| 1.Power Systems Analysis Spreadsheet |
|
01/Mar/2006 |
|
|
Power Systems Analysis Spreadsheet calculates thermodynamic and transport properties of a few gaseous, liquid and solid species (TP), according to International units.
|
|
|
| 2.Energy Conversion Spreadsheet |
|
25/Feb/2006 |
|
|
This spreadsheet calculates thermodynamic and transport properties of a few gaseous, liquid and solid species (TP), according to International units. The user can analyze power cycles (Carnot, Brayton, Otto, Diesel and MHD), power cycle components and processes (compression, combustion and expansion) and compressible flow (velocity of sound, Mach number, stagnation and static properties, nozzle, normal shock, diffuser and thrust).Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
| 3.Energy Conversion with Plots Spreadsheet |
|
14/Apr/2006 |
|
|
This spreadsheet calculates thermodynamic and transport properties of a few gaseous, liquid and solid species (TP), according to International units. The user can analyze power cycles (Carnot, Brayton, Otto, Diesel and MHD), power cycle components and processes (compression, combustion and expansion) and compressible flow (velocity of sound, Mach number, stagnation and static properties, nozzle, normal shock, diffuser and thrust).In this spreadsheet, the technical performance plots are provided so that the user can quickly observe trends and changes of the major input and output values/parameters on the performance when analyzing power cycles, power cycle components/processes and compressible flow.Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
| 4.Gas Dynamics |
|
10/Feb/2004 |
|
|
This program calculates thermodynamic and transport properties of gaseous, liquid and solid species (TP, HP and SP), according to U.S. customary and International units. The user can analyze power cycles (Carnot and Brayton), power cycle components and processes (compression, combustion and expansion) and compressible flow.
|
|
|
| 5.Gas Dynamics Spreadsheet |
|
01/Mar/2006 |
|
|
This spreadsheet calculates thermodynamic and transport properties of a few gaseous, liquid and solid species (TP), according to International units. The user can analyze power cycles (Carnot and Brayton), power cycle components and processes (compression, combustion and expansion) and compressible flow (velocity of sound, Mach number, stagnation and static properties, nozzle, normal shock, diffuser and thrust).Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
| 6.Gas Dynamics with Plots Spreadsheet |
|
14/Apr/2006 |
|
|
This spreadsheet calculates thermodynamic and transport properties of a few gaseous, liquid and solid species (TP), according to International units. The user can analyze power cycles (Carnot and Brayton), power cycle components and processes (compression, combustion and expansion) and compressible flow (velocity of sound, Mach number, stagnation and static properties, nozzle, normal shock, diffuser and thrust).In this spreadsheet, the technical performance plots are provided so that the user can quickly observe trends and changes of the major input and output values/parameters on the performance when analyzing power cycles, power cycle components/processes and compressible flow. Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
|
|
| 8.Physical Properties |
|
10/Feb/2004 |
|
|
Quick and easy access to Physical Properties of Chemical substances information.
|
|
|
|
|
| 10.Physical Properties Spreadsheet |
|
01/Mar/2006 |
|
|
This spreadsheet calculates thermodynamic and transport properties of a few gaseous, liquid and solid species (TP), according to International units. Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
| 11.Pow. and Pro. Sys. Analysis with Plots Spreadsheet |
|
14/Apr/2006 |
|
|
This spreadsheet analyzes power cycles (Carnot, Brayton, Otto and Diesel), power cycle components and processes (compression, combustion and expansion) and compressible flow (velocity of sound, Mach number, stagnation and static properties, nozzle, normal shock, diffuser and thrust).In this spreadsheet, the technical performance plots are provided so that the user can quickly observe trends and changes of the major input and output values/parameters on the performance when analyzing power cycles, power cycle components/processes and compressible flow. Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
| 12.Power and Propulsion Systems Analysis |
|
05/Feb/2004 |
|
|
This program calculates thermodynamic and transport properties of gaseous, liquid and solid species (TP, HP and SP), according to U.S. customary and International units. It contains coefficients for the independent calculation of physical properties of various species.
|
|
|
| 13.Power and Propulsion Systems Analysis Spreadsheet |
|
01/Mar/2006 |
|
|
This spreadsheet analyzes power cycles (Carnot, Brayton, Otto and Diesel), power cycle components and processes (compression, combustion and expansion) and compressible flow (velocity of sound, Mach number, stagnation and static properties, nozzle, normal shock, diffuser and thrust).Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
|
|
| 15.Power Systems Analysis with Plots Spreadsheet |
|
14/Apr/2006 |
|
|
This spreadsheet calculates thermodynamic and transport properties of a few gaseous, liquid and solid species (TP), according to International units. The user can analyze power cycles (Carnot, Brayton, Otto and Diesel) and power cycle components and processes (compression, combustion and expansion). In this spreadsheet, the technical performance plots are provided so that the user can quickly observe trends and changes of the major input and output values/parameters on the performance when analyzing power cycles and power cycle components/processes. Required MS Excel or higher and/or other spreadsheet compatible applications
|
|
|
|
|
| 17.Energy Conversion |
|
02/Feb/2004 |
|
|
Windows based application dealing with power and propulsion systems.
|
|
|
|
|
|