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The same sex-specific, time-dependent multivariable Cox proportional-hazards regression models with and without the sandwich variance estimate, airport dummy variables, and stratified analysis were further used to study associations in two-pollutant models for particulates (PM2.5, PM10 2.5, or PM10) with each of the gases (O3, SO2, and NO2) and CHD mortality.
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The models can be implemented as a sub-grid model in Euler-Lagrange numerical models for particulate flows with solid particles undergoing phase changes.
A computational fluid dynamics (CFD) model for particulate fouling in heat exchangers has been developed.
In the present analysis, the composite elastic properties have been derived by a generalized self consistent model for particulate composites.
Excess risk estimates from epidemiological studies were used, combined with air pollution dispersion modelling for particulate matter (PM10) and nitrogen dioxide (NO2).
Methods: We created 2006 national pollutant models for fine particulate matter [PM with aerodynamic diameter ≤ 2.5 μm (PM2.5)], nitrogen dioxide (NO2), benzene, ethylbenzene, and 1,3-butadiene from routinely collected fixed-site monitoring data in Canada.
Nan's model is for particulate composites not for nanofluids.
In this study we discuss the prevailing flow conditions and present a low-fidelity two-fluid model equation for particulate transport.
The main objective of this study is to understand the mathematical models for liquid pulsed particulate fluidization and its dynamic processes.
In this review we summarize the current state of Eulerian transport models for turbulent polydispersed particulate flows without size class discretization.
A new advanced filtration model for diesel particulate filter (DPF) is presented.
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