Projects include space retrofit designs, energy system/ Combined Heat and Power (CHP) assessment. Commercial facility services include Energy Efficiency Auditing, Back Flow Prevention, Engery System replacement and Heat and Power. Services include CHP projects to improve facility efficiency, optimize cost and reduce carbon footprints. Residential campus facility services include energy efficiency auditing, energy system replacement and on/off grid connection.
We believe the right energy solutions can only be identified by focusing on the goals of our clients and the requirements of their facilities. This results in solutions that fit client financial and operational objectives while optimizing energy use and cost. At DSMEA, we refer to our services as Low Carbon Engineering. Whether it's combined with other carbon atoms or with different elements like hydrogen, carbon bonds with it's neighbors in unique ways, so the outcome makes the best of each part.
At DSM, we see the flexibility of carbon as a model for how we find solutions for our clients - through the right combination of expertise, experience, and as much innovation as we can squeeze in.
We believe the right energy solutions can only be identified by focusing on the goals of our clients and the requirements of their facilities. This results in solutions that fit client financial and operational objectives while optimizing energy use and cost. At DSMEA, we refer to our services as Low Carbon Engineering. Whether it's combined with other carbon atoms or with different elements like hydrogen, carbon bonds with it's neighbors in unique ways, so the outcome makes the best of each part.
At DSM, we see the flexibility of carbon as a model for how we find solutions for our clients - through the right combination of expertise, experience, and as much innovation as we can squeeze in.
Services
The energy professionals at DSM Engineering Associates, PC (DSMEA) share a strong dedication to engineering consulting services targeted at reduction of the carbon-energy footprint of a facility.
DSMEA seeks to understand and address the client's needs and provide solutions that are technically, operationally, and economically effective.
Our objective for each client project is to provide effective and feasible solutions that meet our client's needs.
DSMEA has a history as an early adopter/enabler in energy system engineering for our clients.
DSMEA seeks to understand and address the client's needs and provide solutions that are technically, operationally, and economically effective.
Our objective for each client project is to provide effective and feasible solutions that meet our client's needs.
DSMEA has a history as an early adopter/enabler in energy system engineering for our clients.
We build on our own in-house skills and knowledge with our team of professional affiliates, many of whom we have worked seamlessly with for the past fifteen years.
Our diverse base of professionals allows us to provide our clients with high quality, comprehensive designs in the most efficient and effective manner, a service many disjointed project teams struggle to achieve.
Our affiliate partners bring a unique collection of skills and experience to the table, which allows us to successfully undertake a wide range of energy related projects.
Our diverse base of professionals allows us to provide our clients with high quality, comprehensive designs in the most efficient and effective manner, a service many disjointed project teams struggle to achieve.
Our affiliate partners bring a unique collection of skills and experience to the table, which allows us to successfully undertake a wide range of energy related projects.
While we are talking about ourselves, (which is what a website is for) we tend to pay a lot of attention to our cogeneration work, Tru-Use services, and some of our more innovative projects.
These specialties all have a foundation in Energy System Engineering, which is what we like to call the mainstream Mechanical/Electrical/Plumbing (MEP) engineering.
Converting the fuel source used by a boiler to meet the thermal demand of the building is primarily done because of the economic benefit natural gas holds over oil.
These specialties all have a foundation in Energy System Engineering, which is what we like to call the mainstream Mechanical/Electrical/Plumbing (MEP) engineering.
Converting the fuel source used by a boiler to meet the thermal demand of the building is primarily done because of the economic benefit natural gas holds over oil.
Cogeneration systems are installed in a variety of facilities to optimize energy use and cost.
It does this by "multi-tasking" the fuel that is consumed to meet the electrical, heating, and cooling needs of the building.
Optimizing fuel consumption means we optimize the energy cost and the carbon produced.
Cogeneration systems come in a wide range of capacities.
Larger systems might be located in a manufacturing facility or university campus.
Smaller systems (less than 1000 Kw) typically fit into individual buildings.
It does this by "multi-tasking" the fuel that is consumed to meet the electrical, heating, and cooling needs of the building.
Optimizing fuel consumption means we optimize the energy cost and the carbon produced.
Cogeneration systems come in a wide range of capacities.
Larger systems might be located in a manufacturing facility or university campus.
Smaller systems (less than 1000 Kw) typically fit into individual buildings.
Energy Consulting comprises many different applications of basic engineering and energy analysis.
If we want to reduce cash or carbon for a facility, energy systems and energy use are going to be our target zone.
When we optimize energy use, we reduce the carbon resulting from the facility's energy loads and just as likely reduce the cash required to meet these loads.
Energy consulting is another area where figuring out the best economic fit originated from options dictated by facility physical space constraints and energy load profiles.
If we want to reduce cash or carbon for a facility, energy systems and energy use are going to be our target zone.
When we optimize energy use, we reduce the carbon resulting from the facility's energy loads and just as likely reduce the cash required to meet these loads.
Energy consulting is another area where figuring out the best economic fit originated from options dictated by facility physical space constraints and energy load profiles.
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