ENNR423-12S1 (C) Semester One 2012

Energy Engineering 2

12 points

Details:
Start Date: Monday, 20 February 2012
End Date: Sunday, 24 June 2012
Withdrawal Dates
Last Day to withdraw from this course:
  • Without financial penalty (full fee refund): Sunday, 4 March 2012
  • Without academic penalty (including no fee refund): Sunday, 20 May 2012

Description

Principles, applications and design of energy production using natural resources, especially wind, solar, hydro, biomass and geothermal. Energy conservation, demand, and policy. Energy and global environmental issues. Design of energy use systems.

Overview:  
Principles, applications and design of energy production using renewable resources, especially solar, wind, hydro, and biomass.  Low energy buildings.  Renewable energy on a global and New Zealand scale.  Field trips and guest speakers.

Learning Outcomes

On completion of this paper a student should be able to:

1. Describe and discuss the current and potential contribution of sustainable energy resources to the global and New Zealand energy scenes.
2. Analyse and quantify solar, biomass, wind and hydro resources for a given site.
3. Describe and discuss selected solar, wind, biomass and hydro conversion technologies, and carry out preliminary sizing calculations.
4. Describe and discuss suitable renewable systems for a given situation.
5. Describe, discuss and quantify energy efficiency and conservation strategies for the built environment.

Prerequisites

ENNR346

Course Coordinator / Lecturer

Ian Mason

Assessment

Assessment Due Date Percentage 
Assignment 1 (solar/wind) 26 Mar 2012 15%
Test 1 26 Apr 2012 15%
Assignment 2 (biomass/hydro) 21 May 2012 30%
Assignment 3 (lproject) 01 Jun 2012 30%
Test 2 15 Jun 2012 25%

Textbooks / Resources

Required Texts

Boyle, Godfrey. , Open University; Renewable energy ; 2nd ed; Oxford University Press in association with the Open University, 2004.

MacKay, DJC; Sustainable Energy - without the hot air ; UIT Cambridge, UK, 2008 (available free online at www.withouthotair.com).

Upton; A few facts about renewable energy ; 2004 (This will be provided as a handout).

Recommended Reading

Boyle, G; Renewable energy and the grid: The challenge of variability ; Earthscan, London UK, 2007.

Brown, Robert C; Biorenewable resources : engineering new products from agriculture ; 1st ed; Iowa State Press, 2003.

Duffie, John A. , Beckman, William A; Solar engineering of thermal processes ; 3rd ed; Wiley, 2006.

Eastop, T. D.; D.R. Croft; Energy efficiency : for engineers and technologists ; Harlow, Essex, England, 1990.

Manwell, J. F. , McGowan, J. G., Rogers, Anthony L; Wind energy explained : theory, design and application ; Wiley, 2002.

Van Loo, Sjaak. , Koppejan, Jaap; The handbook of biomass combustion and co-firing ; Earthscan, 2008.

Highly Recommended

Upton, S., 2004. A few facts about renewable energy.  Paper presented to the Resource Management Law Association Conference, Taupo, New Zealand. (this will be provided as a handout).

The following references are also relevant:

- Boyle, G., 2007 (Ed).  Renewable energy and the grid: the challenge of variability.  Earthscan, London, UK.
- Eastop, T D; Croft, D R., 1990. Energy efficiency: for engineers and technologists.  Longman Scientific & Technical.
- Gipe, P., 1999. Wind Energy Basics; a guide to small and micro wind systems.  Chelsea Green Publishing Co., White River Junction, USA.
- Henderson, C.F., 1986.  Fuel ethanol from sugar beet and fodder beet.  New Zealand Energy Research and Development Committee, Auckland, New Zealand.
- Johansson, T.B., 1993. Renewable energy : sources for fuels and electricity.  Earthscan Island Press.
- Judd, Barry, 2002. Biodiesel from tallow.  EECA web site.
- Judd, Barry, 2003. Feasibility of producing diesel fuels from biomass in NZ.  EECA web site.

Notes

Course co-ordination:
The course builds on material in ENNR346 (Energy Engineering 1).

Field Trips/Tutorials
UC: boiler house.  

Time Estimation:
Contact Time         Time (hr)                Estimated student workload     Time (hr)
Lectures                32                          Reading/review, 1.5 hr/lecture  48
Tutorials/Field trips 12                          Assignments                           60

Indicative Fees

Domestic fee $622.00

International fee $3,500.00

* All fees are inclusive of NZ GST or any equivalent overseas tax, and do not include any programme level discount or additional course-related expenses.

For further information see Civil and Natural Resources Engineering .

All ENNR423 Occurrences

  • ENNR423-12S1 (C) Semester One 2012