Title Information
Title
Code for Reflective Particles of Biologic Origin Thesis
Name: Personal
Name Part
Nicklas, John Matthew
Role
Role Term (marcrelator) (authorityURI="http://id.loc.gov/vocabulary/relators", valueURI="http://id.loc.gov/vocabulary/relators/cre")
creator
Abstract
Code from thesis "Persistent Reflective Ocean Particulates of Biologic Origin: a Geoengineering Strategy". This thesis project examines a novel method of geoengineering, a means to ameliorate the effects of anthropogenic climate change. As discussed in the first chapter of my thesis, solar radiation management (SRM) strategies reflect short-wave light, cooling the earth without reducing the atmospheric concentration of greenhouse gases. The SRM strategy explored in this thesis uses reflective biological particles that float on the ocean’s surface and accumulate in the subtropical gyres. Coccolithophores are identified as candidate organisms for generating these reflective particles, but my further investigation of this geoengineering strategy does not depend on any specific properties of these microorganisms. In the second chapter of this thesis, I modify the CESM fully-coupled global climate model to simulate all aspects of this intervention, including the advection of the particles and their optical properties. I then examine three modified CESM simulations which approximate the regional climate effects of ocean SRM geoengineering. In the third and final chapter of my thesis, I develop a statistical approach for filtering the global climate temperature. This climate temperature was previously calculated as a 30-year moving average, a definition that implies that the current climate is unknown. However, using a Kalman filter with dynamic equations derived from basic radiation physics, I separated the annual Gaussian noise uncertainty in temperature (weather) from the climate temperature uncertainty. This approach can be generalized to analyze many additional variables (such as precipitation). Kalman filters thus discern the effects of geoengineering in real time, allowing control algorithms to react and adjust the ocean intervention within the CESM model.
Origin Information
Copyright Date
2020
Type of Resource
software, multimedia
Physical Description
digitalOrigin
born digital
Language
Language Term: Text (ISO639-2B) (authorityURI="http://id.loc.gov/vocabulary/iso639-2.html", valueURI="http://id.loc.gov/vocabulary/iso639-2/eng")
English
Note: thesis
Senior thesis (ScB)--Brown University, 2020
Note (displayLabel="Concentration")
Applied Math - Biology
Genre (aat)
software
Subject (fast) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/01749583")
Topic
Climate change mitigation
Subject (fast) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/00947755")
Topic
Greenhouses--Climate--Mathematical models
Subject (fast) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/00985841")
Topic
Kalman filtering--Mathematical models
Subject (fast) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/00912996")
Topic
Environmental geotechnology
Access Condition: use and reproduction (href="https://repository.library.brown.edu/studio/item/bdr:1125550/")
License.txt
Identifier: DOI
10.26300/bxcc-r504