Engineering
Engineering, 06.05.2020 07:00, shira35

A spherical balloon to be used in hydrogen is tested by towing a 3:1 model in a wind tunnel (the 3:1 ration means that the model is bigger than the prototype). When the model is 1.0 m in diameter and it is in airflow at a speed of 7.8 m/s, its drag coefficient is measured to be 0.4. This drag coefficient includes LaTeX: \frac{1}{2}\rho V^21 2 rho V 2 in its definition. What is the drag force on the prototype balloon in N? The density and viscosity of hydrogen are 0.09 kg/m3 and 9x10-6 Pa. s, respectively. The density and viscosity of air are 1.2 kg/m3 and 1.8x10-5 Pa. s, respectively.

answer
Answers: 2

Other questions on the subject: Engineering

image
Engineering, 03.07.2019 14:10, BardiFan
Amass of m 1.5 kg of steam is contained in a closed rigid container. initially the pressure and temperature of the steam are: p 1.5 mpa and t 240°c (superheated state), respectively. then the temperature drops to t2= 100°c as the result of heat transfer to the surroundings. determine: a) quality of the steam at the end of the process, b) heat transfer with the surroundings. for: p1.5 mpa and t 240°c: enthalpy of superheated vapour is 2900 kj/kg, specific volume of superheated vapour is 0. 1483 m/kg, while for t 100°c: enthalpy of saturated liquid water is 419kj/kg, specific volume of saturated liquid water is 0.001043m/kg, enthalpy of saturated vapour is 2676 kj/kg, specific volume of saturated vapour is 1.672 m/kg and pressure is 0.1 mpa.
Answers: 3
image
Engineering, 03.07.2019 15:10, breannaasmith1122
Two flowing streams of argon gas are adiabatically mixed to form a single flow/stream. one stream is 1.5 kg/s at 400 kpa and 200 c while the second stream is 2kg/s at 500 kpa and 100 ? . it is stated that the exit state of the mixed single flow of argon gas is 150 c and 300 kpa. assuming there is no work output or input during the mixing process, does this process violate either the first or the second law or both? explain and state all your assumptions.
Answers: 1
image
Engineering, 04.07.2019 18:10, caitlynnpatton1208
Water in a partially filled large tank is to be supplied to the roof top, which is 8 m above the water level in the tank, through a 2.2-cm-internal-diameter pipe by maintaining a constant air pressure of 300 kpa (gage) in the tank. if the head loss in the piping is 2 m of water, determine the discharge rate of the supply of water to the roof top in liters per second.
Answers: 3
image
Engineering, 04.07.2019 18:10, dval1146
You are making beer. the first step is filling the glass carboy with the liquid wort. the internal diameter of the carboy is 15 in., and you wish to fill it up to a depth of 2 ft. if your wort is drawn from the kettle using a siphon process that flows at 3 gpm, how long will it take to fill?
Answers: 1
Do you know the correct answer?
A spherical balloon to be used in hydrogen is tested by towing a 3:1 model in a wind tunnel (the 3:1...

Questions in other subjects:

Konu
Mathematics, 03.09.2021 18:00
Konu
Mathematics, 03.09.2021 18:00