Ship-based Automated Systems Enhance Oceanic and Atmospheric Data Collection
Automated measurement systems deployed on commercial and research vessels can significantly improve the collection of oceanic and atmospheric data, benefiting scientific research and operational applications.
Academic Publication · 2010
Key Findings
- 01Merchant, cruise, and research vessels are valuable platforms for automated oceanic and atmospheric data collection.
- 02These data have wide-ranging applications in atmospheric and oceanic research and operations.
- 03Incremental improvements in instruments, platforms, and data stewardship are crucial for future advancements.
Application
Design takeaway
Integrate automated sensing and data collection capabilities into vessel design and operational planning to maximize environmental data acquisition with existing resources.
How to apply
When designing monitoring systems, consider utilizing existing transportation networks (e.g., shipping routes) as platforms for data collection.
Project actions
- 01Consider how existing infrastructure could be adapted for data collection in your design project.
- 02Think about the environmental conditions your sensors would need to withstand.
Method & Evidence
Variables
Strengths & Limitations
Strengths
- +Highlights a cost-effective method for large-scale data collection.
- +Emphasizes the potential for continuous data streams from diverse geographical locations.
Limitations
The reliability of data can be affected by the vessel's movement and the harsh marine environment.
Reliability & validity
The reliability of data collected from moving platforms can be lower due to environmental variability and sensor motion. Validity is enhanced by comparing data with established benchmarks or other monitoring systems.
Think critically
What are the trade-offs between using existing vessels for data collection versus deploying dedicated, purpose-built monitoring stations?
Design Principles
"Leverage existing infrastructure for distributed data collection."
This approach leverages existing infrastructure (ships) to gather valuable environmental data, reducing the need for dedicated, costly research expeditions. It highlights a strategy for efficient resource utilization in environmental monitoring.
What This Means for Your Design
We can put automatic sensors on ships to collect data about the ocean and air, which helps scientists and people who manage things like weather forecasts.
How to use in your project
- 1.Reference this paper when discussing the use of existing platforms for data collection or environmental monitoring in your design project.
Add to My Project
Quick Cite
(2010). Automated Underway Oceanic and Atmospheric Measurements from Ships. Academic Publication. https://doi.org/10.5270/oceanobs09.cwp.82 Retrieved from https://designdex.org/study/2bcfe6b5-a266-49b5-9d96-29c6cc337345/ship-based-automated-systems-enhance-oceanic-and-atmospheric-data-collection
Paragraph starter
The concept of utilizing existing maritime infrastructure, such as merchant and cruise vessels, for automated oceanic and atmospheric data collection offers a resource-efficient approach to environmental monitoring. This strategy leverages the extensive operational networks of these vessels to gather valuable scientific data, reducing the need for dedicated research platforms and associated costs (Smith et al., 2010).
Source
Academic Publication
Automated Underway Oceanic and Atmospheric Measurements from Ships
journal · 2010
View sourceQuestions about this research
- What does the research say about ship-based automated systems enhance oceanic and atmospheric data collection?
- Integrate automated sensing and data collection capabilities into vessel design and operational planning to maximize environmental data acquisition with existing resources. Evidence: Academic Publication (2010).
- Why does "Ship-based Automated Systems Enhance Oceanic and Atmospheric Data Collection" matter for design?
- This approach leverages existing infrastructure (ships) to gather valuable environmental data, reducing the need for dedicated, costly research expeditions. It highlights a strategy for efficient resource utilization in environmental monitoring.
- How can designers apply this research?
- Integrate automated sensing and data collection capabilities into vessel design and operational planning to maximize environmental data acquisition with existing resources.
- What were the main findings?
- Merchant, cruise, and research vessels are valuable platforms for automated oceanic and atmospheric data collection.. These data have wide-ranging applications in atmospheric and oceanic research and operations.. Incremental improvements in instruments, platforms, and data stewardship are crucial for future advancements.
- What research method was used?
- Literature review and expert consultation.
- How strong is the evidence?
- Evidence strength is rated Strong effect, based on a 2010 journal from Academic Publication.
- What should I do differently in my next project?
- When designing monitoring systems, consider utilizing existing transportation networks (e.g., shipping routes) as platforms for data collection.
- What are the limitations?
- The paper focuses on the technical and operational aspects of data collection, with less emphasis on the specific design of the sensing instruments themselves.
- Is there evidence that environmental data affects design outcomes?
- Ships can be effectively used to automatically collect important environmental data, and improvements in technology and data handling will make this even more valuable. This approach leverages existing infrastructure (ships) to gather valuable environmental data, reducing the need for dedicated, costly research expedit Source: Academic Publication (2010).
- Where does this oceanic atmospheric research apply?
- Oceanic and atmospheric monitoring from maritime platforms It sits within resource management research on designdex.org.
Related research topics
environmental data design research · evidence on environmental data · does environmental data improve design outcomes · oceanic atmospheric studies for designers · environmental data and oceanic atmospheric findings · resource management research evidence