flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Understanding retro commissioning

Engineers

Understanding retro commissioning

For owners of existing buildings, retrocommissioning creates a baseline to compare future building energy consumption. 


By Davide Vettraino and Michael Morrissey, NV5 | February 24, 2017

Sub-metering refers to monitoring systems added on specific equipment, systems, processes, or floors to determine where energy is being used. Tracking energy consumption through sub-metering is currently at a 40—60% ratio of clients who do and do not install sub-metering.

One of the biggest criticisms of the LEED process is its claim that using it will help save on operating costs, while in fact, many projects don’t reach that goal. Of course, until a building is completed and systems begin to operate, the owner doesn’t know how much energy the building really uses. Once a building has some history, energy models can be modified to make better projections for the building’s energy consumption. But the owner may not get all the answers if adequate metering systems are not in place to measure the energy loads of the building.

The best way to track sources of energy consumption and verify any savings is to install some type of sub-metering. Before this can be done in existing buildings, the building owner needs to consider the many factors that pour into energy usage and how to track them. This can be done through the process of retrocommissioning, which typically has three phases: planning, investigation, and implementation. It starts with evaluation of the building and its systems which can include heating, ventilation, cooling, electrical, and control and cabling systems.

Retrocommissioning is basically redoing the commissioning process by looking at how the building systems are operating (by installing temporary metering equipment), identifying the optimal performance for equipment and fine tuning everything. This can be quite a challenge since existing buildings may have a variety of equipment that may have been installed at different times. It might mean replacing older or poorly working systems or getting new and old systems working together.

Evaluating options

An energy audit is the first step in determining where building owners want to save money and what they are trying to accomplish. Through a step-by-step process, we look at how energy is being used. Then we identify opportunities for change and work with clients to choose which ones to implement. Our energy audits are done through the multi-level ASHRAE system.  Level 1 is a walk-through analysis; Level 2 is the energy survey and analysis; and Level 3 is the detailed analysis with a list of suggested capital modifications.  Usually Level 2 is where the core of the work gets done.

THE PROCESS
Retrocommissioning is a method of reviewing existing building operating systems, identifying optimal performance and establishing a step-by-step process for improvement. 
• Determine objectives
• Evaluate current systems
• Install monitoring as needed
• Identify optimal performance factors
• Create implementation plan and documentation

This process creates a dashboard for evaluating operating systems and a plan to optimize energy usage. A number of different programs can be set up to monitor what the building is doing so issues can be corrected. Having an information control system in place also means being able to troubleshoot items faster.  Part of that means having algorithms built into the building management system.  For instance, if there are 20 air handlers running and one of the units starts to operate outside the system set points, the algorithm that continuously reviews the units operation, notifies the facility operator of the issue, so the operator can investigate and take corrective measures.

Another building management system algorithm that is sometimes used can track when people arrive at the building(s) in the morning and set the systems to warm the building(s) up in a more efficient manner. Trying to tweak things like this means learning the behavior of building occupants to optimize programs.

Motion sensors and occupancy control systems can also help and have become very popular. Now, there is a big push to have controls on electric outlets so they will turn off when the building is in unoccupied mode to reduce plug loads. Given the number of outlets in most buildings, this can be a very expensive proposition. As we try to get to net zero, concepts like this can help control what the end user does in the building, but all have a cost that may or may not be offset by energy savings.

Monitoring systems

We find it really comes down to having an engineered systematic approach that involves putting in sub-metering to monitor where the energy is being used for both electric and gas. Every utility has a meter. Sub-metering refers to the monitoring system that is added on specific equipment, systems, processes, or floors. Some clients install extensive sub-metering while others choose a simple one, depending on cost to install and the projected payback.

Tracking energy consumption through sub-metering is currently at a 40-to-60 percent ratio of clients who do and those who do not install sub-metering in their projects. As price per kilowatt hour increases, metering is becoming more prevalent because it gives building owners the information they need to bring down usage costs. The types of buildings most viable for sub-metering include laboratory environments, such as pharmaceutical research and development, data centers, and commercial real estate.

Regional factors

Retrocommissioning and continuously monitoring (commissioning) systems are becoming more attractive in certain geographical areas as well.  In the Northeastern United States, for example, it comes down to environment and utility rates. The energy usage is higher and rates are higher in this area, making it much more attractive for building owners to use these programs. In our experience, retrocommissioning has achieved between 30 and 40 percent cost savings.

If an owner can get a rebate for buying new equipment such as a chiller, that can mean additional benefits. New York City has programs that help consumers based on local laws (LLs).  This includes LL84 which calls for benchmarking the property; LL85 that deals with energy conservation; LL87 that encourages energy audits when you retrocommission; and LL88 for metering. These laws apply when a building owner goes through the program and applies for rebates related to it. This is just one example of how utility, city, or state programs are proving helpful.

Long-term payback

The benefits of retrocommissioning are ongoing. Upon completion of retrocommissioning, the team identifies low cost and approved items based on their investigation and will work with the client through implementation. This will sometimes include developing a systems manual for all the installed equipment. This manual is used in training the facilities staff to understand the best practices for the operation and maintenance of these new systems.

For owners of existing buildings, retrocommissioning creates a baseline to compare future building energy consumption. Continuously monitoring systems can be installed to maintain the building improved performance and to identity issues faster and more efficiently. 

 

DAVIDE VETTRAINO is Vice President, Regional Business Unit Leader, NV5 Northeast Region in Woburn, MA. He has more than 30 years of experience providing strategic leadership to high-growth organizations and is currently principal-in-charge of the Boston location, responsible for strategic planning, client relationships and professional development. He implements initiatives to improve quality, client satisfaction, and bottom-line financial performance. He can be reached at dvettraino@sebesta.com.


MICHAEL MORRISSEY, LEED AP, BSC is Senior Group Leader, NV5 Northeast region. He has more than 27 years of experience in the engineering field, in design, construction, and commissioning and is a LEED Accredited Professional; NEBB Certified Professional for Building System Commissioning; American Society of Heating, Refrigerating, and Air-Conditioning Engineers (ASHRAE). His specialties include commissioning, LEED consulting and administration, retro-commissioning, TAB (NEBB), O&M operations and support services energy management, HVAC system design, healthcare and lab facilities. He can be reached at mmorrissey@sebesta.com.

Tags

Related Stories

Energy Efficiency | Aug 9, 2024

Artificial intelligence could help reduce energy consumption by as much as 40% by 2050

Artificial intelligence could help U.S. buildings to significantly reduce energy consumption and carbon emissions, according to a paper by researchers at the Lawrence Berkeley National Laboratory.

Sponsored | Healthcare Facilities | Aug 8, 2024

U.S. healthcare building sector trends and innovations for 2024-2025

As new medicines, treatment regimens, and clinical protocols radically alter the medical world, facilities and building environments in which they take form are similarly evolving rapidly. Innovations and trends related to products, materials, assemblies, and building systems for the U.S. healthcare building sector have opened new avenues for better care delivery. Discussions with leading healthcare architecture, engineering, and construction (AEC) firms and owners-operators offer insights into some of the most promising directions. This course is worth 1.0 AIA/HSW learning unit.

Data Centers | Aug 8, 2024

Global edge data center market to cross $300 billion by 2026, says JLL

Technological megatrends, including IoT and generative AI, will require computing power to be closer to data generation and consumption, fueling growth of edge IT infrastructure, according to a new JLL report.

K-12 Schools | Aug 8, 2024

New K-12 STEM center hosts robotics learning, competitions in Houston suburb

A new K-12 STEM Center in a Houston suburb is the venue for robotics learning and competitions along with education about other STEM subjects. An unused storage building was transformed into a lively space for students to immerse themselves in STEM subjects. Located in Texas City, the ISD Marathon STEM and Robotics Center is the first of its kind in the district. 

Green | Aug 7, 2024

Major cities worldwide set building performance standards

Cities around the world are setting building performance standards (BPS) as a key measure to cut emissions and meet climate targets, according to a report from JLL.

Education Facilities | Aug 4, 2024

A former supersonic wind tunnel becomes a new educational facility for transportation design

The Mullin Transportation Design Center at ArtCenter College of Design in Pasadena, Calif., provides access for full-scale vehicular models, replicating a professional design studio.

University Buildings | Aug 1, 2024

UC Riverside’s student health center provides an environment on par with major medical centers

The University of California, Riverside's new Student Health and Counseling Center (SHCC) provides a holistic approach to wellness for students throughout the UC Riverside campus. Designed by HGA and delivered through a design-build partnership with Turner Construction Company, SHCC provides healthcare offerings in an environment on par with major medical centers.

MFPRO+ News | Aug 1, 2024

Canada tries massive incentive program to spur new multifamily housing construction

Canada has taken the unprecedented step of offering billions in infrastructure funds to communities in return for eliminating single-family housing zoning.

Government Buildings | Aug 1, 2024

One of the country’s first all-electric fire stations will use no outside energy sources

Charlotte, N.C.’s new Fire Station #30 will be one of the country’s first all-electric fire stations, using no outside energy sources other than diesel fuel for one or two of the fire trucks. Multiple energy sources will power the station, including solar roof panels and geothermal wells. The two-story building features three truck bays, two fire poles, dispatch area, contamination room, and gear storage.

Contractors | Aug 1, 2024

Nonresidential construction spending decreased 0.2% in June

National nonresidential construction spending declined 0.2% in June, according to an Associated Builders and Contractors analysis of data published today by the U.S. Census Bureau. On a seasonally adjusted annualized basis, nonresidential spending totaled $1.21 trillion. Nonresidential construction has expanded 5.3% from a year ago.

boombox1
boombox2
native1

More In Category




halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021