Created
August 23, 2021 08:11
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Code for optimization 3
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def plot_space(model, WOB, SURF_RPM, constant_inputs): | |
N_matrix = np.empty((len(WOB), len(SURF_RPM))) | |
for i in range(len(WOB)): | |
for j in range(len(SURF_RPM)): | |
# Unwrap constant variables | |
Depth, PHIF, VSH, SW, KLOGH = constant_inputs.values() | |
N = predict(model, Depth, PHIF, VSH, SW, KLOGH, WOB=WOB[i], SURF_RPM=SURF_RPM[j]) | |
N_matrix[i][j] = N | |
plt.imshow(N_matrix, origin='lower', aspect='auto', cmap='inferno', | |
extent=(min(SURF_RPM), max(SURF_RPM), min(WOB), max(WOB))) | |
plt.xlabel('SURF_RPM') | |
plt.ylabel('WOB') | |
plt.title('ROP_AVG', pad=10) | |
plt.colorbar() | |
# Range of WOB and RPM values | |
WOB = np.linspace(17e3, 90e3, 30) | |
SURF_RPM = np.linspace(1.5, 2.5, 30) | |
# Constant input variables | |
constant_inputs = {'Depth': 3480, 'PHIF': 0.09, 'VSH': 0.1, | |
'SW': 1, 'KLOGH': 0.001} | |
# Plot prediction space | |
plot_space(pipe, WOB, SURF_RPM, constant_inputs) |
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