EX-10.2 9 ex102d3.htm EXHIBIT D-3 TO EXHIBIT 10.2

MG&E Turbine Supply Agreement, Exhibit D.3.1



Tower Drawing


Description: Schematic drawing of wind tower.





MG&E Turbine Supply Agreement, Exhibit D.3.2

TOWER FOUNDATION DESIGN BASIS

V82 80-METER IEC IIA WIND TURBINES

JOICE, IOWA

INTRODUCTION

This document contains information relevant to the structural design of foundations for Vestas

V82 IEC IIA wind turbines to be installed on 80-meter HH towers in Joice, Iowa

FUNCTIONAL REQUIREMENTS

The wind turbine foundation shall provide adequate serviceability, strength and stability for a

design service life of 20 years. The maximum allowable permanent rotation of the foundation

due to differential settlement is 0.17º. All foundations must be designed with a capped drainage

system to allow for drainage of water/condensation out of the base of the tower.  The drain cap

must be water-tight to prevent leaks in the event that hazardous materials (such as oil) are spilled

in the tower. Foundation drawings shall include a requirement for corrosion protection (such as

anchor-bolt caps) of the exposed portion of the anchor bolts above the tower base flange.

DESIGN INPUTS

It is the engineer’s responsibility to account for site factors such as proximity to bodies of water,

topography, etc. in the tower and foundation designs.

Design loads exerted on the wind turbine foundation are included as Figure 1. The loads

provided in Figure 1 are applicable to Tower Dwg. 759075, rev 0.  Design load combinations

and load factors must be applied as required by Code.

A geotechnical report for this site has not been made available to Vestas.  The foundation

engineer of record must obtain a geotechnical report from the developer and/or general

contractor. The tower and foundation must be designed based on the recommendations and site

conditions as described in the geotechnical report. Any variance from the geotechnical

recommendations shall be approved in writing by Vestas.

The base flange layout to be used for design of the foundation is attached to this document as

Figure 2.

A typical conduit layout diagram is attached as Figure 3.  This document is to serve as a

guideline only and should not be used for construction.

A foundation anchor bolt leveling template drawing and purchasing specification are attached as

Figure 4.  The anchor bolt leveling template is intended for use during construction to align and

level the anchor bolts.  It is not intended to be a permanent component of the foundation.

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

DESIGN REQUIREMENTS

The wind turbine foundation shall be designed to meet the requirements of the latest editions of

the International Building Code, ACI 318 and any related amendments issued at the State or

local level.  It is the engineer’s responsibility to determine whether any codes relating to the

design of wind turbine foundations in addition to those listed above are enforced by the building

department with jurisdiction over the project.  If additional code(s) are enforced, Vestas shall be

notified, and the foundation shall be designed to meet the requirements of the additional code(s).

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

FIGURE 1 – DESIGN LOADS

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

FIGURE 2 – TOWER BASE FLANGE SECTION

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

FIGURE 3 – TYPICAL CONDUIT LAYOUT

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

FIGURE 4 – ANCHOR BOLT LEVELING TEMPLATE

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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MG&E Turbine Supply Agreement, Exhibit D.3.2

VESTAS AMERICAN WIND TECHNOLOGY

DESIGN BASIS

V82 – JOICE, IOWA

9/11/2006

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