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Continuing Professional Architectural and Engineering Consulting Services (CCNA), RFQ 26-07-01 <br />Cummins Cederberg | Trusted by the Coast. Proven in Practice. <br />51 <br />ANDREW “DREW” CONDON, PhD, PE <br />Senior Coastal Engineer <br />Fisher Island Club Visitor Marina Expansion, Miami-Dade County, Florida. Leads marine engineering and environmental <br />services for a large-scale marina expansion to improve capacity, navigation, and coastal resilience. Supports dock <br />reconfiguration, breakwater and jetty relocation, dredging, and basin backfill. Performs coastal modeling (waves, <br />currents, flushing), hydrodynamic analysis, marine structural design, and multi-agency permitting coordination. <br />Currently the project is advancing design and permitting to support optimized marina layout and long-term operation <br />performance. <br />Bay County CR2321 PD&E Bridge Hydraulics Report, Bay County, Florida. Provided PD&E services for County Road <br />2321 from State Road 77 to State Road 75 to evaluate hydraulic conditions and inform potential bridge replacement <br />or widening in support of resiliency and regulatory compliance. The project includes development of a comprehensive <br />Bridge Hydraulics Report incorporating watershed data, topography, bathymetry, and evaluation of existing bridge <br />conditions and scour vulnerability in accordance with FDOT and FHWA standards. Services performed include <br />hydrologic and hydraulic modeling using DHI MIKE 21 for riverine, hurricane, and storm surge scenarios with sea level <br />rise; wave load analyses on substructures and superstructures; and evaluation of design alternatives for hydraulic and <br />environmental performance. The project is ongoing, with deliverables supporting permitting, stakeholder coordination, <br />and recommendations for debris mitigation, drift clearance, and scour countermeasures. <br />Phillippi Creek Dredging, Sarasota, Florida. Serves as engineer of record and technical lead for a multi-phase <br />dredging program restoring navigability and enhance stormwater conveyance along Phillippi Creek. Leads Phase 1 <br />efforts, including the WCIND-funded dredging project near the creek mouth and the County’s High Spots initiative, and <br />directs Phase 2 design of the maximum dredge footprint throughout the creek. Develops construction plans, technical <br />specifications, and engineering analyses; supports permitting and bidding; and oversees construction engineering and <br />inspection (CEI) and independent design review. The project is ongoing, with construction underway for the WCIND <br />project and continued engineering oversight and coordination across concurrent phases. <br />Escribano Point South Shore Restoration, Pensacola, Florida. Serves as project manager and technical lead for <br />coastal engineering analysis and modeling supporting a shoreline restoration project focused on reducing erosion <br />and enhancing habitat through nature-based solutions, including oyster restoration. Oversees project execution while <br />performing coastal data evaluation, field measurements (tides, currents, and waves), and numerical modeling of <br />hydrodynamics, wave transformation, and sediment transport using DHI MIKE 21. Evaluates shoreline change and <br />design alternatives to improve resiliency and sediment retention, advancing conceptual design and supporting project <br />delivery. <br />Miami Harbor Navigation Improvements, USACE, Miami, Florida. Served as the coastal engineer examining navigation <br />improvements, including widening the federal channel. Addressed environmental concerns by modeling indirect <br />impacts from dredging using Delft3D, simulating dredge plume dispersal. Results aided in alternative screening, <br />developing management strategies, and beneficial use alternatives. Additionally, performed ship simulation studies to <br />develop channel improvements.* <br />South Atlantic Coastal Study, USACE, Southeast, US, US Virgin Islands, & Puerto Rico. Engineering technical lead <br />for a $18.4 million, four-year study to identify risks and vulnerabilities of coastal areas to increased hurricane and <br />storm damage due to sea level rise. The study area covered over 60,000 miles of coastline from North Carolina to <br />Mississippi, including Puerto Rico and the U.S. Virgin Islands. Oversaw a team of engineers in developing the Coastal <br />Hazard System (CHS), a data storage and mining system for probabilistic estimates of coastal hazards, including wave <br />height, wave period, wave direction, and current magnitude. Collaborated on the development of additional tools and <br />reports, such as the Tier 2 Risk Assessment, the Sand Availability and Needs Determination, and the Measures and <br />Costs Library. Authored the engineering appendix and supervised the writing of engineering appendices for each state <br />*Services provided with prior firm