Air of initial ML potential temperature 15°C comes to rest over a 25°C sea surface. Divergence is 10-7 s-1, and the initial A8/Az = y = 3.5 K km-1. Find and plot the warm airmass evolution of potential temperature and depth. Use Excel spread sheet calculation with time step of 360 s, and show 4000 iterations, and the plot of iterative solution and submit this as part of your solution. Your plot of the iterative solution should have time in days on the x-axis, zi (m) on the left y axis and 8 (°C) on the left y axis. The plot should show only the 0ML (°C) and zi (m). Clearly indicate on the graph, the 0sfc (°C) and the time T that the new warm airmass has maximum thickness Estimate the time T (you may create iterative solution using excel) that the new warm airmass has maximum thickness and compare this with the value obtained from the graph. Submit (EXCEL sheets) this with your answer.

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Air of initial ML potential temperature 15°C
comes to rest over a 25°C sea surface.
Divergence is 10-7 s-1, and the initial ▲0/Az
y = 3.5 K km-1. Find and plot the warm airmass
evolution of potential temperature and depth.
Use Excel spread sheet calculation with time
step of 360 s, and show 4000 iterations, and
the plot of iterative solution and submit this as
part of your solution. Your plot of the iterative
solution should have time in days on the x-axis,
zi (m) on the left y axis and 0 (°C) on the left y
axis. The plot should show only the 0ML (°C)
and zi (m). Clearly indicate on the graph, the
Osfc (°C) and the time T that the new warm
airmass has maximum thickness Estimate the
time T (you may create iterative solution using
excel) that the new warm airmass has
maximum thickness and compare this with the
value obtained from the graph. Submit (EXCEL
sheets) this with your answer.
Transcribed Image Text:Air of initial ML potential temperature 15°C comes to rest over a 25°C sea surface. Divergence is 10-7 s-1, and the initial ▲0/Az y = 3.5 K km-1. Find and plot the warm airmass evolution of potential temperature and depth. Use Excel spread sheet calculation with time step of 360 s, and show 4000 iterations, and the plot of iterative solution and submit this as part of your solution. Your plot of the iterative solution should have time in days on the x-axis, zi (m) on the left y axis and 0 (°C) on the left y axis. The plot should show only the 0ML (°C) and zi (m). Clearly indicate on the graph, the Osfc (°C) and the time T that the new warm airmass has maximum thickness Estimate the time T (you may create iterative solution using excel) that the new warm airmass has maximum thickness and compare this with the value obtained from the graph. Submit (EXCEL sheets) this with your answer.
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