oldcpu
Member
- Reaction score
- 146
- Points
- 580
I think for others on the forum to follow, who have not researched nor monitored this over the years, I will take a step back next, and post some information I learned some time back (years back actually) in regards to SSN submarine Arctic transits, together with more recent speculation on the web in regards to the Canadian Patrol Submarine project.
First some history:
Its common knownedge that SSNs have transited the Arctic waters, and even visited the North Pole area.
For example, purportedly in August 1960, the SSN USS Seadragon (SSN-584), a Skate class nuclear attack submarine entered the Parry Channel at Lancaster Sound on August 15, 1960, and completed the deep-archipelago passage out to the Beaufort Sea (via Viscount Melville Sound and McClure Strait) on August 21, 1960. This was not the first Arctic transit but argueably the first mostly following the North West Passage.
But 6 days ? At that slow speed?? I was immediately VERY supicous.
Transit at 6 knots, and 559nm is only a fraction of the Arctic.
That does not include passage through the ice by Bering Sea, so I don't consider such even close to being partly representative. Further, I noted that August is a favourable time of year for such a passage, with major portions of channels like the Parry Channel are often open enough for surface travel, or choked only with looser, fractured multi-year and seasonal ice. Having typed that, mid-to-later September is even more favourable for such a passage.
Still, calculating further, if considering navigating underwater from the western McClure Strait exit (~74° 30′ N, 122° 00′ W) to open water south of the Bering Sea icefields, requires following deeper underwater channels across the Beaufort and Chukchi shelves, to avoid shallow shoals and to avoid potential deep ice keels that might reach to the ocean floor. That increases the necessary transit distance.
Following an under-ice track that arcs westward across the deep Beaufort basin, passes north of the Chukchi shelf break, threads the Bering Strait, and continues south into the open Bering Sea past the seasonal ice edge (~61° N, 171° W) results in a total Navigable Track Distance of approximately 1,435 nautical miles (about 2,658 kilometers) for only that portion.
So if I add this up - - the underwater distance from Eastern Entry (Lancaster Sound / Baffin Bay boundary): ~74° 15′ N, 80° 00′ W (where Baffin Bay funnels westward into the sound between Devon Island and Baffin Island) to Open water south of the Bering Strait ice pack , positioned safely south of the seasonal winter/spring ice edge in the Bering Sea (-61°N, 171°W), I come to a number of around 1,994nm (around 3,693 km).
So - for the moment (only) lets go with that number of 1,994nm (around 3,693 km) for straight (no detour) transit - and even that is (IMHO) likely too short an estimate re:distance.
Next if I look at the RCN RFI for the Canadian Patrol Submarine Project (such as HLMR #3 ), which specified:
----
Ability to operate discretely without external support for minimum transits of 7000nm (2x 3500nm) at 8kts, and a minimum of 21 days of continuous dived operations while on station. Capable of no less than 60 days self-sustained operation.
---
The 21-days does not state the submarine's dived operations speed underwater. Lets assume (and this could be wrong) of 21-days of continuous dived at 3-knots, and also for comparison, look at a more ambitious (speculative?) 4 knots assumption for 21-days continuous dived under water duration.
21 days at 3 knots is 21 days x 24hr/day x 3knots = 1,512 nm (if at 3 knots) or 2,016 nm (at 4 knots). Given the distance is about 1,994 nm from open Bering Sea south of the seasonal ice edge to the Lancaster Sound / Baffin Bay boundary approximate ice edge, it is clear to me a Type-212CD likely can not safely (safely being the "operative word") traverse the full distance in 21 days based on the RCN requirement. Its too 'tight' with little to no margin.
But is 21 days the right number for the Type-212CD continous under water endurance?
Open unclassified press (purportedly originating from TKMS) for the Type-212CD claims 41-days underwater transit, which is assessed by many to be under water duration (noting that the RCN RFI HLMR (requirement) is a 60 day deployment for both above and underwater together). This is a purported improvement over the much older Type-212A which purportedly has the capability of 21-days submerged. So calculating from 41-days: 41 days x 24hrs/day x 3 knots = 2,952 nm. That exceeds the 1,994 nm arguably needed for Arctic transit - if and only if the 41-days is accurate. Is 41-days submerged on AIP accurate? And also if the 1,994 nm is accurate. Is that accurate? I don't know. I am rather skeptical to say it mildly.
Again thou, given I am skeptical there, as such a transit in my mind, that assumes a straight uneventful transit, and from my reading books such as "Nautilus 90-north" (USS Nautilus Arctic transit) suggests to me that multiple underwater efforts can be needed to get past blocking ice.
Such deviations in course may be necessary and hence a straight forward transit is credibly not possible and not likely assured, even if 41 days continuous underwater on an AIP system is possible. Of course, that pessimistic assumption of mine may also be invalid, as today with Synthetic Aperture Radar satellites (which Canada has), and with global warming, perhaps more favourable under ice transit routes can be determined and passed to the submarine before it submerges to attempt transit, and a more direct route under ice can be found with occasional locations to surface (or come to periscope depth) and run diesel engines with AIP temporary switched off.
Still even only one Arctic AIP replenishment system prepositioned in the Arctic, would change AIP equipped submarine Arctic operations from an no-detour Arctic transit (that I believe is still risky for an AIP equipped submarine), to a route that is not only a mostly an assured Arctic transit, but also one where margin exists for a further Arctic patrol.
Obviously more than one Arctic replenishment location would provide more risk free Arctic presence assurance, but I suspect even one such Arctic AIP replenishment location would in and of itself be a major challenge to the RCN to procure, implement, and maintain. One need read no further than the major skepticism in posts on this forum in regards to mobile AIP reactant replenishment, to appreciate the level of skepticism that exists - and the level of difficulty.
Still - to survive tomorrows wars, thinking and planning for the future as much as practical is essential. I can't understate that. To me that means using current contracts (such as the RCN/TKMS Type-212CD contract) to assess, and as much as possible, if assessed credible, to specify and plan for Arctic AIP replenishment.
And yes, the manpower issues/shortages in the RCN today is IMHO a major impediment, which suggests to me, that more use of civilian contractors, in conducting such investigations, assessments, planning, and where appropriate, helping in implementations, is and will be needed by the RCN.
First some history:
Its common knownedge that SSNs have transited the Arctic waters, and even visited the North Pole area.
For example, purportedly in August 1960, the SSN USS Seadragon (SSN-584), a Skate class nuclear attack submarine entered the Parry Channel at Lancaster Sound on August 15, 1960, and completed the deep-archipelago passage out to the Beaufort Sea (via Viscount Melville Sound and McClure Strait) on August 21, 1960. This was not the first Arctic transit but argueably the first mostly following the North West Passage.
- Eastern Entry (Lancaster Sound / Baffin Bay boundary): ~74° 15′ N, 80° 00′ W (where Baffin Bay funnels westward into the sound between Devon Island Baffin Island)
- Western Exit (McClure Strait / Beaufort Sea boundary): ~74° 30′ N, 122° 00′ W (where the strait opens out past Banks Island into the western polar basin).
But 6 days ? At that slow speed?? I was immediately VERY supicous.
Transit at 6 knots, and 559nm is only a fraction of the Arctic.
That does not include passage through the ice by Bering Sea, so I don't consider such even close to being partly representative. Further, I noted that August is a favourable time of year for such a passage, with major portions of channels like the Parry Channel are often open enough for surface travel, or choked only with looser, fractured multi-year and seasonal ice. Having typed that, mid-to-later September is even more favourable for such a passage.
Still, calculating further, if considering navigating underwater from the western McClure Strait exit (~74° 30′ N, 122° 00′ W) to open water south of the Bering Sea icefields, requires following deeper underwater channels across the Beaufort and Chukchi shelves, to avoid shallow shoals and to avoid potential deep ice keels that might reach to the ocean floor. That increases the necessary transit distance.
Following an under-ice track that arcs westward across the deep Beaufort basin, passes north of the Chukchi shelf break, threads the Bering Strait, and continues south into the open Bering Sea past the seasonal ice edge (~61° N, 171° W) results in a total Navigable Track Distance of approximately 1,435 nautical miles (about 2,658 kilometers) for only that portion.
So if I add this up - - the underwater distance from Eastern Entry (Lancaster Sound / Baffin Bay boundary): ~74° 15′ N, 80° 00′ W (where Baffin Bay funnels westward into the sound between Devon Island and Baffin Island) to Open water south of the Bering Strait ice pack , positioned safely south of the seasonal winter/spring ice edge in the Bering Sea (-61°N, 171°W), I come to a number of around 1,994nm (around 3,693 km).
So - for the moment (only) lets go with that number of 1,994nm (around 3,693 km) for straight (no detour) transit - and even that is (IMHO) likely too short an estimate re:distance.
Next if I look at the RCN RFI for the Canadian Patrol Submarine Project (such as HLMR #3 ), which specified:
----
Ability to operate discretely without external support for minimum transits of 7000nm (2x 3500nm) at 8kts, and a minimum of 21 days of continuous dived operations while on station. Capable of no less than 60 days self-sustained operation.
---
The 21-days does not state the submarine's dived operations speed underwater. Lets assume (and this could be wrong) of 21-days of continuous dived at 3-knots, and also for comparison, look at a more ambitious (speculative?) 4 knots assumption for 21-days continuous dived under water duration.
21 days at 3 knots is 21 days x 24hr/day x 3knots = 1,512 nm (if at 3 knots) or 2,016 nm (at 4 knots). Given the distance is about 1,994 nm from open Bering Sea south of the seasonal ice edge to the Lancaster Sound / Baffin Bay boundary approximate ice edge, it is clear to me a Type-212CD likely can not safely (safely being the "operative word") traverse the full distance in 21 days based on the RCN requirement. Its too 'tight' with little to no margin.
But is 21 days the right number for the Type-212CD continous under water endurance?
Open unclassified press (purportedly originating from TKMS) for the Type-212CD claims 41-days underwater transit, which is assessed by many to be under water duration (noting that the RCN RFI HLMR (requirement) is a 60 day deployment for both above and underwater together). This is a purported improvement over the much older Type-212A which purportedly has the capability of 21-days submerged. So calculating from 41-days: 41 days x 24hrs/day x 3 knots = 2,952 nm. That exceeds the 1,994 nm arguably needed for Arctic transit - if and only if the 41-days is accurate. Is 41-days submerged on AIP accurate? And also if the 1,994 nm is accurate. Is that accurate? I don't know. I am rather skeptical to say it mildly.
Again thou, given I am skeptical there, as such a transit in my mind, that assumes a straight uneventful transit, and from my reading books such as "Nautilus 90-north" (USS Nautilus Arctic transit) suggests to me that multiple underwater efforts can be needed to get past blocking ice.
Such deviations in course may be necessary and hence a straight forward transit is credibly not possible and not likely assured, even if 41 days continuous underwater on an AIP system is possible. Of course, that pessimistic assumption of mine may also be invalid, as today with Synthetic Aperture Radar satellites (which Canada has), and with global warming, perhaps more favourable under ice transit routes can be determined and passed to the submarine before it submerges to attempt transit, and a more direct route under ice can be found with occasional locations to surface (or come to periscope depth) and run diesel engines with AIP temporary switched off.
Still even only one Arctic AIP replenishment system prepositioned in the Arctic, would change AIP equipped submarine Arctic operations from an no-detour Arctic transit (that I believe is still risky for an AIP equipped submarine), to a route that is not only a mostly an assured Arctic transit, but also one where margin exists for a further Arctic patrol.
Obviously more than one Arctic replenishment location would provide more risk free Arctic presence assurance, but I suspect even one such Arctic AIP replenishment location would in and of itself be a major challenge to the RCN to procure, implement, and maintain. One need read no further than the major skepticism in posts on this forum in regards to mobile AIP reactant replenishment, to appreciate the level of skepticism that exists - and the level of difficulty.
Still - to survive tomorrows wars, thinking and planning for the future as much as practical is essential. I can't understate that. To me that means using current contracts (such as the RCN/TKMS Type-212CD contract) to assess, and as much as possible, if assessed credible, to specify and plan for Arctic AIP replenishment.
And yes, the manpower issues/shortages in the RCN today is IMHO a major impediment, which suggests to me, that more use of civilian contractors, in conducting such investigations, assessments, planning, and where appropriate, helping in implementations, is and will be needed by the RCN.


