")\n", "M1=1.2 ##Mach no at impeller tip\n", "gm=1.4 ##gamma\n", "p31=(1+(gm-1)*M1**2)**(gm/(gm-1)) ##p=p3/p1\n", "p32=p31**(1/2.) ##p31=p3/p2\n", "Cp=(2/(gm*M1**2.))*(2.2-1) ##static pressure rise in radial diffuser\n", "print\"%s %.3f %s\"%(\"(a)The static pressure the rotor and diffuser p3/p1 :\",p31,\"\")\n", "print\"%s %.4f %s\"%(\"The static pressure ratio across the diffuser p3/p2\",p32,\"\")\n", "print\"%s %.3f %s\"%(\"Diffuser static pressure rise :\",Cp,\"\")\n" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "Example 8.3\n", "(a)The static pressure the rotor and diffuser p3/p1 : 4.914 \n", "The static pressure ratio across the diffuser p3/p2 2.2168 \n", "Diffuser static pressure rise : 1.190 \n" ] } ], "prompt_number": 3 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Ex4-pg517" ] }, { "cell_type": "code", "collapsed": false, "input": [ "print \"Example 8.4\"\n", "%pylab inline\n", "import warnings\n", "warnings.filterwarnings('ignore')\n", "#calculate and graph the inducer D-factor for solidity of one and over a range of impeller tip mach number and radius ratios\n", "import numpy\n", "import matplotlib\n", "from matplotlib import pyplot\n", "M=2;\n", "i=1;\n", "sigma=1\n", "z0=numpy.linspace(0.1,0.5,5)\n", "gm=1.4;\n", "\n", "for M in range(2,4):\n", " g1=numpy.zeros(5)\n", " gc1=0;\n", " for r in z0:\n", "\t\ty=1-(1/(1+(r**2)*(M**2)))+((M*r)/(2*sigma*(1+(r**2)*(M**2))**(1/2.)))\n", "\t\tg1[gc1]=y\n", "\t\tgc1=gc1+1;\n", " number=0;\n", " pyplot.plot(z0,g1)\n", " i=i+1;\n", " pyplot.xlabel(\"Eye-to-lip radius ratio (r1/r2)\")\n", " pyplot.ylabel(\"D inducer\")\n", " pyplot.title(\"Inducer performance and centrifugal compressor design parameters (solidity=1)\")\n", " pyplot.legend(\"Mt/Mz1=2\",\"Mt/Mz1=3\",\"Mt/Mz1=4\")\n" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "Example 8.4\n", "Populating the interactive namespace from numpy and matplotlib\n" ] }, { "output_type": "stream", "stream": "stderr", "text": [ "WARNING: pylab import has clobbered these variables: ['number']\n", "`%matplotlib` prevents importing * from pylab and numpy\n" ] }, { "metadata": {}, "output_type": "display_data", "png": 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wpB49dk/dqQesUtV1ACLyGXALsMw3zWagtve6FLDdn9CNiXe7Duxi0IJB9J7d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\nNIPBCwfz/KTnufH8G1nceTF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"text": [ "" ] } ], "prompt_number": 18 }, { "cell_type": "heading", "level": 2, "metadata": {}, "source": [ "Ex6-pg522" ] }, { "cell_type": "code", "collapsed": false, "input": [ "import math\n", "print(\"Example 8.6\")\n", "#calculate the compressor total to static efficency\n", "Tt1=288.\n", "Cp=1004.\n", "gm=1.4\n", "ett=0.8\n", "p=6.8 ##pt3/pt1\n", "C1=200.\n", "pt1=101.\n", "Tt3=Tt1*(1.+(1./ett)*(p**((gm-1.)/gm)-1.))\n", "Tt2s=Tt1*p**((gm-1.)/gm)\n", "T1=Tt1-C1**2./(2.*Cp)\n", "ets=(Tt2s-T1)/(Tt3-T1)\n", "print\"%s %.4f %s\"%(\"Compressor total-to-static efficiency :\",ets,\"\")" ], "language": "python", "metadata": {}, "outputs": [ { "output_type": "stream", "stream": "stdout", "text": [ "Example 8.6\n", "Compressor total-to-static efficiency : 0.8141 \n" ] } ], "prompt_number": 5 } ], "metadata": {} } ] }