Convective and Radiative Heat Transfer in a High Swirl Direct Injection Diesel Engine
Конвективный и лучистый теплообмен в дизельном двигателе с прямым впрыском и интенсивным завихрением
1977-02-01
SCID: 54.1/sabjqjkh
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convective heat transferdirect injection Diesel enginehigh swirlpyroelectric radiation detectorradiative heat transfer
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Abstract (AI)
<div class="htmlview paragraph">Convective and radiative heat transfer measurements in a direct injection Diesel engine have been made using surface thermocouples and a pyroelectric radiation detector.</div> <div class="htmlview paragraph">Measured instantaneous local and spatially averaged convective heat fluxes agree with correlations for turbulent convection to flat surfaces, when using measured local air motion data. Two temperature zones were considered in the computation of local heat flux.</div> <div class="htmlview paragraph">Radiative heat flux measurements corroborate the findings of others, but lower flux levels are attributed to the high swirl engine used here.</div> <div class="htmlview paragraph">A proposal for computation of radiative heat flux from soot concentration shows promise.</div>
Key Findings
1
A proposed method to compute radiative heat flux from soot concentration shows promise based on measurements.
2
Computation of local convective heat flux required considering two temperature zones.
3
Instantaneous local and spatially averaged convective heat fluxes measured in a high-swirl DI diesel engine agree with turbulent convection correlations for flat surfaces when using measured local air motion data.
4
Radiative heat flux measurements are lower than some prior reports, which the authors attribute to the engine's high swirl.
Research Object
Heat transfer (convective and radiative) at surfaces inside a high-swirl direct-injection diesel engine
Research Subject
Measurements and characterization of local and spatially averaged convective heat fluxes and radiative heat fluxes, including comparison to turbulent convection correlations, effect of two-temperature zones, influence of high swirl, and estimation of radiative flux from soot concentration
Publication Details
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1977-02-01
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