Sentence examples for melting depth from inspiring English sources

Exact(5)

Fig. 2 The pressure at the melting depth as a function of the mass of the growing planet for all accretional collisions that create an Earth-like planet.

The computational method is used to predict the melting depth of a frozen fractured rock mass in a permafrost region, and the comparison of the computed results with engineering cases in practice is used to verify the computational method.

Figure 2 shows the pressure at the maximum melting depth for each impact, normalised by the core-mantle boundary pressure at the time of impact, P CMB, as a function of the fraction of mass accreted to the final Earth-like planet.

The simulation reveals that the melting layer reaches a few micrometers in depth, and in particular at the pulse duration of 120 μs and the deposition energy density of 15 J/cm2, the calculated melting depth of 4.4 μm is good agreement with the experimental results.

The simulated temperature distributions of different powder beds exhibited a big difference in the melting depth.

Similar(55)

These facilities ensure the possibility to realize melting depths of materials in the range of 10 100 μm.

The distribution of Niobium enriched basalts (NEB) in the southern Superior Province may reflect plume controlled shallow subduction beneath the Abitibi belt that limited melting depths within a restricted asthensopheric mantle tongue.

The aim of this contribution is to present the results of preliminary calculations of melting depths caused by each individual impact in N-body accretion simulations and to develop a complete history of melting and evolving magma ocean depth throughout Earth's accretion history.

The melted depth of the polished coatings was approximately half that of as-received coatings even when treated at the same power density (38.4 W/mm2) and this difference of melted depth between the as-received coatings and polished coatings increased with the power density (47.9 W/mm2).

Nanosecond-resolution electrical measurements of the time-dependent melt depth and of the electrical resistivity of a buried Pt thin film thermometer permitted us to determine the solidification velocity and the temperature of the crystal/melt interface.

For the experimental conditions employed (i.e., melt depth and water flow rates), it was found that: (1) the volumetric heat removal rate increased with increasing water mass flow rate and (2) the non-condensable gas mixed with the injected water had no impairing effect on the overall heat removal rate.

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