RedVector JCOM-00164

Sustainable Building Technology: Systems, Resilience, and Emerging Practices

Sustainable Building Technology: Systems, Resilience, and Emerging Practices

2 hrs. Online Course

Level: Intermediate

Item#: JCOM-00164

SME: Jim Taube

This course explores sustainable building performance beyond basic energy efficiency, covering high-performance envelopes, daylighting, HVAC, electrification, water efficiency, automation, metering, commissioning, renewable energy, storage, and life-cycle decision-making. Designers examine how codes, standards, and benchmarking tools shape design and operations, with an emphasis on near-zero carbon, people, and resilience. The course focuses on integrated design, trade-offs, and performance verification, linking decisions to energy use, emissions, resilience, occupant well-being, costs, and long-term value.
Course Objectives

By the end of this course, you will be able to:

  • Explain sustainable building design principles in relation to decarbonization, resilience, occupant health, resource conservation, and long-term building performance
  • Interpret the role of current model codes, standards, rating systems, and benchmarking tools in sustainable building design and operations, including ASHRAE® standards, the International Energy Conservation Code®, LEED® v5, and ENERGY STAR® Portfolio Manager®
  • Describe how building envelope assemblies affect energy use, occupant comfort, durability, and HVAC loads, including the impacts of insulation, airtightness, glazing, thermal bridging, vapor control, and moisture management
  • Apply daylighting, LED lighting, and advanced lighting-control fundamentals to improve energy performance, visual comfort, and operational flexibility
  • Analyze HVAC system design, zoning, ventilation, filtration, indoor air quality monitoring, dedicated outdoor air systems, and energy recovery strategies as part of a whole-building performance approach
  • Compare electrification strategies, heat pump technologies, central plant systems, refrigerant considerations, and low-carbon HVAC approaches for different building applications
  • Describe water distribution, conservation, smart monitoring, leak detection, reuse strategies, and public-health considerations that support sustainable water performance
  • Evaluate how building automation, smart analytics, fault detection, trend data, and optimized control sequences support efficient and reliable building operations
  • Apply metering, measurement, and verification, commissioning, retro commissioning, and ongoing performance optimization practices to support building performance goals
  • Evaluate how renewable energy, battery storage, demand response, and life-cycle cost decision-making contribute to resilient, low-carbon building operations
SUBJECT MATTER EXPERT: Jim Taube
Jim Taube Photo
Jim possesses degrees in Civil & Environmental Engineering from Clarkson University in New York and Electrical Power Technology from Bismarck State College.
 
He has extensive industrial experience with 23 years in the pulp and paper industry and 12 years in institutional and pharmaceutical facility management.
 
His responsibilities have included engineering design, electrical and mechanical maintenance, and power plant utilities management.
 
Areas of expertise include HVAC design, commissioning and qualification, construction administration, and energy cost savings initiatives.
 
Jim’s credentials include being registered as a Professional Engineer and the Certified Energy Manager and Auditor certifications.
 
Jim is married and lives in Middletown, OH and has 4 married children.
State Licenses
AK - Engineer (General)
AL - Engineer (General)
AR - Engineer (General)
DE - Engineer (General)
FL - Engineer (General - 0000272)
Accreditation: This course explores sustainable building performance beyond basic energy efficiency, covering high-performance envelopes, HVAC, electrification, water efficiency, renewable energy, commissioning, and life-cycle decision-making. It emphasizes integrated design, near-zero carbon, and resilience, linking decisions to emissions, occupant well-being, costs, and long-term value.
GA - Engineer (General)
IA - Engineer (General)
ID - Engineer (General)
IL - Engineer, Professional (General)
IL - Engineer, Structural (General)
KS - Engineer (Health, Safety & Welfare)
KY - Engineer (General)
LA - Engineer (General)
MD - Engineer (General)
ME - Engineer (General)
MI - Engineer (General)
MN - Engineer (General)
MO - Engineer (General)
MS - Engineer (General)
MT - Engineer (General)
NC - Engineer (General)
ND - Engineer (Health, Safety & Welfare)
NE - Engineer (General)
Accreditation: Vector Solutions is authorized by IACET to offer 0.2 CEUs for this program.
NH - Engineer (General)
NJ - Engineer (General - 24GP000006300)
NM - Engineer (General)
NV - Engineer (General)
NY - Engineer (General)
Accreditation: Vector Solutions is authorized by IACET to offer 0.2 CEUs for this program.
OH - Engineer (General)
OK - Engineer (General)
OR - Engineer (General)
PA - Code Official,Certified (UCC) (General)
PA - Engineer (General)
PR - Engineer (General)
SC - Engineer (General)
SD - Engineer (General)
TN - Engineer (Health, Safety & Welfare)
TX - Engineer (General)
UT - Engineer (General)
VA - Engineer (General)
VT - Engineer (General)
WI - Engineer (General)
WV - Engineer (General)
WY - Engineer (General)
Professional Organizations
American Academy of Environmental Engineers - AAEES - Member (General)
American Hospital Association - AHA - Certified Healthcare Facility Manager (CHFM) (General)
American Institute of Certified Planners/American Planning Association - AICP - Certified Planners (General - 9334021)
American Society of Civil Engineers - ASCE - American Academy of Water Resources Engineer (AAWRE) (Sustainable Design / Energy-Efficient Design)
Association of Energy Engineers - AEE - Certification (Technical)
Canada - Alberta Engineer (General)
Canada - British Columbia Engineer (General)
Canada - Manitoba Engineer (General)
Canada - New Brunswick Engineer (General)
Canada - Newfoundland and Labrador Engineer (General)
Canada - Northwest Territories and Nunavut Engineer (General)
Canada - Nova Scotia Engineer (General)
Canada - Ontario Engineer (General)
Canada - Prince Edward Island Engineer (General)
Canada - Quebec Engineer (General)
Canada - Saskatchewan Engineer (General)
Canada - Yukon Engineer (General)
Green Business Certification Inc. - GBCI - LEED Accredited Professional (AP BD+C) (General)
Green Business Certification Inc. - GBCI - LEED Accredited Professional (AP Homes) (General)
Green Business Certification Inc. - GBCI - LEED Accredited Professional (AP ID+C) (General)
Green Business Certification Inc. - GBCI - LEED Accredited Professional (AP ND) (General)
Green Business Certification Inc. - GBCI - LEED Accredited Professional (AP O+M) (General)
Green Business Certification Inc. - GBCI - LEED Green Associate (GA) (General)
Green Business Certification Inc. - GBCI - WELL Accredited Professional (AP) (General)
Institute for Sustainable Infrastructure - Envision Sustainability Professional (ENV SP) (Sustainable Design / Energy-Efficient Design)
International Facility Management Association - IFMA - Certified Facility Manager (CFM) (General)
International Maintenance Institute - IMI - Certifications (CMT, CMP, CMM, CWWMT) (General)
International Society of Automation - ISA - Certifications (General)
National Institute for Certification in Engineering Technologies - NICET (General)