Convert lbm ft3 to kg m3

    • [DOC File]FLUID MECHANICS - Auburn University

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      – Density (kg/m3, slug/ft3) Alternatives for density - specific weight = weight per unit volume (N/m3, lbf/ft3) = g H2O: = 9790 N/m3 = 62.4 lbf/ft3. Air: = 11.8 N/m3 = 0.0752 lbf/ft3. S.G. - specific gravity = / (ref) where (ref) is usually at 4˚C, but some references will use (ref) at 20˚C

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    • [DOC File]Course Overview

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      Density has units of kg/m3 or lbm/ft3. To determine the mass of an entire thermodynamic system, it is necessary to integrate the density over the entire volume according to the following relationship: (1.7) Specific Volume (v) The specific volume is the reciprocal of the density and is defined as follows: Specific volume has units of m3/kg or ...

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    • [DOCX File]Energy Efficient Process Heating

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      Large quantities of excess air dilute combustion gasses and lower the temperature of the gasses, which results in decreased efficiency. The energy input, Q in, to a combustion chamber is the product of the natural gas mass flow rate, m ng, and the higher heating value of natural gas, HHV, which is about 23,900 Btu/lbm.

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    • [DOC File]California State University, Northridge

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      First we find the data for the initial state. Since this is a saturated vapor at 0.8 MPa, we find the following saturated vapor properties from Table A-12 on page 930: v1 = 0.025621 m3/kg, u1 = 246.79 kJ/kg, and s1 = 0.91835 kJ/kg∙K. We can find the (constant) mass from the initial volume, V1 = 0.05 m3 and the initial specific volume.

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    • [DOC File]Natural Gas Pipeline Flow Calculations

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      The density of a gas is its mass per unit volume, typically expressed in lbm/ft3 or slugs/ft3 in U.S. units and in kg/m3 for S.I. units. The gas density is an important parameter for gas pipe flow calculations. The density of any gas increases with increasing pressure and decreases with increasing temperature.

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    • [DOC File]CHAPTER 9

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      In fact, c remains constant at 0.999 Btu/lbm(R (to three digits) from 60oF to 130oF. For this same temperature range, the density varies from 62.36 lbm/ft3 at 60oF to 61.55 lbm/ft3 at 130oF. We approximate the density as constant, whose value is 62.06 lbm/ft3 at the average temperature of 95oF. Analysis For a constant pressure process, .

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    • [DOC File]www.csun.edu

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      The mass of 10 lbm is constant so we can find the specific volume at this state, v2 = V2/m = 10.5 ft3/ 10 lbm = 1.05 ft3/lbm. Searching the superheat tables on page 980 for this specific volume at 80oF, we find that that v2 lies between tabulated specific volumes of 1.0540 ft3/lbm at 50 psia and 0.8636 ft3/lbm …

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    • [DOC File]Title

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      Gs = lbm/h-ft2 Ds=De = ft = lbm/ft3 = s = lbm/ft-s . Assume all other variables are dimensionless. Find the units for this pressure. Define secant, cosecant, and cotangent in terms of sine and cosine. What are the SI units for pressure (base and common)?

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    • [DOC File]Homework #1

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      SHOW ALL CONVERSIONS (CONVERSION FACTORS), and use only the most basic conversions (e.g., do not convert kg/hr to m/s directly). Convert the properties listed in part (a) to English Units (pound-mass system): lbm/ft3, ft/s, ft, lbf∙s/ft2 . Show all work. Calculate the Reynolds number based on the English-unit properties calculated in part (b).

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