LEED BD+C Integrative Process. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 1

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LEED BD+C Integrative Process Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 1

IP Prerequisite Integrative Project Planning and Design HC Intent Maximize opportunities for integrated, cost-effective adoption of green design and construction strategies, emphasizing human health as a fundamental evaluative criterion for building design, construction and operational strategies. Utilize innovative approaches and techniques for green design and construction. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 2

IP Prerequisite Integrative Project Planning and Design HC Requirements Use cross-discipline design and decision making, beginning in the programming and pre-design phase. At a minimum, ensure the following process: Owner s Project Requirements Document. Prepare an Owner s Project Requirements (OPR) document. Develop a health mission statement and incorporate it in the OPR. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 3

IP Prerequisite Integrative Project Planning and Design HC The health mission statement must address "triple bottom line" values economic, environmental and social. Include goals and strategies to safeguard the health of building occupants, the local community and the global environment, while creating a high-performance healing environment for the building s patients, caregivers and staff. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 4

IP Prerequisite Integrative Project Planning and Design HC Preliminary Rating Goals. As early as practical and preferably before schematic design, conduct a preliminary LEED meeting with a minimum of four key project team members and the owner or owner s representative. As part of the meeting, create a LEED action plan that, at a minimum: Determines the LEED certification level to pursue (Certified, Silver, Gold, or Platinum); Selects the LEED credits to meet the targeted certification level; and Identifies the responsible parties to ensure the LEED requirements for each prerequisite and selected credit are met. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 5

IP Prerequisite Integrative Project Planning and Design HC Integrated Project Team. Assemble an integrated project team and include as many of the following professionals as feasible (minimum of four), in addition to the owner or owner s representative. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 6

IP Prerequisite Integrative Project Planning and Design HC Design Charrette. As early as practical and preferably before schematic design, conduct a minimum four-hour, integrated design charrette with the project team as defined above. The goal is to optimize the integration of green strategies across all aspects of building design, construction and operations, drawing on the expertise of all participants. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 7

Intent To support high-performance, cost-effective project outcomes through an early analysis of the interrelationships among systems. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 8

Requirements Beginning in pre-design and continuing throughout the design phases, identify and use opportunities to achieve synergies across disciplines and building systems. Use the analyses described below to inform the owner s project requirements (OPR), basis of design (BOD), design documents, and construction documents. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 9

Energy-Related Systems Discovery: Perform a preliminary simple box energy modeling analysis before the completion of schematic design that explores how to reduce energy loads in the building and accomplish related sustainability goals by questioning default assumptions. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 10

Assess at least two potential strategies associated with the following: Site conditions. Assess shading, exterior lighting, hardscape, landscaping, and adjacent site conditions. Massing and orientation. Assess massing and orientation affect HVAC sizing, energy consumption, lighting, and renewable energy opportunities. Basic envelope attributes. Assess insulation values, window-to-wall ratios, glazing characteristics, shading, and window operability. Lighting levels. Assess interior surface reflectance values and lighting levels in occupied spaces. Thermal comfort ranges. Assess thermal comfort range options. Plug and process load needs. Assess reducing plug and process loads through programmatic solutions (e.g., equipment and purchasing policies, layout options). Programmatic and operational parameters. Assess multifunctioning spaces, operating schedules, space allotment per person, teleworking, reduction of building area, and anticipated operations and maintenance. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 11

Implementation: Document how the above analysis informed design and building form decisions in the project s OPR and BOD and the eventual design of the project, including the following, as applicable: Building and site program; Building form and geometry; Building envelope and façade treatments on different orientations; Elimination and/or significant downsizing of building systems (e.g., HVAC, lighting, controls, Exterior materials, interior finishes, and functional program elements); and Other systems AND Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 12

Water-Related Systems Discovery: Perform a preliminary water budget analysis before the completion of schematic design that explores how to reduce potable water loads in the building and accomplish related sustainability goals. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 13

Assess and estimate the project s potential nonpotable water supply sources and water demand volumes, including the following: Indoor water demand. Assess flow and flush fixture design case demand volumes, calculated in accordance with WE Prerequisite Indoor Water Use Reduction. Outdoor water demand. Assess landscape irrigation design case demand volume calculated in accordance with WE Credit Outdoor Water-Use Reduction. Process water demand. Assess kitchen, laundry, cooling tower, and other equipment demand volumes, as applicable. Supply sources. Assess all potential nonpotable water supply source volumes, such as on-site rainwater and graywater, municipally supplied nonpotable water, and HVAC equipment condensate. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 14

Implementation: Document how the above analysis informed building and site design decisions in the project s OPR and BOD. Demonstrate how at least one on-site nonpotable water supply source was used to reduce the burden on municipal supply or wastewater treatment systems by contributing to at least two of the water demand components listed above. Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 15

Demonstrate how the analysis informed the design of the project, including the following, as applicable: plumbing systems; sewage conveyance and/or on-site treatment systems; rainwater quantity and quality management systems; landscaping, irrigation, and site elements; roofing systems and/or building form and geometry; and other systems Lori A. Brown, LEED AP BD+C Power Jam Study! Lorisweb.com 16