19 research outputs found

    Sustainability Planning of IIT Buildings (semester?), IPRO 320: Energy and sustainability for IIT Campus IPRO 320 Final Report S06

    No full text
    The main objectives of this project are to gather Heating Ventilation and Air Conditioning performance data (Temperature, Humidity, Air Speed, Light) of each building on campus and to analyze it to provide feasible solutions to the problems found.Deliverables for IPRO 320: Sustainability Planning of IIT Buildings for the Summer 2006 semeste

    Sustainability Planning of IIT Buildings (semester?), IPRO 320: Energy and sustainability for IIT Campus IPRO 320 Poster S06

    No full text
    The main objectives of this project are to gather Heating Ventilation and Air Conditioning performance data (Temperature, Humidity, Air Speed, Light) of each building on campus and to analyze it to provide feasible solutions to the problems found.Deliverables for IPRO 320: Sustainability Planning of IIT Buildings for the Summer 2006 semeste

    Sustainability Planning of IIT Buildings (semester?), IPRO 320

    No full text
    The main objectives of this project are to gather Heating Ventilation and Air Conditioning performance data (Temperature, Humidity, Air Speed, Light) of each building on campus and to analyze it to provide feasible solutions to the problems found.Deliverables for IPRO 320: Sustainability Planning of IIT Buildings for the Summer 2006 semeste

    Sustainability Planning of IIT Buildings (semester?), IPRO 320: Energy and sustainability for IIT Campus IPRO 320 IPRO Day Presentation S06

    No full text
    The main objectives of this project are to gather Heating Ventilation and Air Conditioning performance data (Temperature, Humidity, Air Speed, Light) of each building on campus and to analyze it to provide feasible solutions to the problems found.Deliverables for IPRO 320: Sustainability Planning of IIT Buildings for the Summer 2006 semeste

    Sustainability Planning of IIT Buildings (semester?), IPRO 320: Energy and sustainability for IIT Campus IPRO 320 Midterm Report S06

    No full text
    The main objectives of this project are to gather Heating Ventilation and Air Conditioning performance data (Temperature, Humidity, Air Speed, Light) of each building on campus and to analyze it to provide feasible solutions to the problems found.Deliverables for IPRO 320: Sustainability Planning of IIT Buildings for the Summer 2006 semeste

    Technical and Market Integration of Wind Energy (semester?), IPRO 344: Wind Farm IPRO 344 Final Report F06

    No full text
    The objective of IPRO-344 is the design of a wind turbine. To accomplish this, the following tasks must be completed: ï‚· Selection of an appropriate site, taking into account wind availability, proximity to transmission lines, environmental impact, and the selling price of electricity at the location. ï‚· Mechanical design of the wind turbine, including the blades, turbine, and tower. ï‚· Electrical design of the generator, grid interconnection, and control system. ï‚· A study of the economics of the design, including a life-cycle cost analysis.Sponsorship: Michael Polsky, Invenergy LLCDeliverables for IPRO 344: Technical and Market Integration of Wind Energy for the Fall 2006 semeste

    Technical and Market Integration of Wind Energy (semester?), IPRO 344: Wind Farm IPRO 344 IPRO Day Presentation F06

    No full text
    The objective of IPRO-344 is the design of a wind turbine. To accomplish this, the following tasks must be completed: ï‚· Selection of an appropriate site, taking into account wind availability, proximity to transmission lines, environmental impact, and the selling price of electricity at the location. ï‚· Mechanical design of the wind turbine, including the blades, turbine, and tower. ï‚· Electrical design of the generator, grid interconnection, and control system. ï‚· A study of the economics of the design, including a life-cycle cost analysis.Sponsorship: Michael Polsky, Invenergy LLCDeliverables for IPRO 344: Technical and Market Integration of Wind Energy for the Fall 2006 semeste

    Technical and Market Integration of Wind Energy (semester?), IPRO 344

    No full text
    The objective of IPRO-344 is the design of a wind turbine. To accomplish this, the following tasks must be completed: ï‚· Selection of an appropriate site, taking into account wind availability, proximity to transmission lines, environmental impact, and the selling price of electricity at the location. ï‚· Mechanical design of the wind turbine, including the blades, turbine, and tower. ï‚· Electrical design of the generator, grid interconnection, and control system. ï‚· A study of the economics of the design, including a life-cycle cost analysis.Sponsorship: Michael Polsky, Invenergy LLCDeliverables for IPRO 344: Technical and Market Integration of Wind Energy for the Fall 2006 semeste

    Technical and Market Integration of Wind Energy (semester?), IPRO 344: Wind Farm IPRO 344 Poster F06

    No full text
    The objective of IPRO-344 is the design of a wind turbine. To accomplish this, the following tasks must be completed: ï‚· Selection of an appropriate site, taking into account wind availability, proximity to transmission lines, environmental impact, and the selling price of electricity at the location. ï‚· Mechanical design of the wind turbine, including the blades, turbine, and tower. ï‚· Electrical design of the generator, grid interconnection, and control system. ï‚· A study of the economics of the design, including a life-cycle cost analysis.Sponsorship: Michael Polsky, Invenergy LLCDeliverables for IPRO 344: Technical and Market Integration of Wind Energy for the Fall 2006 semeste

    Technical and Market Integration of Wind Energy (semester?), IPRO 344: Wind Farm IPRO 344 Midterm Report F06

    No full text
    The objective of IPRO-344 is the design of a wind turbine. To accomplish this, the following tasks must be completed: ï‚· Selection of an appropriate site, taking into account wind availability, proximity to transmission lines, environmental impact, and the selling price of electricity at the location. ï‚· Mechanical design of the wind turbine, including the blades, turbine, and tower. ï‚· Electrical design of the generator, grid interconnection, and control system. ï‚· A study of the economics of the design, including a life-cycle cost analysis.Sponsorship: Michael Polsky, Invenergy LLCDeliverables for IPRO 344: Technical and Market Integration of Wind Energy for the Fall 2006 semeste
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