Created
March 1, 2024 10:16
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Fractures cost functions (in 2D)
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import math | |
import matplotlib.pyplot as plt | |
import random | |
def costJoint(normal: tuple[float, float], S3: tuple[float, float]): | |
return 1 - abs(normal[0]*S3[0] + normal[1]*S3[1]) | |
def costStylolite(normal: tuple[float, float], S3: tuple[float, float]): | |
return 1 - costJoint(normal, S3) | |
def deg2rad(angleInDeg: float) -> float: | |
b = math.pi/180 | |
return angleInDeg * b | |
# ------------------------------------------------------------------ | |
def plotRotateS3(): | |
x = [] | |
yj = [] | |
ys = [] | |
font = {'family': 'serif', | |
'color': 'darkred', | |
'weight': 'normal', | |
'size': 16, | |
} | |
n = [0, 1] | |
for angle in range(0, 91, 1): | |
x.append(angle) | |
S3 = [math.cos(deg2rad(angle)), math.sin(deg2rad(angle))] | |
# Joint | |
costJ = costJoint(n, S3) | |
yj.append(costJ) | |
# Stylolite | |
costS = costStylolite(n, S3) | |
ys.append(costS) | |
# Code de matplotlib | |
fig, ax = plt.subplots() | |
ax.plot(x, yj, label='Joint') | |
ax.plot(x, ys, label='Stylolite') | |
ax.legend() | |
ax.axvline(x=30, ymax=0.5, linewidth=1, color='black', linestyle=(0, (5, 5))) | |
ax.set_xlim(0, 90) | |
ax.set_ylim(0, 1) | |
plt.title('Cost functions for a vertical fracture', fontdict=font) | |
plt.xlabel('$\sigma_3$ orientation', fontdict=font) | |
plt.ylabel('Cost', fontdict=font) | |
plt.show() | |
plotRotateS3() |
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