Apparent mass of seated human body
Apparent mass of seated human body
The equation:
 = \frac{force\:at\:seat\:person\:interface}{acceleration\:at\:seat-person\:interface)
 = \frac{F_1(\omega)}{A_p(\omega)})
 = \frac{F_1(\omega) - m_1 A_s(\omega) - m_2 A_p(\omega)}{A_p(\omega)})
$: Apparent mass (frequency domain))
$: Force at seat-person interface)
$: Acceleration at seat-person interface)
$: Seat acceleration)


Definition of Apparent Mass
Apparent mass of a person is the frequency-dependent inertial mass that an external vibrating support “feels” when it excites the body. In whole-body vibration studies, it quantifies how strongly a seated or standing person reacts dynamically to seat, floor, or platform acceleration.