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Larry M. Smith, P.E.
<br />Principal Electrical Engineer
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<br />Fort Lauderdale, Florida š š
<br /> (954) 353-4559 ext. 202 ā
<br /> (561) 818-3600 š±š±
<br /> Larry@SmithEngineeringConsultants.com ā
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<br />Professional Profile
<br />Larry has over 35 years of
<br />experience as an electrical engineer
<br />in the areas of electric utilities,
<br />water and wastewater utilities, solid
<br />waste, water control structures and
<br />pump stations, airport electrical
<br />systems, architectural projects,
<br />telecommunications, roadway,
<br />sports field, and specialty lighting.
<br />He demonstrates skills in
<br />engineering and design, project
<br />management, client relations, and
<br />staff administration.
<br />Software Skills
<br />AutoCAD, MicroStation AGI32 and
<br />Microsoft Office.
<br />Education
<br />BS - Electrical Engineering, Florida
<br />Atlantic University, 1987
<br />Post Graduate Research - Electrical
<br />Engineering (Telecommunications),
<br />Florida Atlantic University, 1987-
<br />1988
<br />Licenses/Certifications
<br />Florida P.E. No. 45997
<br />North Carolina P.E. No. 033663
<br />Technical Assistance Analyst, Florida
<br />No. T-0828
<br />Awards
<br />Florida Engineering Society,
<br />Outstanding Service to the
<br />Profession 2010-2011
<br />Florida Engineering Society,
<br />Engineer of the Year 2007 - 2008
<br />Professional Societies
<br />Florida Engineering Society, State
<br />President 2017-2018
<br />American Society of Civil Engineers,
<br />Palm Beach Chapter
<br />Institute of Transportation
<br />Engineers, Gold Coast Chapter
<br />Years with SEC:
<br />26
<br />Years of Experience:
<br />38
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<br />Project Experience
<br />City of West Palm Beach Water Treatment Plant Generator - Smith Engineering
<br />Consultants designed the power, control, and instrumentation systems for a new 2,000
<br />kW, 4,160 volt generator installation at the City's existing Water Treatment Plant. SEC
<br />designed the electrical systems, including three new automatic transfer switches, for
<br />the relocation of the existing 1,000 kW generator to the City's public works complex.
<br />Control and Instrumentation systems were integrated with the existing paralleling
<br />switchgear at the water treatment plant.
<br />City of Miami Beach Stormwater Pump Stationsā Electrical design for six (6) new
<br />stormwater pump stations within the City of Miami Beach at 6th, 10th, and 14th
<br />Streets. Each of these pump stations consisted of two (2), 60 horsepower, electric
<br />motor operated pumps. A portable generator receptacle was designed to provide
<br />backup power for full pumping capacity. Reduced-voltage motor starters were designed
<br />to reduce the starting inrush current for the large electric motors.
<br />Town of Palm Beach, D-9 & D-10 Stormwater Pump Stationsā Electrical and
<br />mechanical design for two (2) stormwater pump stations within the Town of Palm
<br />Beach. These pump stations consisted of submersible, electric motor operated pumps.
<br />A backup diesel generator was designed at each pump station to provide power for full
<br />pumping capacity. Reduced-voltage motor starters were designed to reduce the
<br />starting inrush current for the large electric motors. The electrical design included the
<br />main electrical service and distribution, control, lighting, and instrumentation. The
<br />telemetry system was designed to provide for automation, and remote control and
<br />status monitoring, for the pump stations.
<br />Town of Palm Beach, D-6 & D-7 Stormwater Pump Stationsā Electrical and mechanical
<br />design for two (2) stormwater pump stations within the Town of Palm Beach. These
<br />pump stations consisted of submersible, electric motor operated pumps. A backup
<br />diesel generator was designed at each pump station to provide power for full pumping
<br />capacity. Reduced-voltage motor starters were designed to reduce the starting inrush
<br />current for the large electric motors. The electrical design included the main electrical
<br />service and distribution, control, lighting, and instrumentation. The telemetry system
<br />was designed to provide for automation, and remote control and status monitoring, for
<br />the pump stations.
<br />Northern Palm Beach County Improvement District, PGA Central Pump Station:
<br />Electrical and mechanical design for the refurbishment of an existing stormwater pump
<br />station. This pump station consisted of three (3) diesel operated pumps that were
<br />replaced with new electric motor operated pumps. A backup diesel generator was
<br />designed to provide power for full pumping capacity. Reduced-voltage motor starters
<br />were designed to reduce the starting inrush current for the large electric motors.
<br />Mechanical design included the ventilation of the main electrical room, and plumbing.
<br />The electrical design included the main electrical service and distribution, control,
<br />lighting, and instrumentation. The telemetry system was designed in accordance with
<br />District standards. Prior to design we evaluated the electrical and mechanical systems,
<br />including alternatives for refurbishment, prepared cost estimates for the alternatives,
<br />and assisted in the preparation of a written report for the District.
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