Relational Cycle Theory
The existence of ‘relational cycles’ of solar activity on a multi-decadal to centennial scale, as significant models of climate change on Earth.
John L. Casey
January 22, 2008
Released for world wide web (www) distribution on Tuesday, January 22, 2008.
Abstract
[1] An independent analysis was conducted of sunspot records to 1610, solar activity proxy C14 isotope records for 1,200 years, temperature records for 2,000 years, using multiple sources, both chart extrapolated data and original data sets from other research sources. This research provides sufficient information to conclude that underlying and fundamental cycles of solar activity exist and are significant models of climate change on the Earth on multi-decadal and centennial scales. A theory has been formulated, “The Theory of Relational Cycles of Solar Activity, ‘ to describe these significant relationships between our Earth and these solar oscillations that result in the heating and cooling of the Earth. An important aspect of the theory is that it results in a set of tools for the predicting of global climate change decades in advance. As such, it offers the scientific community as well as the general public, a plausible means for understanding the natural and predictable shifts from global cooling to global warming and back to global cooling that have occurred for thousands of years in the past and will likely do so in the future. As a direct result of the theory, it is predicted that the Earth will experience a significant temperature decline beginning between within 3-14 years and lasting two or three solar cycles resulting in global temperature reductions of at least 1.0-1.5 C, a level not seen for over 200 years. The depths and extent of the predicted cold period has the potential to result in world wide agricultural, social, and economic disruption.
Citation: Casey, John. L. (2008), The existence of ‘ relational cycles’ of solar activity on a multi-decadal to centennial scale, as significant models of climate change on Earth, Research Report 1-2008, January 22, 2008, Space and Science Research Center, (SSRC).
