Energy performance and thermal comfort

Assignment Help Mechanical Engineering
Reference no: EM132088449

Topic - Assessments of Energy Performance and Thermal Comfort of the Non-residential Building

Project Scope:

The development of strategies for efficient and effective energy management in buildings is essential not only for reducing the cost of energy but also to save the environment. Effective HVAC control strategies should be developed for improved thermal energy management. Energy savings of up to 30% or even more can be achieved through introducing proper energy conservation measures (ECM) in existing building without compromising the indoor comfort. The speed and reliability of today's computers and the availability of suitable energy simulation software with optimization techniques have given us the opportunity to take advantage of thermal design of buildings and to make decision for energy conservation purposes.

According to Commercial Buildings Energy Code, about 65% of electrical energy is used for space conditioning in Australia. Rockhampton is a hot and humid area and Australian Bureau of Meteorology records show that in 2005 Rockhampton had the hottest temperature in this region in 37 years. This clearly indicates that the HVAC system of a building in this region has a huge potential for energy savings. Development of strategies for an efficient energy management is thus very important.

In this project, the student teams should aim to study energy management strategies for existing heating, ventilating and air conditioning (HVAC) systems of a reference building in Rockhampton, Queensland, Australia. The details of the building will be provided on the Moodle page. There are many factors to be considered when considering a HVAC system for a building or industry.
Some of these factors are:
- The comfortable conditions (temperature, humidity, air velocity, air quality, etc.)
- The installation method, operating procedure and maintenance
- The cooling and/or heating loads in each zone of the buildings or industry
- The method of controlling the system to ensure comfortable conditions maintained throughout
- The identification of energy conservation opportunities through better design, modifications, retrofitting, etc.

The amount of energy use in institutional/office buildings depends on the building envelope, operational efficiency of the HVAC system, fresh air requirement, lighting system and their efficiency, internal plug loads, building operation and maintenance. The first category is the base load, which can be defined as the non-weather dependent energy use. The other category is energy use in the air conditioning plants and systems. This requires the determination of how much energy is used for heating and cooling, through energy use associated with fans and pumps. The aim of this project is to exercise your theoretical thermo-fluid knowledge and skills in a practical application in building HVAC systems.


You are required to study, analyze and assess two suitable air-conditioning systems of the building located in sub-tropical climate which will offer improved thermal comfortability of the people. Relevant technical data and other information on the existing building will be available on Moodle. Note that any information that is not given is at the HVAC Engineers's discretion. Energy consumption profile and thermal comfort profile should be simulated using available Building Energy Performance Simulation Software, DesignBuilder. Students are required to develop a correlation with the thermal comfort and energy consumption profile for the given case and suggest the optimum level that meet the thermal comfortability index.

The software is available to download at www.designbuilder.co.uk and you can download a trial version free of charge. The trial version of the software is functional for four weeks only. You/ your team will receive the student license from the teaching team later in the term. The software is also accessible in the computer labs for the Engineering students.

Project Submission:
Your project outcomes should be presented in a technical report and the presentation. A team project report and a soft copy of the simulation results (DesignBuilder.dsb file).

1. Report submission for assessment should have at least the following items:
- Introduction (background information, aims, objectives, scopes & limitations etc.).
- Literature review on latest HVAC systems and their application to different types of buildings and industries
- Working principle of existing and proposed HVAC systems in the reference study building.
- Thermal comfort conditions, according to local climatic or weather data.
- Model development, system definition and classification of whole building into different thermal zones for HVAC control purposes.
- Compare results between single-zone and multi-zone model in the confined space.
- Simulation of energy consumption and indoor thermal environmental profile of the reference building with two suitable HVAC system for sub-tropical climate
- Evaluation of alternative HVAC systems alone with other ECMs in the simulation environment and develop a correlation with the thermal comfort and energy consumption profile for the given case and suggest the optimum level that meet the thermal comfortability index
- CFD analysis of temperature distribution in the reference building demonstrating that the comfort standard is achieved.

2. Project Presentation: Formal presentation of the Team project (10 minutes max)
- highlighting the findings from the project will happen a week prior to the final submission. All member of the teams are required to meet the formal dress code and contribute significantly during the presentation.

Verified Expert

Kindly find the attached technical part file, i hope there was some issues with your google drive. As per your request the literature review has been made longer and more literature study is incorporated. Also For your kind information Objective and Aim are interrelated so we have given a clear and neat objective/ Aim, the background and limitations are completely covered in the Introduction and the literature review.

Reference no: EM132088449

Questions Cloud

What do you think based on software testing : The prototype improves the control flow graph of a program and builds a transformed graph with fewer infeasible paths.
What are all the parts of a multipolar neuron : What are all the parts of a multipolar neuron and their specific functions?
Deciding which queue acustomer enters : Identify which of the authors' classes used for their Average Waiting Time (AWT) model is responsible for each of the seven items identified in #42.
Create a new function randomadd : Create a new function randomAdd(), which adds nodes in random places in the tree, and use that function instead.
Energy performance and thermal comfort : ENEM20003 - Thermofluids Engineering Applications - Development of strategies for efficient and effective energy management in buildings is essential
Write a program that multiplies two square arrays : A function that has an integer as a parameter and returns a pointer to square array of integers (i.e. both dimensions should be equal).
Find albums by genre released after a given year : Find albums by genre released after a given year. Order results by year (DESC). Display all information about each album.
What are the possible consequences if you fail to identify : What does a physical DFD represent? How do data stores in the physical DFD differ from the data stores in the logical DFD? Give an example.
Define autoimmunity and immunodeficiency : Define autoimmunity and immunodeficiency. Which of these conditions is likely to occur in a HIV positive person

Reviews

inf2088449

10/29/2018 2:26:55 AM

From the paper, it was clearly visible that the expert had read the questions and answered them as a graduate paper. Overall I got the best in a very affordable price. I would like all the students around the globe to use ExpertsMind to share their assignments and get the quality work done. thank expertsmind !!

len2088449

8/17/2018 4:14:53 AM

11. Conclusion and recommendation 5 12. Accurate and correct use and presentation of mathematical equations or graphs, tables, diagrams and/or drawings 5 13. Presentation, academic language, grammar, spelling, punctuation and appropriate referencing of sources 5 14. Oral presentation 5 Overall marks = 100

len2088449

8/17/2018 4:14:42 AM

6. Simulation of energy consumption and indoor thermal environmental profile of the reference building with two suitable HVAC system for sub-tropical climate 8 7. Compare results between single-zone and multi-zone model in the confined space 10 8. Evaluation of alternative HVAC systems along with other ECM in the simulation environment and develop a correlation with the thermal comfort and energy consumption profile for the given case and suggest the optimum level that meets the thermal comfortability index 10 9. CFD analysis of temperature distribution in the reference building demonstrating that the comfort standard is achieved 10 10. Discussion and logical presentation of ideas and arguments by means of data analysis and synthesis 10

len2088449

8/17/2018 4:14:33 AM

Please see the files an do the project according to the sample attached and project criteria. I can''t say the pages required Assessment Criteria Total Marks Team Marks Feedback 1. Introduction (background information, aims, objectives, scopes, limitations and report organization 7 2. Literature review on latest HVAC systems and their application to different types of buildings and industries 10 3. Working principle of existing and proposed HVAC systems in the reference study building 5 4. Thermal comfort conditions, according to local climatic or weather data 5 5. Model development, system definition, and classification of the whole building into different thermal zones for HVAC control purposes 5

Write a Review

Mechanical Engineering Questions & Answers

  Determine the value of the normal stress in each link

Solve Prob. 2.113, assuming that the magnitude of the force Q applied at B is gradually increased from zero to 260 kN and then decreased back to zero. Knowing that α = 0.640 m

  Water flow in pipe can be represented by the reynolds number

Water flow in a pipe can be represented by the Reynolds number Re which is dimensionless. The Reynolds number is determined by the equation Re= (w Vw Dp ) / ?w where:

  Calculate the proper diameter to prevent air entrainment

Pure Lead (density = 10, 500 kg/m3, and kinematic viscosity = 1.617X10-7 m/sec.) is poured into a sand mold. The metal level in the pouring basin is 200 mm above the metal level in the mold, and the runner is circular with a 12.7 mm diameter.

  Find the annual auxiliary heating energy needed by design

A 2000 ft2 house in Boston is being designed with NLC-12,000 Btu/F-day and 150 ft2 of direct gain.

  If we need to maintain the wire at a temperature of 250oc

a tungsten wire 0.005mm in dia and 2 mm in length is placed horizontal in stagnant air. if we need to maintain the wire

  Determine the frequency of the resulting vibration

The bar is given a small angular displacement from the equilibrium position shown and then released. Determine the frequency of the resulting vibration.

  Explain the use of the following processes

What mechanisms of diffusion play the most important role in the solid-state sintering of ceramics?

  A uniform rod has the length l200m the lateral surface area

a uniform rod has the length l200m. the lateral surface area of the rod is perfectly insulated. intially the rod has

  Determine the loss of available energy across the rotor

If the flowing fluid is water and the stagnation pressure drop across the rotor is 110 kPa, determine the loss of available energy across the rotor and the efficiency involved.

  The r-134a enters the valve as saturated liquid at a

an adiabatic throttle valve operates in a steady-state steady-flow condition with r-134a refrigerant at a flow rate of

  Show that this function satisfies the requirements of a

consider the following probability distribution function for a continuous random variablefx 3x6235 -2ltxlt-3

  A heat engine in each cycle absorbs energy from a reservoir

a heat engine in each cycle absorbs energy from a reservoir as heat and does an equivalent amount of work with no other

Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd