My boat has 3 battery banks, all consisting of wet-cell batteries. Bank one has 2 4D batteries that are about 2 years old. Bank 2 has 3 group 27 deep-cycle batteries that are less than 1 year old. Bank 3 consists of a single 4D battery that is about 4 years old. The specific gravity measurements I've taken recently indicate all good cells. All three banks give me approximately 700 AH.
I live on my boat (Morgan OI 415) at a dock with shore power. The batteries are continuously charged through a Dolphin Battery Charger (60 amps, 3 banks, 3-stage charger controlled by a CPU). The battery charger is one year old. When selecting the wire sizes I consulted this forum and the appropriate wire-capacity and sizing tables. The batteries are left in parallel and the battery isolator is turned off. I use mostly 110 VAC lighting but my refrigeration runs off of 12V DC. I am in the process of putting in a 13.8 V power supply to run the refrigeration off of AC while tethered to the dock.
I've be watching my Link 10 battery monitor over the past year. Last year the Link 10 indicated a steady-state charge of 0.3 to 0.6 amps, which I attributed to internal battery resistance. However, this year the steady state charge has rised to ~1.2 amps.
Can some one tell me if these currents are normal and what is causing the current to go up? Is it sulfation? I never put my charger on equalize mode because I don't want to risk the high voltage. However, I am willing to disconect a bank at a time to do what is necessary. But, I would have to buy another charger with an equalization mode if I wanted to equalize the batteries because my existing battery charger is needed elsewhere. Would I be better off buying a nano pulser to hook up for a couple of weeks on one disconnected battery bank at a time? What do you all recommend?
I live on my boat (Morgan OI 415) at a dock with shore power. The batteries are continuously charged through a Dolphin Battery Charger (60 amps, 3 banks, 3-stage charger controlled by a CPU). The battery charger is one year old. When selecting the wire sizes I consulted this forum and the appropriate wire-capacity and sizing tables. The batteries are left in parallel and the battery isolator is turned off. I use mostly 110 VAC lighting but my refrigeration runs off of 12V DC. I am in the process of putting in a 13.8 V power supply to run the refrigeration off of AC while tethered to the dock.
I've be watching my Link 10 battery monitor over the past year. Last year the Link 10 indicated a steady-state charge of 0.3 to 0.6 amps, which I attributed to internal battery resistance. However, this year the steady state charge has rised to ~1.2 amps.
Can some one tell me if these currents are normal and what is causing the current to go up? Is it sulfation? I never put my charger on equalize mode because I don't want to risk the high voltage. However, I am willing to disconect a bank at a time to do what is necessary. But, I would have to buy another charger with an equalization mode if I wanted to equalize the batteries because my existing battery charger is needed elsewhere. Would I be better off buying a nano pulser to hook up for a couple of weeks on one disconnected battery bank at a time? What do you all recommend?