Question #5 (Similar to Question #4, You solved, I have attached the question #4) Design a question to calculate the heating load for the building you selected indoor Environment Quality (IEQ) assessment. You will define the types of heat loss (at least two types) in that building (or the floor you are working on or you are familiar with). The indoor temperature is set as 75 F, and you can assume the outdoor temperature based on the location of your building in the winter and any other numbers needed to resolve this question. For all the details as well as the final answer that this question is asking for, clearly indicate the unit for each piece of information.

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter1: Basic Modes Of Heat Transfer
Section: Chapter Questions
Problem 1.3DP
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Question #5 (Similar to Question #4, You solved, I have attached the question #4)
Design a question to calculate the heating load for the building you selected indoor Environment Quality (IEQ) assessment. You will define the types of heat loss (at least two types) in that building (or the floor you are working on or you are familiar with). The indoor temperature is set as 75 F, and you can assume the outdoor temperature based on the location of your building in the winter and any other numbers needed to resolve this question. For all the details as well as the final answer that this question is asking for, clearly indicate the unit for each piece of information.

Energy and system size calculation
TEQ assessmm (4.1) Design a question to calculate the cooling load for the building you selected for
You will define at least FOUR types of heat gain in that building (or the floor you
are working on or you are familiar with). The indoor temperature is set as 75 F, and you
can assume the outdoor temperature based on the location of your building in the
summer and any other numbers needed to resolve this question.
(4.2) Calculate the corresponding cooling load for the question you designed above.
For all the details as well as the final answer that this question is asking for, clearly
indicate the unit for each piece of information. In a word, you will design a question for
your building about cooling load calculation. Assumptions and/or supporting
drawings/figures/tables are allowed and encouraged. You can decide the level of detail
for this question, e.g., the more details and the more accurate information, the more
accurate and realistic your answer would be. As we mentioned in lectures, key modeling
assumptions and simplifications used in building energy modeling will affect the accuracy
and reliability of the model and results. Then you will need to solve the question you
designed.
Transcribed Image Text:Energy and system size calculation TEQ assessmm (4.1) Design a question to calculate the cooling load for the building you selected for You will define at least FOUR types of heat gain in that building (or the floor you are working on or you are familiar with). The indoor temperature is set as 75 F, and you can assume the outdoor temperature based on the location of your building in the summer and any other numbers needed to resolve this question. (4.2) Calculate the corresponding cooling load for the question you designed above. For all the details as well as the final answer that this question is asking for, clearly indicate the unit for each piece of information. In a word, you will design a question for your building about cooling load calculation. Assumptions and/or supporting drawings/figures/tables are allowed and encouraged. You can decide the level of detail for this question, e.g., the more details and the more accurate information, the more accurate and realistic your answer would be. As we mentioned in lectures, key modeling assumptions and simplifications used in building energy modeling will affect the accuracy and reliability of the model and results. Then you will need to solve the question you designed.
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