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Transient Heat Transfer Analysis of an Exhaust Header A transient heat transfer analysis was performed on this automobile exhaust header, modeled in Pro/ENGINEER, to determine how quickly the header would heat up once the engine was started. |
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Steady-State Heat Transfer Analysis of an Automotive Exhaust System Body-to-body radiation and convection were used in this steady-state heat transfer analysis of an automotive exhaust system, modeled in Rhinoceros, to determine the temperature rise in the floor pan due to the catalytic converter. |
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Steady-State Heat Transfer Analysis of an Oxygen Sensor Engineers at Delphi Corporation used steady-state heat transfer analysis to optimize the design of this planar wide-range oxygen sensor, which samples gases in an automotive exhaust system. The optimization resulted in a 20% reduction of temperatures in the critical seal and terminal regions. |
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Transient Heat Transfer Analysis of Temperature Probe Transient heat transfer analysis was used in the design of a temperature probe. |
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Transient Heat Transfer Analysis of a Model Engine A transient heat transfer analysis was performed on this model engine, modeled in Autodesk Inventor, to determine the rapidly changing temperatures which result from internal combustion and exhaust gases as the engine is started. |
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Transient Heat Transfer Analysis of a Lead Acid Battery A transient heat transfer analysis was performed on this lead acid battery, modeled in SolidWorks, to determine the temperature distribution during the time when the battery first delivers energy to the starter. |
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Transient Heat Transfer Analysis of a Hybrid Fuel Cell A transient heat transfer analysis was performed on this nickel hydrogen hybrid fuel cell, typically used to power communication satellites, to determine if the fuel cell remained within allowable temperatures during startup. Portions of the fuel cell, modeled in SolidWorks, are displayed transparently so that the internal components can be viewed easily. |
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