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allochka39001 [22]
2 years ago
9

Saturated water with a quality of 0.55 and a temperature of 120 oC enters an uninsulated diffuser at a velocity of 180 m/s. The

mass flow rate is 1.5 kg/s. If the water is to exit as saturated water vapor at a temperature of 120 oC, with negligible velocity, determine the necessary heat transfer rate.
Engineering
1 answer:
Tanzania [10]2 years ago
6 0

Answer:

Q_{in}=146.22kW

Explanation:

Hello,

In this case, the energy balance for the given uninsulated diffuser is:

m_{in}h_{in}+m_{in}\frac{v_{in}^2}{2}+Q_{in} =m_{out}h_{out}+m_{out}\frac{v_{out}^2}{2}

Thus, we shall remember that the inlet mass equals the outlet mass and the outlet velocity is negligible, for that reason we obtain:

mh_{in}+m\frac{v_{in}^2}{2}+Q_{in} =mh_{out}

Hence, solving for the heat, we need the enthalpy at the inlet, which at 120°C for a liquid-vapor mixture results:

h_{in}=503.81\frac{kJ}{kg} +0.55*2202.1\frac{kJ}{kg}=1714.965\frac{kJ}{kg}

Moreover, at 120 °C the outlet enthlapy as saturated steam is:

2706.0\frac{kJ}{kg}

(Values extracted from Cengel, Thermodynamics 7th edition). In such a way, the required heat inlet is:

Q_{in}=m(h_{out}-h_{in}-\frac{v_{in}^2}{2})=0.15\frac{kg}{s}(2706.0\frac{kJ}{kg}-1714.965\frac{kJ}{kg}-\frac{(180m/s)^2}{2*1000})

Q_{in}=146.22kW

Notice that the term having the velocity should be divided by 1000 to obtain  it in kJ/kg.

Best regards.

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Usually, the brazing material has the liquid temperature of the melting point, the full melting point of the filler material approaching 450 degrees centigrade, while the filler material is less than 450 degrees centigrade in the case of soldering.

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Python Homework
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Answer:

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  2. STANDARD_DEDUCTION = 10000.0
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We can use round function to enable the program to output number with two digits of precision.

The round function will take two inputs, which is the value intended to be rounded and the number of digits of precision. If we set 2 as second input, the round function will round the incomeTax to two decimal places. The round function has to be enclosed within the str function so that the rounded value will be converted to a string and joined with the another string to display the complete a sentence of income tax info.

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Is an isothermal process necessarily internally reversible? Explain your answer with an example
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(3) Calculate the heat flux through a sheet of brass 7.5 mm (0.30 in.) thick if the temperatures at the two faces are 150°Cand 5
bezimeni [28]

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a.) 1.453MW/m2,  b.)  2,477,933.33 BTU/hr  c.) 22,733.33 BTU/hr  d.) 1,238,966.67 BTU/hr

Explanation:

Heat flux is the rate at which thermal (heat) energy is transferred per unit surface area. It is measured in W/m2

Heat transfer(loss or gain) is unit of energy per unit time. It is measured in W or BTU/hr

1W = 3.41 BTU/hr

Given parameters:

thickness, t = 7.5mm = 7.5/1000 = 0.0075m

Temperatures 150 C = 150 + 273 = 423 K

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Temperature difference, T = 423 - 323 = 100 K

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K= thermal conductivity of the material

The thermal conductivity of brass, k = 109.0 W/m.K

Heat flux, Q" = \frac{109 * 100}{0.0075} = 1,453,333.33 W/m^{2} \\ Heat flux, Q" = 1.453MW/m^{2} \\

b.) Area of sheet, A = 0.5m2

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Heat loss, Q = 726,666.667 * 3.41 = 2,477,933.33 BTU/hr

c.) Material is now given as soda lime glass.

Thermal conductivity of soda lime glass, k is approximately 1W/m.K

Heat loss, Q=\frac{1*0.5*100}{0.0075} = 6,666.67W

Heat loss, Q = 6,666.67 * 3.41 = 22,733.33 BTU/hr

d.) Thickness, t is given as 15mm = 15/1000 = 0.015m

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Heat loss, Q = 363,333.33 * 3.41 = 1,238,966.67 BTU/hr

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3. The printer must be "on line" with the microprocessor.

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For NOT gate.

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Finally, AND gate output is HIGH only when all the input signal is HIGH and vice versa, i.e AND gate output is LOW only when all the input signal is LOW. So AND gate satisfies the given criteria that; all the three conditions must be true for the final signal to be HIGH.

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