Consider refrigerant R-134a flowing in a smooth, horizontal, tube of wall thickness 2 mm. The refrigerant is at a saturation temperature of
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- Liquid water enters a 10-m-long smooth rectangular tube with a 50 mm and b = 25 mm. The surface temperature is kept constant, and water enters the tube at 20°C with a mass flow rate of 0.25 kg/s. Determine the tube surface temperature necessary to heat the water to the desired outlet temperature of 80°C Find the pumping power. Tearrow_forwardA liquid metal flows at the rate of 4kg/s through a constant heat flux 6cm inner diameter tube in a nuclear reactor. The fluid at 200 oC is to be heated with the tube wall 40 oC above the fluid temperature. Determine the length of the tube required 25 oC rise in bulk fluid temperature. Using the following properties: ρ = 7700 kg/m3 , Y = 8*10-8 m2/s , Pr=0.011 , Cp= 130 J/kg.K , k=12W/mk. please can you solve it with keyboard,take your time heat transfer, J.P.Holman .arrow_forwardWater (7.7 L/min) is flowing in a tube "D = 3 cm, L= 5 m" and is to be heated from 15°C to 62.1°C by applying a uniform heat flux on the outer surface of the tube by electric resistance heater. What is the power rating of the resistance heater (kW)? If turbulent flow use Dituss- Boetler relation Nu= 0.023 Re0.8 Pr". Properties : p = 992.1 kg/m³ , C, = 4179 J/kg.°C, k = 0.631 W/m°C, Pr = 4.32, v = 0.658E-6 m²/sarrow_forward
- Water at an inlet temperature of 10 C and a mass flow rate of m = 0.035 kg/s enters a tube of circular cross-section. The tube has a constant surface temperature of 30 C and an inside diameter of 10.2 cm, with a length of 58.2 meters. Find the heat transfer rate, q. Please show all steps.arrow_forwardLiquid water enters a 10-m-long smooth rectangular tube with a 50 mm and b = 25 mm. The surface temperature is kept constant, and water enters the tube at 20°C with a mass flow rate of 0.25 kg/s. Determine the tube surface temperature necessary to heat the water to the desired outlet temperature of 80°C Find the pumping power.arrow_forwardWater is pumped through an iron pipe (k=67.2 W/m2 K), 2 meters long as the rate of 1000kg/min. The inner and outer diameters of the tube are 50mm and 60mm respectively. Calculate the rise in temperature of water when the outside of the tube is heated to a temperature of 600°C. The initial temperature of the water is 30°C.arrow_forward
- Glycerin passes through a pipe of 30 mm inside diameter at a mass flow rate of 700 kg / hr. The wall of the 2.5 m heating section of the pipe is kept constant at 115 ° C. The glycerin inlet temperature is given as 15C. What is the exit temperature of glycerin from the pipe?arrow_forwardAir at p = 1 atm enters a thin-walled (D = 5-mm diameter) long tube (L = 2 m) at an inlet temperature of Tmi = 100°C. A constant heat flux is applied to the air from the tube surface. The air mass flow rate is m = 135 × 106 kg/s. If the tube surface temperature at the exit is T5,0 = 160°C, determine the heat rate entering the tube, in W. Evaluate properties at T = 400 K. 9 = i Warrow_forwardWater at an inlet temperature of 10 C and a mass flow rate of m = 0.035 kg/s enters a tube of circular cross-section. The tube has a constant surface temperature of 30 C and an inside diameter of 10.2 cm, with a length of 58.2 meters. Find the heat transfer rate, q.arrow_forward
- Water (cp=4.182 kJ/kg.K, k=0.6405 W/m.K, Pr=3.57, ν=0.5537x10-6 m2/s, ρ=998 kg/m3) flows through a tube (D=0.5 cm) with an average velocity of 0.2 m/s. The average temperatures of the water at the inlet and outlet cross-sections are 26,03 oC and 86,92 oC, respectively. The uniform heat flux of 0,82 W/cm2 is subjected to the surface of the tube for heating process. Determine the tube length [m].arrow_forwardIn many manufacturing plants, individuals areoften working around high-temperature surfaces.Exposed hot surfaces that can cause thermal burns on humanskin are considered hazards in the workplace. Metallic surfacesabove 70° C can instantly damage skin that touches them.Consider an AISI 1010 carbon steel strip (? = 7832 kg/ m 3 )2 mm thick and 3 cm wide that is conveyed into a chamber tobe cooled at a constant speed of 1 m/s. The steel strip entersthe cooling chamber at 597° C. Determine the rate at whichheat needs to be removed so that the steel strip exits the chamberat 47° C . Discuss how the conveyance speed can affect therequired rate of heat removal.arrow_forwardAir at p = 1 atm enters a thin-walled (D = 5-mm diameter) long tube (L = 2 m) at an inlet temperature of Tm,i = 100°C. A constant heat flux is applied to the air from the tube surface. The air mass flow rate is m = 125 × 10-6 kg/s. If the tube surface temperature at the exit is T, = 160°C, determine the heat rate entering the tube, in W. Evaluate properties at T = 400 K. q= Mi Warrow_forward
- Principles of Heat Transfer (Activate Learning wi...Mechanical EngineeringISBN:9781305387102Author:Kreith, Frank; Manglik, Raj M.Publisher:Cengage Learning