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Description: XLW is a C++ wrapper of the Excel C API described in Microsoft Excel 97 Developer s Kit. It makes Excel API programming automatic. Its powerful interface will empower your C or C++ numerics by embedding them in Excel just like the built-in functions.
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Size: 305226 |
Author: 陈国平 |
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Description: 美国科学院院士教你写论文
介绍有关论文写作方面的技巧
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Size: 99869 |
Author: cyq7011 |
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Description: XLW is a C++ wrapper of the Excel C API described in Microsoft Excel 97 Developer s Kit. It makes Excel API programming automatic. Its powerful interface will empower your C or C++ numerics by embedding them in Excel just like the built-in functions.
Platform: |
Size: 305152 |
Author: |
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Description: 美国科学院院士教你写论文
介绍有关论文写作方面的技巧-The United States Academy of Sciences teach you to write papers on the thesis writing skills
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Size: 100352 |
Author: cyq7011 |
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Description: C++ EExcel Plugin using XLW (xlw.sourceforge) implementing classical laminate theory / laminate properties
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Size: 595968 |
Author: apm |
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Description: This submission allow the user for generation of three-dimensional turbulent wind fields, by employing a Kaimal spectrum and IEC-based coherence function. Furthermore, it is possible to export the generated wind fields as FAST-compatible .bts, in order to simulate wind turbine dynamic behavior in presence of stochastic wind.
Required inputs are:
- Average wind speed at hub height, U0 [m/s]
- Desired turbulence intensity, I0 [ ]
- Hub height, HubHt [m]
- Random seed
- Number of grid points on z-axis, Nz (odd number)
- Number of grid points on y-axis, Ny (odd number)
- Grid width, Ly [m]
- Grid height, Lz [m]
- Time step, dt [s]
- Simulation length, T [s] (generally 600s)
- Length scales, (xLu,xLv,xLw) [m]
- Vertical wind shear exponent
- Coherence decay, a
- Coherence length scale, Lc [m].
The file GenerateOneBTS.m better highlights how the different functions operate.-This submission allow the user for generation of three-dimensional turbulent wind fields, by employing a Kaimal spectrum and IEC-based coherence function. Furthermore, it is possible to export the generated wind fields as FAST-compatible .bts, in order to simulate wind turbine dynamic behavior in presence of stochastic wind.
Required inputs are:
- Average wind speed at hub height, U0 [m/s]
- Desired turbulence intensity, I0 [ ]
- Hub height, HubHt [m]
- Random seed
- Number of grid points on z-axis, Nz (odd number)
- Number of grid points on y-axis, Ny (odd number)
- Grid width, Ly [m]
- Grid height, Lz [m]
- Time step, dt [s]
- Simulation length, T [s] (generally 600s)
- Length scales, (xLu,xLv,xLw) [m]
- Vertical wind shear exponent
- Coherence decay, a
- Coherence length scale, Lc [m].
The file GenerateOneBTS.m better highlights how the different functions operate.
Platform: |
Size: 6144 |
Author: Dron41 |
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