| 000 | 02005nam a2200253 a 4500 | ||
|---|---|---|---|
| 001 | vtls000058743 | ||
| 003 | KUKTEM | ||
| 005 | 20251114204504.0 | ||
| 008 | 120320t2010 my a f m 000 0 eng d | ||
| 020 | _aTHE0004854(Local) | ||
| 039 | 9 |
_a201905161136 _bsmfh _y201203201229 _zFida |
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| 040 | _aUMP | ||
| 090 | _aTP757 .F34 2010 rs Bc. | ||
| 100 | 0 | _aAhmad Fahmy Jusoh | |
| 245 | 1 | 0 |
_aFlow equations in commercial gas piping system / _cAhmad Fahmy Jusoh |
| 260 |
_aKuantan, Pahang : _bUMP, _c2010 |
||
| 300 |
_axiv, 55 p. : _bill. ; _c30 cm. + _e1 CD-ROM |
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| 502 | _aProject paper (Bachelor of Chemical Engineering (Gas Technology)) -- Universiti Malaysia Pahang - 2010 | ||
| 504 | _aBibliography : p. 33 | ||
| 520 | 3 | _aThere are various types of flow equations in commercial gas piping system and this thesis will covered about the comparison of Cox and Pole‟s method. FORTRAN 90 software was used to validate the manual calculation of both equations and a comparative study was made. The analytical solutions of the resulting differential equations are obtained in the form of Cox and Pole‟s equations. The equations give functional relationship between flow rate, inlet pressure and outlet pressure, as well as pressure drop at any given length. The effect of pressure drop per segment on gas flow rate is presented. Both of the equation was calculated manually from the commercial area gas piping route and the syntax generated from the equations were compiled and executed in F90 with no errors. The Cox‟s method was found more economically with smaller pipe size but allowable pressure drop in each section, compared to Pole‟s method. The equations considerably enhance gas pipeline design in terms of both ease of usage and accuracy. A simple computer program in FORTRAN 90 is developed to handle these calculations. | |
| 650 | 0 | _aGas pipelines | |
| 650 | 0 | _aNatural gas pipelines | |
| 999 |
_aVIRTUA40 _c2910 _d2916 |
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