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  • Course No E – 1242
  • PDH Units 3.00

Course No E - 1242
PDH Units 3.00
$75.00

5
Profile Photo

  • Course No E – 1242
  • PDH Units 3.00

Course No E - 1242
PDH Units 3.00
$75.00

Intended Audience: Architectural, civil, structural, mechanical and electrical engineers; federal, state and local public works and officials;

PDH UNITS: 3

This course is an introduction to passive solar technology to heat buildings. It will tell you about the basic passive systems and climate considerations you need to know about. You will gain knowledge about guidelines for schematic design of passive solar buildings. You will learn the foundation you need to move forward with passive solar design as an integral part of your building design skills. Course Outline I. Systems A. Direct gain heating B. Daylighting C. Radiant panels D. Thermosiphoning air panels E. Thermal storage walls 1. Trombe walls 2. Concrete block walls 3. Water walls F. Sunspaces G. Incremental cooling load II. Climatic considerations A. Characteristic weather parameters B. Climate and conservation measures C. Solar availability III. Guidelines for schematic design A. Building shape and orientation B. East, west and north windows C. Passive heating system characteristics D. Sizing overhangs E. Insulation levels F. Infiltration G. Solar collection area H. Thermal storage mass Passive solar energy is one of the most efficient forms of energy in the world. Not only does it reduce the cost of energy for your company, agency or clients, it reduces the demand on limited global energy supplies and avoids carbon emissions and other global environmental impacts associated with energy production and utilization. Participants will learn about the basic systems and building features that can be used to passively heat buildings using solar energy. They will learn how to evaluate climate and solar availability to determine feasibility of cost-effective passive solar systems at specific project sites. And they will gain knowledge of guidelines to use in preparing feasibility studies for passive solar projects.

Learning Objectives

At the successful conclusion of this course, you’ll be able to identify and discuss:
  • Learn about direct gain heating systems
  • Learn about radiant panel systems
  • Learn about thermosiphoning air panel systems
  • Learn about thermal storage walls
  • Learn about sunspaces
  • Learn about characteristic weather parameters
  • Learn about climate and conservation measures
  • Learn about solar availability
  • Learn about guidelines for schematic design

Course Reviews

5

5
1 ratings
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  1. Richard L. Scott12/30/2020 at 1:40 pm
    Useful design guidance for your passive thermal building
    5

    Useful insight into design aspects of a passive solar building. For some of us our post college professions do not contribute much to our practical knowledge base that supports/facilitates day-to-day living (example: Aerospace Engineer working on propulsion systems for military aircraft). This course provides knowledge that you can use in your day-today life to improve the thermal efficiency and energy usage in your very own home. Much of what is presented here is common sense. This course helps to clearly lay out and incrementally organize how to approach a passive solar design in your own building.

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https://nciteengineeringhub.com/course/live-webinar-essentials-of-photovoltaic-system-design/

ACCEPTANCE GUARANTEE


ncees

Ncite Engineering Hub engineering courses & live webinars meet NCEES Guidelines for Professional Engineer licenses renewal in all 50 states.

Ncite Engineering Hub will refund your money if the PDH credits you earn are rejected by your state board for any reason.

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