/ Liquid of density. throgh a pipe of 50mm inte intemal dimeter an orifice, lo mm in dimeter is fitted in the life and differential Pressure Shwn on amercury manometer 1200 kg/m³ flowing is 0-1 m- assuming the leads the manometer are filled with the flowing fluid, calculate the mass flow fate of fluid (a the approximate drop in pressure caused by the orifice in KN/m² d differen the flowi ifice in the des ba we the coefficient of discharge maybe taken as 0-61 and the density of mercury is 13,550 kg/m³

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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her of partic
Fluid Flow
/Liquid of density 1200 kg/m²
throgh a pipe of 50mm inte intemal
dimeter an
orifice, lo mm in dimeter
is fitted in the life and differential
Pressure Shwn on amercury manometer
is 0-1 m.
assuming the leads the manometer are
filled with the flowing fluid, calculate
@ the mass flow fate of fluid
flowing
the approximate drop in pressure.
caused by the orifice in KN/m²
pe of 50 mm in
d differential
the flowing flu
ifice in kN/m
the density
bartle
wers c
the coefficient of discharge
ugybe taken as 0-61 and
the
density of mercury is 13,550 kg/m³
Transcribed Image Text:her of partic Fluid Flow /Liquid of density 1200 kg/m² throgh a pipe of 50mm inte intemal dimeter an orifice, lo mm in dimeter is fitted in the life and differential Pressure Shwn on amercury manometer is 0-1 m. assuming the leads the manometer are filled with the flowing fluid, calculate @ the mass flow fate of fluid flowing the approximate drop in pressure. caused by the orifice in KN/m² pe of 50 mm in d differential the flowing flu ifice in kN/m the density bartle wers c the coefficient of discharge ugybe taken as 0-61 and the density of mercury is 13,550 kg/m³
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