IMPACT OF HIGH INERTIA PARTICLES ON THE SHOCK LAYER AND HEAT TRANSFER IN A HETEROGENEOUS SUPERSONIC FLOW AROUND A BLUNT BODY

Impact of High Inertia Particles on the Shock Layer and Heat Transfer in a Heterogeneous Supersonic Flow around a Blunt Body

One of the most important and complex effects associated with the presence of particles in the flow is the gas-dynamic interaction of particles with the shock layer.Of particular interest is the intensification of heat transfer by high inertia particles rebounding from the surface or by the products of erosion destruction, which reach the front of

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Assessment of Competition between Mungbean (Vigna radiata) and Lambsquarters (Chenopodium album) under Soil Dust Condition

IntroductionDust storms are meteorological phenomena that usually occur in arid and semi-arid regions with an annual rainfall of less than 200 to 250 mm when strong winds blow with a high speed.Dust particles affect plants growth and development directly by depositing in shoot or indirectly by changing soil chemical properties (Maletsika et al., 20

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Assessment of Competition between Mungbean (Vigna radiata) and Lambsquarters (Chenopodium album) under Soil Dust Condition

IntroductionDust storms are meteorological phenomena that usually occur in arid and semi-arid regions with an annual rainfall of less than 200 to 250 mm when strong winds blow with a high speed.Dust particles affect plants growth and development directly by depositing in shoot or indirectly by changing soil chemical properties (Maletsika et al., 20

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Set-based Tasks within the Singularity-robust Multiple Task-priority Inverse Kinematics Framework: General Formulation, Stability Analysis and Experimental Results

Inverse kinematics algorithms are commonly used in robotic systems to transform tasks to joint references, and several methods exist to ensure the achievement of several angilina white tasks simultaneously.The multiple task-priority inverse kinematicsframework allows tasks to be considered in a prioritized order by projecting task velocities throug

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