Carney All Seasons Blog: Posts Tagged ‘Jamison’

Steps to Take When Your HVAC System Breaks Down in Jamison

Friday, September 9th, 2011

Imagine this – it’s a sweltering summer day in Jamison. The humidity outside is obscene, hitting you like a wall when you open the door. So, the only place you want to be is on the couch with the cool air conditioned air being blown across your face. Sounds pretty good doesn’t it? Now, imagine what happens when that cool conditioned air stops flowing.

A breakdown in your HVAC system is the absolute last thing you want to experience on a day where the mercury dings 90+ but it can happen, and the only way to ensure things don’t get out of hand is to take the following steps.

  1. Check Common Problems –While the system itself could be broken, make sure there are no other issues involved. Frequently, the electricity supply can be interrupted by a power surge or a tripped breaker. In both cases, you can usually get the system back online by yourself. However, you should call an electrician to inspect it as soon as possible.
  2. Does it Turn On – If the air conditioning system turns on and simply doesn’t provide enough cooling for your home, it is likely a problem in the unit. In this case, check other common problems. Clogged filters can severely reduce efficiency and if the system freezes over, it may stop providing enough cooling.
  3. Still Not Working? – If the system refuses to turn on and there are not clear problems that you can fix yourself, it’s time to call a professional. A professional HVAC contractor should be available almost any day of the week for emergency calls like this. Of course, in the middle of a heat wave or cold snap, it’s very likely that they may be booked up for a couple days. To avoid this happening, have routine maintenance done as often as recommended to avoid the possibility of being without cooling or heating indefinitely.

A good HVAC system is the only thing standing between you and discomfort, or worse, danger to your health. Don’t let the system go into such disrepair that you can’t use it at all.

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Showerheads that Save Water: Low-Flow Shower Heads

Wednesday, July 27th, 2011

If you are looking for ways to save water in your home, a low-flow shower head is a great place to start. There are many different types of low-flow shower heads on the market right now, so you should have no trouble finding one that suits both your needs and your budget. However, it can be difficult to determine which one is right for you, so it is best to learn a bit about your options before you make a purchase.

The goal of low-flow shower heads is to use less water. But you do not want to compromise your shower experience at the same time. So you need to find a low-flow shower head that can provide the same feel as a regular shower head with less water. Thanks to plenty of new technological developments, this is quite possible, but not all low-flow shower heads can accomplish this effectively.

The first thing you want to look for in a low-flow shower head is a pressure compensating system. This allows the shower head to provide a consistent stream of water regardless of your water pressure. One of these shower heads makes sure you always have a powerful enough spray for a comfortable shower even when you do not have a lot of water pressure. They do this without wasting water if your water pressure is very high.

You must also decide whether you want a shower head that aerates the water. An aerating shower head adds air to the water spray to make it feel like there is more water than there actually is. Many low-flow shower heads use this technology to enhance the feel of their spray and it can work quite effectively. But aerating the water also tends to cool down the water, meaning that you will have to turn on more hot water (and use more energy) to maintain a comfortable temperature.

Fortunately, there are some low-flow shower heads that do not aerate the water and are still able to provide a comfortable and complete showering experience. You will have to do a bit of digging to find them, but it will be well worth it to you in the long run.

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How a Water Softener Works

Monday, July 18th, 2011

You use water for many things. It is necessary for bathing, cooking, washing clothes and for drinking. But the water we use in our homes is not pure. It has plenty of other minerals and additives suspended inside. While some of these, like fluoride, are intentionally added to the water supplies in certain areas, some others get in by chance.

Aside from actual pollutants, the additives you may be the most concerned about finding in your water are calcium and magnesium. These minerals are picked up by water as it moves through the ground, and the more of them that get into your home water supply, the harder that water will be.

The term hard water is used to describe water with high levels of calcium and magnesium present. These minerals are not actually dangerous to us, but they can cause all sorts of problems for your indoor plumbing and other household systems. For instance, hard water will leave deposits of these minerals on the insides of pipes and on sinks, faucets and bathtubs.

Residue will also build up in appliances like coffee makers, dish washers and washing machines. Over time these buildups can become a real problem and you may have to pay for costly repairs or need to replace large appliances.

In order to avoid these types of complications, your best bet is to have a water softener installed. These systems can be connected directly to your home water source and they are able to remove excess calcium and magnesium from the water before it ever reaches any of your indoor plumbing or appliances.

Water softeners generally remove these minerals by attracting the positively charged calcium and magnesium particles with a tank full of negatively charged polystyrene particles. In this system, the calcium and magnesium are replaced by sodium ions as they move through the water softener, thereby maintaining the overall balanced composition of the water. Once the water has passed through and the calcium and magnesium have been left behind, the water softener will flush them out and prepare to absorb another wave of hard water minerals.

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What to Look for when a Home is 100 Years Old

Wednesday, July 13th, 2011

Many people like older homes, but at a certain point, the age of a home can be a bit of a turnoff. It’s not the architecture – old homes are magnificently built and tend to have more character in the woodwork and nooks and crannies than any new home. But, when you move beyond how impressive early 20th century (or earlier) architecture is, you might find a number of maintenance and upkeep issues that have only been made worse by the passage of time.

Common Problems to Watch For

As with a 50 year old home, materials are a big issue. You need to have your home tested for lead paint and asbestos – both things that can be incredibly dangerous for every resident, especially children. These are very likely to be a part of the home if it hasn’t been remodeled in the last 30 years. Retrofitting to cover them up or remove them will be an added expense.

Additionally, older homes have much greater ratios of ventilation. If insulation has not been added in the last 25 years to cover those vents and gaps, your home will be very drafty, which is uncomfortable in the winter and costly year round. Make sure to have your home pressure tested and sealed up as soon as possible.

Upgrades You Can Make

Electricity is another major issue in older homes. While most old homes have been owned multiple times and likely upgraded since they were built, occasionally you will run across a house with extremely old wiring. That might mean a low capacity panel box or single strand wiring. Either way, it’s unsafe and unstable – for modern appliances and electronics you’ll need to upgrade that wiring as soon as possible.

The same may be true for your plumbing. If the house has original plumbing and fixtures, not only will they be inefficient, they may be rusty or prone to leakage. Sewer lines in particular are expensive replacements if they decide to break. Make sure you have these thoroughly inspected before a purchase.

The Joy of an Older Home

Despite all of the potential problems an old home might offer, there are plenty of benefits. Established neighborhoods, solid construction, and the ability to alter your home however you want are all positives you can’t overlook when buying a home. Just make sure you’re fully aware of what you’re getting into. Even a well maintained old home may have some issues that you miss on your initial walkthrough – make sure your inspector is thorough.

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What Is New in Air Conditioning?

Monday, June 13th, 2011

There are developments being made in air conditioning just about every day. This is a huge business, and so manufacturers are constantly trying to outdo each other as it is their only way to compete for customers. What this means for you as a consumer is that you will always have an excellent selection of products from which to choose.

Energy efficiency is one of the main selling points for any air conditioning system. For that reason, manufacturers are constantly working to come up with new and better models. The most advanced air conditioning systems on the market have energy efficiency ratings that by far surpass what was available even ten years ago and it is only going to keep getting better.

Another type of air conditioning system that is relatively new but is rapidly gaining in popularity is the ductless mini-split system. These and other compact air conditioners are popular because they can be installed virtually anywhere and do not take up much space. They also do not require the duct system that many other central air conditioners do.

In this way, ductless mini-splits combine the best of central air conditioning and more conventional window or wall mounted units. They keep individual rooms of your house cool and comfortable and can be controlled independently of one another, but they are also very quiet and energy efficient. In fact, ductless mini-splits are among some of the most energy efficient options available in the air conditioning world today.

For many years, enjoying the comfort that air conditioning provides has meant putting up with the noise of the compressor as well. Now, however, you can get the best of both worlds. Many air conditioning companies, in response to customer requests, have been working to curtail the noise and vibrations that air conditioners make.

This has affected models all up and down the line. Whether it is a window mounted unit you are after or a large central air conditioning system, you can rest assured that the model you buy today will be much quieter and produce a great deal fewer vibrations than your old system.

This is not only good news for you. It can also help to make your relationship with your neighbors a bit friendlier. The outside component of most air conditioning systems is usually where all the noise and vibrations come from anyway, and so your neighbors are likely to hear and feel it as well.

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How Do I Check for a Dirty Evaporator Coil?

Monday, May 30th, 2011

The evaporator coil is an essential piece of your air conditioning system. It absorbs heat from air that passes over it, and that air then travels into your home to cool it. So if your coil is dirty or isn’t functioning properly, the cooling power of your air conditioning system is diminished. Fortunately, this problem is fixed easily by cleaning the evaporator coil. You can do this on your own or have a professional come in to take care of it.

Signs of a Dirty Evaporator Coil

The most obvious sign of a dirty evaporator coil is an overall drop in system pressure. As long as you know what constitutes a normal pressure for your system, you should be able to tell if the current pressure is below that level. If it is, a dirty evaporator coil is probably your culprit. You can also check the static pressure in your system to see if that is low, but this requires specialized equipment.

Even if you don’t notice any particular signs that your air conditioning system isn’t working properly, it’s a good idea to clean your evaporator coils once a year or so. This can help prevent any larger problems from developing in the future.

Finding Your Coil

Probably the hardest part of cleaning an evaporator coil is reaching it. Unlike your condenser coil, which is located in your outdoor condenser unit, the evaporator coil is found inside near the air handler or furnace. If you have the owner’s manual, there should be detailed instructions telling you where the coil is and how to safely access it.

Alternately, you can have an HVAC technician show you what to do the next time they come out to work on your system. Whatever you do, though, make sure that power to your AC unit is completely shut off before you start working on it. Once you’ve gained access to the coil, use a brush or vacuum attachment to remove any debris or sediment you find there.

The Importance of Maintenance

Cleaning your evaporator coil is only one part of the regular maintenance required to keep your air conditioning system in good working order for the foreseeable future. There are plenty of things you can do on your own, but it pays to have a professional come out once a year or so to check out the entire system and make any necessary repairs.

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Geothermal vs. Solar

Friday, April 29th, 2011

If you are looking for a more environmentally friendly alternative to the traditional methods for home heating, you will probably consider both solar and geothermal options. Each of these relies on a great renewable resource to function and can be an excellent option depending on your specific circumstances. Of course, both geothermal and solar heating have limitations as well, so it is important to take these into account when you are evaluating your options.

A geothermal heating system works by extracting heat from the ground and transferring that to the air in your house. This occurs when heat is absorbed by a fluid flowing through a closed loop of pipes beneath or next to your home. The fluid then returns to your home, where the heat is extracted by a compressor and distributed throughout the house by an air handler.

This uses very little energy relative to a conventional heating system, as you only have to power the condenser and the air handler. The heat is not generated by the system but merely harvested, so total energy costs are quite low. However, the installation cost of a geothermal heating system can be many times what a conventional heating system would cost.

Solar heating relies on solar collectors to gather the heat from the sun. This heat is then passed into a system of heat pumps and heat exchangers so that it can be adequately distributed throughout your house. The installation of heat collectors, of course, is quite expensive as well, while the cost of running the system is generally low just as with the geothermal heat pump.

One advantage to opting for a solar heating system is that you can lease the equipment rather than buying it in some areas. This means that you do not have to pay the high installation costs and only pay a monthly fee to use the equipment which is usually comparable to what an average heating bill would be if you had a furnace.

But you also have to keep in mind that you need to have enough space to put up an adequate number of solar collectors to keep your house warm all winter. This often means giving up a lot of land, and if you have a lot, that is fine. But it is still something you need to take into consideration. Also, you need to make sure that the area you live in gets enough direct sunlight to make solar heating a viable option. Otherwise, you will be paying to run a backup system much of the time anyway.

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What Are High-Efficiency Toilets?

Monday, April 18th, 2011

Everyone has a toilet in their home. In fact, you probably have more than one. And you probably do not give much thought to the type of toilet you have. After all, a toilet is a toilet, right? Well, there are actually several different types of toilets, and while they all get the basic job done, there are reasons to favor one type over another.

One such distinction falls on what are known as high-efficiency toilets. These toilets use significantly less water than standard toilets on each flush, thereby saving you money on your water bill every time you use them. No toilet on the market today is permitted by law to use more than 3.5 gallons of water per flush. High-efficiency toilets, by contrast, generally use between 1.6 gallons and 1.1 gallons.

That might not seem like a huge difference, but just think about how many times in a day someone flushes the toilets in your home. That will add up fast. Installing a high-efficiency toilet can save you as much as 12,000 gallons of water a year. And depending on the size of your household and the number of toilets you have, that figure could be even higher.

Of course, a lot of people shy away from high-efficiency toilets because they are concerned about performance. It seems unlikely to them that a toilet that uses so much less water could work effectively all of the time. The truth is, though, that many high efficiency toilets work even better than conventional ones at clearing the bowl in one flush. And high efficiency toilets do not clog any more than regular toilets. In fact, they often do better in that area as well.

Another thing to bear in mind is that toilets last for a long time. This means that the toilet in your home could be quite old. Toilets made before 1980 use much more than modern toilets are allowed to use per flush. Some of them actually go through five gallons or more of water each time you use them. By replacing an older toilet with a new, high-efficiency model, you will be setting yourself up for some significant savings on your water bill each month.

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What Is a Water Source Heat Pump?

Wednesday, March 9th, 2011

A water source heat pump operates much like a traditional air source heat pump except that it extracts and dissipates heat by way of water instead of air. This is certainly not a type of home comfort system that will be available to anyone, but if you live in an area close to a well, lake or other natural water source, it may be an option worth considering.

All types of heat pumps can provide excellent year round home temperature control by pumping heat in during the winter months and removing it during the summer. The main difference between the types of heat pumps is where they get the heat or dispose of it.

Traditional air source heat pumps get their heat from the air outside, as even relatively cold air actually contains a substantial amount of heat. They use this heat to keep your house warm in the winter, but as the outside temperatures go down below freezing, these heat pumps can become less and less effective.

Water source heat pumps, on the other hand, work on basically the same principle as air source heat pumps, but they extract heat from a body of water rather than the air. They do this by cycling water through a system of pipes that is laid out at the bottom of a body of water. As the water cycles through, it gathers heat from the lake or reservoir and then carries it back to your house.

In the summer, the process is reversed and heat is carried out of your house and expelled in the cooler water outside. Like air source heat pumps, water source heat pumps are slightly more efficient at cooling rather than heating, as even deep water will eventually get cold during the winter months. However, the water is still often warmer than the air, and so water source heat pumps can be a good alternative if you live in a slightly cooler climate.

Of course, you do also need to have access to an appropriate body of water to have a water source heat pump installed, which makes it something that is not available to everyone. But if you do live near such a body of water, a water source heat pump is definitely something worth considering.

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Can I Use Geothermal Heat if I Live in a Cold Climate Where the Ground Freezes?

Friday, February 25th, 2011

Geothermal heat pumps are able to extract heat from the ground, even when outdoor temperatures are well below freezing. They use a system of pipes installed in the ground below or around your home to collect this heat and then return it to your home where it can then be used to heat the air. While these types of heating systems are certainly more efficient the warmer the ground is, they can be effective even in very cold climates.

This is true even in areas where the ground freezes from time to time or for parts of the year because the frozen layer does not typically extend more than three or four feet below the surface. As long as the pipes for your geothermal heating system are below this level, they will still be able to gather plenty of heat from the warmer ground below the frozen layer.

In fact, there are two different ways that the pipe loop for a geothermal heating system can be installed. Most geothermal systems have a horizontal pipe system which sits about four feet below the surface and extends out from the house. This type of installation is typically cheaper than the alternative, but it also usually needs to be larger. Plus, you need to have the space for it to stretch across.

On the other hand, a vertical installation goes straight down into the ground below your home. With a vertical installation, you can usually get away with less pipe overall, but you will probably pay more for the installation because it is harder to drill straight down than it is to dig out a relatively shallow trench to lay the pipe in.

However, if you live in an area that has particularly harsh winters when the ground can be frozen for significant periods of time, it may be worth it to opt for the vertical installation. That is because the further below the surface the pipes go, the farther away they will be from the frozen layer of ground.

With a vertical pipe installation, a geothermal heating system can work quite well in a climate in which the ground usually freezes in the winter. While you will always want to have a backup heating system in place in case of emergencies, this type of heat pump should be all you need under normal conditions.

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