Ejemplo n.º 1
0
    def __spacetime_diagram_o_frame(self):
        # from (x',t') to (x,t)
        def tr(x_prime, t_prime):
            x_prime, t_prime = np.asarray(x_prime), np.asarray(t_prime)
            return self.lorentz_transformations.transform(
                x_prime, t_prime, -self.velocity)

        # form (x,t) to (x',t')
        def inv_tr(x, t):
            x, t = np.asarray(x), np.asarray(t)
            return self.lorentz_transformations.transform(x, t, self.velocity)

        grid_helper = GridHelperCurveLinear((tr, inv_tr))
        ax = Subplot(self.fig, 1, 2, 1, grid_helper=grid_helper) if self.showOPrime \
            else Subplot(self.fig, 1, 1, 1, grid_helper=grid_helper)
        self.fig.add_subplot(ax)

        ax.set_xlabel("x", loc="center")
        ax.set_ylabel("t", loc="center")

        # O' x axis
        ax.axis["x1"] = x1 = ax.new_floating_axis(1, 0)
        x1.label.set_text("x'")

        # O' t axis
        ax.axis["t1"] = t1 = ax.new_floating_axis(0, 0)
        t1.label.set_text("t'")

        self.__add_x_and_y_axis(ax)
        ax.format_coord = self.__format_coord_o_frame

        self.__remove_ticks(ax, x1, t1)

        self.world_lines_plotter.plot(plt, ax, self.velocity)
Ejemplo n.º 2
0
for x_T in x_T_levels:
    ax.plot(x_T, y_all_p, color=(1.0, 0.5, 0.5))

for x_theta in x_thetas:
    ax.plot(x_theta, y_all_p, color=(1.0, 0.7, 0.7))

for x_mixing_ratio in x_mixing_ratios:
    good = p_all >= 600  # restrict mixing ratio lines to below 600 mb
    ax.plot(x_mixing_ratio[good], y_all_p[good], color=(0.8, 0.8, 0.6))

n_moist = len(theta_ep_mesh)
moist_colors = ((0.6, 0.9, 0.7), ) * n_moist
ax.contour(x_from_Tp(mesh_T + C_to_K, mesh_p),
           y_from_p(mesh_p),
           theta_ep_mesh,
           theta_ep_levels,
           colors=moist_colors)

ax.axis((x_min, x_max, y_min, y_max))


def format_coord(x, y):
    T, p = to_thermo(x, y)
    return "{0:5.1f} C, {1:5.1f} mb".format(float(T), float(p))


ax.format_coord = format_coord
ax.plot(x_snd_Td, y_snd_p, linewidth=2, color='g')
ax.plot(x_snd_T, y_snd_p, linewidth=2, color='r')

plt.show()
Ejemplo n.º 3
0
for yi in y_p_levels: 
	ax.plot((x_min, x_max), (yi,yi), color = (1.0, 0.8, 0.8))

for x_T in x_T_levels: 
	ax.plot(x_T, y_all_p, color=(1.0, 0.5, 0.5))

for x_theta in x_thetas:
	ax.plot(x_theta, y_all_p, color=(1.0, 0.7, 0.7))

for x_mixing_ratio in x_mixing_ratios:
	good = p_all >= 600  # restrict mixing ratio lines to below 600 mb
	ax.plot(x_mixing_ratio[good], y_all_p[good], color = (0.8, 0.8, 0.6))

n_moist = len(theta_ep_mesh)
moist_colors = ((0.6, 0.9, 0.7),)*n_moist
ax.contour(x_from_Tp(mesh_T+C_to_K, mesh_p), y_from_p(mesh_p),
	theta_ep_mesh, theta_ep_levels, colors = moist_colors)

ax.axis((x_min, x_max, y_min, y_max))

def format_coord(x, y):
	T, p = to_thermo(x, y)
	return "{0:5.1f} C, {1:5.1f} mb".format(float(T), float(p))

ax.format_coord = format_coord
ax.plot(x_snd_Td, y_snd_p, linewidth = 2, color = 'g')
ax.plot(x_snd_T, y_snd_p, linewidth = 2, color = 'r')


plt.show()