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68 lines
2.2 KiB
Python
68 lines
2.2 KiB
Python
6 years ago
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import pandas as pd
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import pytest
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from scaling import ReynoldsConverter
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reynolds = ReynoldsConverter()
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def test_unit_to_same_unit():
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assert reynolds.model_to_proto(1, 1, 'm', 'm') == 1
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assert reynolds.proto_to_model(1, 1, 'm', 'm') == 1
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def test_unit_to_different_unit():
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assert reynolds.model_to_proto(1, 1, 'kN', 'N') == 1000
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assert reynolds.proto_to_model(1000, 1, 'N', 'kN') == 1
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def test_reynolds_length():
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assert reynolds.model_to_proto(1, 10, 'm', 'm') == 10
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assert reynolds.proto_to_model(10, 10, 'm', 'm') == 1
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def test_reynolds_time():
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assert reynolds.model_to_proto(1, 5, 's', 's') == 25
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assert reynolds.proto_to_model(25, 5, 's', 's') == pytest.approx(1, 0.01)
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def test_reynolds_force():
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assert reynolds.model_to_proto(1, 10, 'N', 'N') == 1
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assert reynolds.proto_to_model(1000, 10, 'N', 'N') == 1000
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def test_reynolds_overtopping():
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assert reynolds.model_to_proto(10, 4, 'L/m/s', 'L/m/s') == 10
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assert reynolds.proto_to_model(100, 50, 'L/m/s', 'L/m/s') == 100
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def test_reynolds_time_index_dataframe():
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df_model = pd.DataFrame(index=[2], data=[2])
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df_proto = reynolds.model_to_proto(df_model, 16, 'mm', 'm', 's', 's')
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assert df_proto.index.values[0] == 512
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def test_reynolds_length_index_dataframe():
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df_proto = pd.DataFrame(index=[4], data=[16])
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df_model = reynolds.proto_to_model(df_proto, 2, 'kN', 'N', 'm', 'm')
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assert df_model.index.values[0] == 2
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def test_unit_dimensions():
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assert reynolds.dimensions('m') == 'L^1'
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assert reynolds.dimensions('kg') == 'M^1'
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assert reynolds.dimensions('s') == 'T^1'
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assert reynolds.dimensions('N') == 'L^1 M^1 T^-2'
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assert reynolds.dimensions('Pa') == 'L^-1 M^1 T^-2'
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assert reynolds.dimensions('L/m/s') == 'L^2 T^-1'
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assert reynolds.dimensions('mm^2.s') == 'L^2 T^1'
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def test_scaling_exponent():
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assert reynolds.scaling_exponent('m') == 1
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assert reynolds.scaling_exponent('kg') == 3
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assert reynolds.scaling_exponent('s') == 2
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assert reynolds.scaling_exponent('N') == 0
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assert reynolds.scaling_exponent('Pa') == -2
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assert reynolds.scaling_exponent('L/m/s') == 0
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assert reynolds.scaling_exponent('mm^2.s') == 4
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