Required information Hot engine oil at 150°C is flowing in parallel over a flat plate at a velocity of 3.20 m/s. Surface temperature of the 1.700-m long flat plate is constant at 50°C. The properties of engine oil at Tf = (150°C + 50°C)/2 = 100°C are k= 0.1367 W/m-K, v= 2.046 x 10-5 m²/s, Pr = 279.1. Determine the local convection heat transfer coefficient at 0.200 m from the leading edge and the average convection heat transfer coefficient using the Churchill and Ozoe (1973) relation. The local convection heat transfer coefficient at 0.200 m from the leading edge is |W/m2.K. The average convection heat transfer coefficient is W/m2-K.
Required information Hot engine oil at 150°C is flowing in parallel over a flat plate at a velocity of 3.20 m/s. Surface temperature of the 1.700-m long flat plate is constant at 50°C. The properties of engine oil at Tf = (150°C + 50°C)/2 = 100°C are k= 0.1367 W/m-K, v= 2.046 x 10-5 m²/s, Pr = 279.1. Determine the local convection heat transfer coefficient at 0.200 m from the leading edge and the average convection heat transfer coefficient using the Churchill and Ozoe (1973) relation. The local convection heat transfer coefficient at 0.200 m from the leading edge is |W/m2.K. The average convection heat transfer coefficient is W/m2-K.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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Required information
Hot engine oil at 150°C is flowing in parallel over a flat plate at a velocity of 3.20 m/s. Surface temperature of the 1.700-m
long flat plate is constant at 50°C. The properties of engine oil at Tf = (150°C + 50°C)/2 = 100°C are k= 0.1367 W/m-K, v=
2.046 x 10-5 m2/s, Pr = 279.1.
Determine the local convection heat transfer coefficient at 0.200 m from the leading edge and the average convection heat transfer
coefficient using the Churchill and Ozoe (1973) relation.
The local convection heat transfer coefficient at 0.200 m from the leading edge is
] W/m²K.
The average convection heat transfer coefficient is
]W/m2-K.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7a885bcd-24bb-4221-93f9-b36a653b960d%2Fecaf29d6-a610-45ef-9d72-b60b15e65a17%2Fdinc4zh_processed.jpeg&w=3840&q=75)
Transcribed Image Text:!
Required information
Hot engine oil at 150°C is flowing in parallel over a flat plate at a velocity of 3.20 m/s. Surface temperature of the 1.700-m
long flat plate is constant at 50°C. The properties of engine oil at Tf = (150°C + 50°C)/2 = 100°C are k= 0.1367 W/m-K, v=
2.046 x 10-5 m2/s, Pr = 279.1.
Determine the local convection heat transfer coefficient at 0.200 m from the leading edge and the average convection heat transfer
coefficient using the Churchill and Ozoe (1973) relation.
The local convection heat transfer coefficient at 0.200 m from the leading edge is
] W/m²K.
The average convection heat transfer coefficient is
]W/m2-K.
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