electricpete
Electrical
- May 4, 2001
- 16,774
Subject: Calculation - Effect of emissivity error on delta-T between suspect and faulty connections.
Let's say we have two connections, A (suspect faulty connection) and B (reference normal connection).
Both have emissivity e_actual.
We set our camera to assign emissivity e_assumed for all points (camera setting does not match actual).
Connection A has actual temperature Ta_actual and emits radiosity Sa = sigma * e_actual*Ta_actual
Camera indicates Ta_indicated to produce the same radiosity based on assumed emisisivity
Sa = sigma * e_assumed*Ta_indicated^4 = sigma * e_actual*Ta_actual^4
Solving for Ta_indicated:
Ta_indicated = (e_actual/e_assumed)^0.25 * Ta_actual
Likewise we can find indicated temperature for connection B
Tb_indicated = (e_actual/e_assumed)^0.25 * Tb_actual
The indicated differential temperature between A and B dTab_indicated is given as
dT_ab_indicated = Ta_indicated-Tb_indicated = (e_actual/e_assumed)^0.25 * (Ta_actual-Tb_actual)
Expressing this in terms of the actual differential temperature (dTab_actual), we have
dT_ab_indicated = (e_actual/e_assumed)^0.25 * dTab_actual
Or equivalently.
dT_ab_actual = (e_assumed/e_actual)^.25 * dTab_indicated
Differential temperatures in C are equivalent to differential temperatues in K, so we can work direclty in C without needing to convert to absolute temperature K.
If indicated differential temperature is 44C using assumed (camera) emissivity of 1 but actual emissivity is 0.5, we have
dT_ab_actual = (e_assumed/e_actual)^.25 * dTab_indicated
dT_ab_actual = (1/0.5)^.25 * 44 C
dT_ab_actual = 52.3 C
The above seems right to me. But if I look at the 4/5/04 tip of the week at irinfo (How Delta T's Understate Priorities – Pt. 1) at the following address....
....I see they have analysed this exact situation and conclude the actual differential temperature is 70C.
So, either the tip of the week is wrong or I am wrong. If I had to bet, I would say that I must be wrong, but I can't find any error above. Can anyone shed some light?
=====================================
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Let's say we have two connections, A (suspect faulty connection) and B (reference normal connection).
Both have emissivity e_actual.
We set our camera to assign emissivity e_assumed for all points (camera setting does not match actual).
Connection A has actual temperature Ta_actual and emits radiosity Sa = sigma * e_actual*Ta_actual
Camera indicates Ta_indicated to produce the same radiosity based on assumed emisisivity
Sa = sigma * e_assumed*Ta_indicated^4 = sigma * e_actual*Ta_actual^4
Solving for Ta_indicated:
Ta_indicated = (e_actual/e_assumed)^0.25 * Ta_actual
Likewise we can find indicated temperature for connection B
Tb_indicated = (e_actual/e_assumed)^0.25 * Tb_actual
The indicated differential temperature between A and B dTab_indicated is given as
dT_ab_indicated = Ta_indicated-Tb_indicated = (e_actual/e_assumed)^0.25 * (Ta_actual-Tb_actual)
Expressing this in terms of the actual differential temperature (dTab_actual), we have
dT_ab_indicated = (e_actual/e_assumed)^0.25 * dTab_actual
Or equivalently.
dT_ab_actual = (e_assumed/e_actual)^.25 * dTab_indicated
Differential temperatures in C are equivalent to differential temperatues in K, so we can work direclty in C without needing to convert to absolute temperature K.
If indicated differential temperature is 44C using assumed (camera) emissivity of 1 but actual emissivity is 0.5, we have
dT_ab_actual = (e_assumed/e_actual)^.25 * dTab_indicated
dT_ab_actual = (1/0.5)^.25 * 44 C
dT_ab_actual = 52.3 C
The above seems right to me. But if I look at the 4/5/04 tip of the week at irinfo (How Delta T's Understate Priorities – Pt. 1) at the following address....
....I see they have analysed this exact situation and conclude the actual differential temperature is 70C.
So, either the tip of the week is wrong or I am wrong. If I had to bet, I would say that I must be wrong, but I can't find any error above. Can anyone shed some light?
=====================================
Eng-tips forums: The best place on the web for engineering discussions.