To reduce heat losses, a horizontal rectangular duct that is
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- Please check attach filearrow_forwardConsider a small house with walls 3.7 m high and each of four walls is 12.2 m long. A total of eight windows areplaced in these walls, each with dimensions 0.9 m by 1.2 m. The windows are single paned with k = 0.78 W/m∙K and0.6 cm thick. The walls have an RSI value of 3.4, which means they have RA = L/K = 3.4 m2K/W resisting heat flow.The heat transfer coefficients on the inside and outside of the house are 3 and 6 W/m2K, respectively. Whatpercentage of total heat loss leaves through the windows? Neglect radiative heat loss.arrow_forwardA double-glazed window assembly consists of two glasses, each 6 mm thick, and an air gap of 6 mm thickness between these glasses. Ignore the radiation heat transfer, calculate the rate of heat transfer occurring on a day when the outside temperature is -5 ° C and the room temperature is 28 ° C. h1 = 15 W / m2K, h2 = 9 W / m2K, kcam = 1.4 W / mK, khava = 0.025 W / mKarrow_forward
- Consider steady heat transfer between two large parallel plates at constant temperatures of T1 = 500 K and T2 = 300 K that are L = 2.5 cm apart. The emissivity of the surfaces, ɛ = 0.95. Calculate the total rate of heat transfer and the percentage by thermal radiation between the plates per unit surface area assuming the gap between the plates is (a) filled with atmospheric air (k = 0.02 W/m.°C), (b) evacuated. %3D %3D %3D O = 5.67 x 10-8 W/m².K4arrow_forwardA horizontal steel pipe having a diameter of 5 cm is maintained at a temperature of 50•C in a large room where the air and wall temperature are at 20-C. The surface emissivity of the steel may be taken as ɛ=0.8. Use h = 6.5 W/m2 - "C for this situation, calculate the total heat lost by the pipe per unit length. (Hint energy loss qtotal=qconv+qrac)arrow_forwardThe temperature of a cylindrical tank containing liquid nitrogen is -10 ° C. Tank diameter is 16 cm. The amount of heat lost by convection and radiation from the tank to the environment is 65.5 W / m. Calculate the temperature of the environment where the tank is located: h = 4.35 W / m2K, ∈ = 1.arrow_forward
- A solar collector consists of a long duct through side consists of a glass cover of emissivity &₁ = which air is blown; its cross section forms an equilateral triangle 1 m on a side. One 0.9, while the other two sides are absorber plates with 2 = 3 = 1.0. W/m E1, T₁ Glass cover E3, T37 -E2, T₂ -Absorber plates During operation the surface temperatures are known to be T₁ = 25°C, T₂ = 50°C, and T3 = 80°C. What is the net rate at which radiation is transferred to the cover due to exchange with the absorber plates, in W/m? 9₁ =arrow_forwardThe roof of a house consists of a 22-cm-thick concrete slab (k = 2 W/m∙K) that is 15 m wide and 20 m long. The emissivity of the outer surface of the 1roof is 0.9, and the convection heat transfer coefficient on that surface is estimated to be 15 W/m2∙K. The inner surface of the roof is maintained at 15°C. On a clear winter night, the ambient air is reported to be at 10°C while the night sky temperature for radiation heat transfer is 255 K. Considering both radiation and convection heat transfer, determine the outer surface temperature.arrow_forward626.82 W/m2 471.91 W/m2 The heat is dissipated from the plate by convection and radiation into surrounds at 20 C. Take ɛ =0.8 , o =5.67x10**-8 and ho = 6 W/m**2. K. If (2) ahi the surface temperature of the plate is 50 C ,the value of the heat flux : from the plate is 309.71 W /m2 O None O 394.93 W/m2 O 479.27 W /m2 O 2) uhi A rectangular fin with l 12 JAarrow_forward
- A furnace wall is constructed of an inner layer of 12.7 mm of refracter material, a middle layer of 101.6 mm of insulation material and outer layer of 76.2 mm of steel. The wall surface temperature is 1370 °C inside the refracter material (T0) and 37.8 °C at the outside surface of the steel (T3). Use thermal conductivity for refractor kref = 6.64 W/mK, for insulation, kins= 2.34 W/mK and for steel kste = 45 W/mK. Calculate the heat loss in W for 1 m2 (heat flux)? The temperature at the inter face between the insulation material and steel board?arrow_forwardA thermocouple shielded by a layer of aluminum foil and copper with an emissivity of 0.05 and 0.02 is used to measure the temperature of hot gases flowing in a duct whose walls are maintained at T= 380K. The thermometer shows a temperature of Tth= 540 K. Assuming emissivity of the thermocouple junction is 0.7 and convection heat transfer coefficient to be h= 130 W/m2.C, determine the actual temperature of the gas.arrow_forwardA large steel plate having a thickness of L = 4 in, thermal conductivity of k= 7.2 Btu/h·ft. °F, and an emissivity of ε = 0.7 is lying on the ground. The exposed surface of the plate at x = L is known to exchange heat by convection with the ambient air at T∞ = 90°F with an average heat transfer coefficient of h = 12 Btu/h·ft².°F as well as by radiation with the open sky with an equivalent sky temperature of Tsky =480 R. Also, the temperature of the upper surface of the plate is measured to be 80°F. Assuming steady one-dimensional heat transfer, (a) express the differential equation and the boundary conditions for heat conduction through the plate, (b) obtain a relation for the variation of temperature in the plate by solving the differential equation, and (c) determine the value of the lower surface temperature of the plate at x = 0. Tsky h, To Convection Radiation XA 80°F L E Plate 0 Groundarrow_forward
- Principles of Heat Transfer (Activate Learning wi...Mechanical EngineeringISBN:9781305387102Author:Kreith, Frank; Manglik, Raj M.Publisher:Cengage Learning