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7.1 Define the following terms regarding an internal combustion engine: 7.1.1 Brake power 7.1.2 Torque 7.2 The indicated power diagram represents the power stroke and compression stroke - NSC Mechanical Technology Automotive - Question 7 - 2021 - Paper 1

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7.1-Define-the-following-terms-regarding-an-internal-combustion-engine:--7.1.1-Brake-power-7.1.2-Torque--7.2-The-indicated-power-diagram-represents-the-power-stroke-and-compression-stroke-NSC Mechanical Technology Automotive-Question 7-2021-Paper 1.png

7.1 Define the following terms regarding an internal combustion engine: 7.1.1 Brake power 7.1.2 Torque 7.2 The indicated power diagram represents the power stroke ... show full transcript

Worked Solution & Example Answer:7.1 Define the following terms regarding an internal combustion engine: 7.1.1 Brake power 7.1.2 Torque 7.2 The indicated power diagram represents the power stroke and compression stroke - NSC Mechanical Technology Automotive - Question 7 - 2021 - Paper 1

Step 1

Define Brake Power

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Answer

Brake power is the usable power or actual power developed at the flywheel or at the drive wheels, calculated by the output power divided by the input power.

Step 2

Define Torque

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Answer

Torque is the twisting effort or force applied on a shaft or wheel, measured over the applied radius.

Step 3

How do the compression stroke and power stroke affect the pressure?

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Answer

The compression stroke leads to an increase in pressure as the volume decreases. In contrast, the power stroke results in a decrease in pressure as the combustion process occurs and the volume increases.

Step 4

Which term is used to describe the volume V1?

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Answer

V1 is referred to as the clearance volume.

Step 5

Which term is used to describe the volume V2?

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Answer

V2 is referred to as the swept volume.

Step 6

Calculate the total cylinder volume in cm³.

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Answer

The total cylinder volume is calculated by adding the clearance volume and the swept volume:

Totalextcylinderextvolume=V1+V2=39extcm3+330extcm3=369extcm3.Total ext{ }cylinder ext{ }volume = V_1 + V_2 = 39 ext{ cm}^3 + 330 ext{ cm}^3 = 369 ext{ cm}^3.

Step 7

Calculate the bore diameter in mm.

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Answer

Using the formula for the swept volume:

SweptextVolume=πD24×LSwept ext{ }Volume = \frac{\pi D^2}{4} \times L

We already know the swept volume as 330 cm³ and the length (L) is 65 mm:

D2=(330×4)π×65ightarrowD80.4extmm.D^2 = \frac{(330 \times 4)}{\pi \times 65} ightarrow D \approx 80.4 ext{ mm}.

Step 8

Calculate the compression ratio of this cylinder.

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Answer

The compression ratio (CR) is calculated as follows:

CR=TotalextcylinderextvolumeClearanceextvolume=369399.46.CR = \frac{Total ext{ }cylinder ext{ }volume}{Clearance ext{ }volume} = \frac{369}{39} \approx 9.46.

Step 9

State TWO methods to lower the compression ratio in an internal combustion engine.

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Answer

  1. Fit a thicker gasket between the cylinder block and cylinder head.
  2. Use pistons with suitable lower crowns.

Step 10

Calculate Torque.

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Answer

Using the formula:

T=BP2πN=48×10002π×650070.52extNm.T = \frac{BP}{2\pi N} = \frac{48 \times 1000}{2\pi \times 6500} \approx 70.52 ext{ Nm}.

Step 11

Calculate Indicated Power in kW.

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Answer

Using the formula:

IP=PLAN=450×103×580.7×106×108.33×256.6125extkW.IP = PLAN = 450 \times 10^3 \times 580.7 \times 10^{-6} \times 108.33\times 2 \approx 56.6125 ext{ kW}.

Step 12

Calculate Mechanical Efficiency.

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Answer

The mechanical efficiency is calculated as:

η=BPIP×1004856.6125×10084.78%.\eta = \frac{BP}{IP} \times 100 \approx \frac{48}{56.6125} \times 100 \approx 84.78\%.

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