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Remote Ocean Modeling Jobs in Pennsylvania (NOW HIRING)

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... Ph.D. in atmospheric science, oceanography, Earth science, or a closely related Earth or ...

Coastal Engineer

Horsham, PA · On-site +1

$81K - $102K/yr

Horsham (remote) Job Type: Regular Full-time What's the Opportunity? Anchor QEA is seeking a ... Experience with hydrologic, hydraulic, hydrodynamic, and/or water quality numerical modeling

Remote Ocean Modeling information

What is remote ocean modeling?

Remote ocean modeling is the practice of using computer simulations and mathematical models to study and predict ocean behaviors—such as currents, temperature, and tides—from a location that is not physically at sea. Professionals in this field analyze data remotely, often leveraging satellite observations, remote sensors, and advanced software to create accurate models of oceanic processes. These models are crucial for understanding climate change, supporting marine navigation, managing fisheries, and forecasting weather events. Remote ocean modeling enables researchers and organizations to monitor and assess the health of the oceans without the need for constant on-site measurements.

What are the key skills and qualifications needed to thrive as a remote ocean modeler?

To thrive as a Remote Ocean Modeler, you need a solid background in oceanography, mathematics, and computational modeling, often supported by an advanced degree in a related field. Familiarity with programming languages (such as Python, MATLAB, or Fortran), high-performance computing, and specialized modeling software like ROMS or HYCOM is typically required. Strong analytical thinking, problem-solving abilities, and clear communication skills distinguish top performers in this role. These competencies are vital for accurately simulating ocean dynamics, interpreting complex data, and collaborating with multidisciplinary teams in remote settings.

What are some common challenges faced by remote ocean modelers, and how can they be addressed?

Remote ocean modelers often encounter challenges such as coordinating with multidisciplinary teams across different time zones, managing large datasets, and ensuring reliable computational resources from offsite locations. To address these, it's important to establish clear communication protocols, utilize collaborative platforms for code and data sharing, and have access to secure, high-performance computing environments. Proactively scheduling regular virtual meetings and leveraging cloud-based modeling tools can also help maintain workflow efficiency and team cohesion.

What is the difference between Remote Ocean Modeling vs Remote Marine Data Analyst?

AspectRemote Ocean ModelingRemote Marine Data Analyst
Required CredentialsDegree in Oceanography, Marine Science, or related fields; experience with modeling softwareDegree in Marine Science, Data Science, or related; proficiency in data analysis tools
Work EnvironmentResearch institutions, environmental agencies, or private companies; focus on modeling simulationsData-focused roles in research, consulting, or government agencies; emphasis on data interpretation
Industry UsageUsed for climate prediction, ocean circulation studies, and environmental impact assessmentsApplied in marine resource management, policy advising, and environmental monitoring

Remote Ocean Modeling involves creating simulations of ocean processes using specialized software, primarily for research and environmental applications. In contrast, Remote Marine Data Analysts focus on analyzing marine data sets to derive insights and support decision-making. Both roles require strong analytical skills and relevant scientific backgrounds but differ in their core activities and software tools used.

What are popular job titles related to Remote Ocean Modeling jobs in Pennsylvania?

For Remote Ocean Modeling jobs in Pennsylvania, the most frequently searched job titles are:

What job categories do people searching Remote Ocean Modeling jobs in Pennsylvania look for?

The top searched job categories for Remote Ocean Modeling jobs in Pennsylvania are:

What cities in Pennsylvania are hiring for Remote Ocean Modeling jobs?

Cities in Pennsylvania with the most Remote Ocean Modeling job openings:

Postdoctoral Scholar - Open Source Earth Science Software Development and Global Atmospheric Mode...

On-site, Remote

The Pennsylvania State University
Education • 11 - 50 employees

Full-time

Re-posted 2 days ago


Job description

APPLICATION INSTRUCTIONS:
  • CURRENT PENN STATE EMPLOYEE (faculty, staff, technical service, or student), please login to Workday to complete the internal application process. Please do not apply here, apply internally through Workday.
  • CURRENT PENN STATE STUDENT (not employed previously at the university) and seeking employment with Penn State, please login to Workday to complete the student application process. Please do not apply here, apply internally through Workday.
  • If you are NOT a current employee or student, please click "Apply" and complete the application process for external applicants.

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional information on remote work at Penn State, seeNotice to Out of State Applicants.

This is a term position; length of the term will be discussed during the interview process. Continuation past the termlengthdiscussed willbebasedonuniversityneed,performance,and/oravailabilityoffunding.

POSITION SPECIFICS

The Department of Meteorology and Atmospheric Sciences at Penn State University invites applications for a full-time Postdoctoral Scholar to support the NSF-funded project "Transitioning UXarray to a Sustainable Open Source Ecosystem" (NSF POSE). This is a 12-month appointment at 100% effort, with the possibility of renewal contingent on satisfactory performance and continued funding.
The successful candidate will work under the supervision of Prof. Colin Zarzycki and collaborate closely with partners at the NSF National Center for Atmospheric Research (NCAR). The postdoc will play a central role in both the scientific application and open-source software development of UXarray, a Python package that extends Xarray to provide native support for horizontally unstructured computational meshes used in next-generation Earth System Models (ESMs).
In addition to UXarray-focused responsibilities, the postdoc will contribute to active research in global atmospheric modeling and weather and climate extremes. This includes participating in tasks aligned with ongoing collaborations focused on high-resolution Earth system modeling and the characterization of extreme weather events. This makes the position well-suited for a candidate seeking to combine expertise in scientific software development with original research in Earth system science.
Key Responsibilities:

Software Development & Technical Contributions

  • Contribute to the continued development and maintenance of UXarray, including analysis operators, grid subsetting, remapping, and plotting capabilities for unstructured mesh data.
  • Help develop and maintain contributor guides and onboarding documentation to lower the barrier for external contributors.
  • Support code review processes via GitHub Pull Requests following open development principles.
  • Represent the UXarray project at major scientific conferences and workshops, including AGU and AMS annual meetings.
  • Assist in the delivery of training workshops at universities and research centers.

Scientific Application & Validation

  • Apply UXarray to real-world Earth science analysis workflows using outputs from high-resolution atmospheric, oceanic, and land surface models.
  • Develop and publish Pythia Cookbooks and Jupyter-based tutorials showcasing UXarray capabilities across scientific domains (climate, weather, hydrology, ocean).
  • Contribute to peer-reviewed publications and conference presentations (e.g., AGU, AMS, EGU).

The postdoc will also contribute to original research in global atmospheric modeling and weather and climate extremes, leveraging UXarray to do so. Specific activities may include:

  • Conducting and analyzing global and regionally refined simulations using E3SM (including regionally refined mesh and convection-permitting configurations such as SCREAM), with a focus on high-impact weather systems including tropical cyclones, atmospheric rivers, and extratropical cyclones.
  • Using Betacast to initialize E3SM for hindcast experiments targeting specific extreme weather events, supporting both process-level understanding and model evaluation.
  • Contributing to the evaluation of AI/ML-based Earth system emulators (e.g., ACE-E3SM, FourCastNet, NeuralGCM) against physics-based benchmarks, using process-oriented diagnostics.

This research is carried out in collaboration with multi-institutional partners and is directly relevant to efforts to understand how large-scale atmospheric variability and extreme events propagate through coupled Earth system and human systems. The postdoc is expected to leverage UXarray in their own modeling workflows, deepening their expertise and contributing practical test cases back to the UXarray project.

Required Qualifications:

  • Ph.D. in atmospheric science, oceanography, Earth science, or a closely related Earth or computational science field, conferred prior to the start date.
  • Demonstrated experience with scientific Python programming (e.g., NumPy, Xarray, Matplotlib, Pandas, Dask).
  • Experience with version control (e.g., Git/GitHub) and collaborative software development workflows.
  • Strong written and verbal communication skills, with the ability to produce clear documentation and present scientific results.

Preferred Qualifications:

  • Familiarity with unstructured grid data and/or numerical modeling output from weather and climate models.
  • Prior contributions to open-source scientific software projects.
  • Familiarity with DevOps/GitOps practices including CI/CD pipelines, automated testing, and containerization.
  • Experience developing tutorials, training materials, or teaching workshops.
  • Interest in open science principles and community-driven software development.
  • Experience running and analyzing output from global or regional atmospheric models, particularly E3SM, CESM, WRF, or SCREAM.

Applicants should submit (1) a current curriculum vitae, (2) a detailed statement of research interests and experiences relevant to the required qualifications, and (3) a list of three professional references' names and contact information. The review of applications will start immediately and continue until the position is filled. This position is funded for one year from the date of hire, with the possibility of renewal based on funding availability and satisfactory performance. The expected start date is September 15, 2026.

Contact

Please contact Dr. Colin Zarzycki, (cmz5202@psu.edu) with any questions regarding this position.

BACKGROUND CHECKS/CLEARANCES

Employment with the University will require successful completion of background check(s) in accordance with University policies.

BENEFITS

Penn State provides a competitive benefits package for full-time employees designed to support both personal and professional well-being.

For more detailed information, please visit ourBenefits Page. (Note: For Postdoctoral benefits, please see our Postdoctoral Benefits page.)

CAMPUS SECURITY CRIME STATISTICS

Pursuant to the Jeanne Clery Disclosure of Campus Security Policy and Campus Crime Statistics Act and the Pennsylvania Act of 1988, Penn State publishes a combined Annual Security and Annual Fire Safety Report (ASR). The ASR includes crime statistics and institutional policies concerning campus security, such as those concerning alcohol and drug use, crime prevention, the reporting of crimes, sexual assault, and other matters. The ASR is available for review here.

EEO IS THE LAW

Penn State is an equal opportunity employer and is committed to providing employment opportunities to all qualified applicants without regard to race, color, religion, age, sex, sexual orientation, gender identity, national origin, disability or protected veteran status. If you are unable to use our online application process due to an impairment or disability, please contact 814-865-1473.

Penn State is committed to and accountable for advancing equity, respect, and belonging. We embrace individual uniqueness, as well as a culture of belonging that supports equity initiatives, leverages the educational and institutional benefits of inclusion in society, and provides opportunities for engagement intended to help all members of the community thrive. We value belonging as a core strength and an essential element of the university's teaching, research, and service mission.

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About Pennsylvania State University

Sourced by ZipRecruiter

Pennsylvania State University, often referred to as Penn State, is a major, public, research-intensive university located in University Park, PA, US. This esteemed institution serves as an important player within the education industry, offering a plethora of academic programs across various disciplines. The university was founded in 1855 with the mission to provide quality education, advanced research, and service to society. Penn State holds firmly to values of integrity, respect, and excellence, fostering a diverse and inclusive community. The university is renowned for its research productivity and its high-ranking programs in areas like engineering, business, and education. One notable achievement of the institution is its designation as a "R1: Doctoral Universities – Very high research activity," demonstrating its commitment to scholarship and discovery.

Industry

Education

Company size

11 - 50 Employees

Headquarters location

University Park, PA, US

Year founded

1855

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