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The Delft Sand, Clay & Rock Cutting Model, 2019a

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9.9. Nomenclature.<br />

<strong>The</strong> <strong>Delft</strong> <strong>Sand</strong>, <strong>Clay</strong> & <strong>Rock</strong> <strong>Cutting</strong> <strong>Model</strong>.<br />

a, a Adhesive shear strength kPa<br />

A Adhesive force on the blade kN<br />

c, c Cohesive shear strength kPa<br />

c’ Pseudo cohesive shear strength kPa<br />

C Cohesive force on shear plane kN<br />

Esp Specific energy kPa<br />

F Force kN<br />

Fh Horizontal cutting force kN<br />

FD Drag force on chisel (horizontal force) kN<br />

Fv Vertical cutting force kN<br />

FN Normal force on chisel (vertical force) kN<br />

g Gravitational constant (9.81) m/s²<br />

G Gravitational force kN<br />

hi Initial thickness of layer cut m<br />

hb Height of the blade m<br />

hb,m Mobilized height of the blade in case Curling Type m<br />

K1 Grain force on the shear plane kN<br />

K2 Grain force on the blade kN<br />

I Inertial force on the shear plane kN<br />

N1 Normal grain force on shear plane kN<br />

N2 Normal grain force on blade kN<br />

p1m Pore pressure in the shear plane kPa<br />

p2m Pore pressure on the blade kPa<br />

Pc <strong>Cutting</strong> power kW<br />

Q Production m 3<br />

r Adhesion/cohesion ratio -<br />

r1 Pore pressure on shear plane/cohesion ratio -<br />

r2 Pore pressure on blade/cohesion ratio -<br />

rz Ratio hydrostatic pressure to cohesion -<br />

R Radius of Mohr circle kPa<br />

R1 Acting point on the shear plane m<br />

R2 Acting point on the blade m<br />

S1 Shear force due to internal friction on the shear plane kN<br />

S2 Shear force due to external friction on the blade kN<br />

T Tensile force kN<br />

UCS Unconfined Compressive Stress kPa<br />

vc <strong>Cutting</strong> velocity m/s<br />

w Width of the blade m<br />

W1 Force resulting from pore under pressure on the shear plane kN<br />

W2 Force resulting from pore under pressure on the blade kN<br />

Blade angle rad<br />

Angle of the shear plane with the direction of cutting velocity rad<br />

Shear stress kPa<br />

a, a Adhesive shear strength (strain rate dependent) kPa<br />

c, c Cohesive shear strength (strain rate dependent) kPa<br />

S1 Average shear stress on the shear plane kPa<br />

S2 Average shear stress on the blade kPa<br />

Normal stress kPa<br />

C Center of Mohr circle kPa<br />

T Tensile strength kPa<br />

min Minimum principal stress in Mohr circle kPa<br />

Page 322 of 454 TOC Copyright © Dr.ir. S.A. Miedema

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