Selective partitioning capacity based filter media
A method is provided for filtering a fluid. The method includes the step of selecting a first surface filtration medium to include layers of a first mesh material (FMM). The method also includes the step of selecting a second surface filtration medium to include layers of a second mesh material (SMM). The layers of FMM are selected to include a first number of layers (FNL) for collectively providing a first absolute micron filter rating (FAMFR) and a first capacity for collecting a first type of particles. The layers of SMM are selected to include a second number of layers (SNL) different from the FNL. The SNL is selected for collectively providing a second absolute micron filter rating (SAMFR). The SAMFR is different from the FAMFR. The SNL is also selected for providing a second capacity for collecting a second type of particles. The second capacity is different from the first capacity.
1. An application specific matched filter media for filtering fluids with unequal distributions of known particle types having known particle size ranges and known relative particle type concentrations, comprising:
a first surface filtration medium configured to capture a first size range of particles includes a first number of discrete layers of a first mesh material arranged in a first stack, said first mesh material exclusively configured to capture particles on its surface, said first surface filtration medium having a first predetermined absolute micron filter rating determined in combination by a pore size of said first mesh material and said first number of layers;
a second surface filtration medium configured to capture a second size range of particles downstream of said first filtration medium that includes a second number of discrete layers of a second mesh material arranged in a second stack immediately adjacent to said first stack, said second mesh material exclusively configured to capture particles on its surface, said second surface filtration medium having a second predetermined absolute micron filter rating determined in combination by a pore size of said second mesh material and said second number of layers;
wherein a ratio of said first number of layers and said second number of layers is approximately equal to a ratio of a relative concentration of a first type of particle in said first size range to be filtered by said first surface filtration medium, and a second type of particle in said second size range to be filtered by said second surface filtration medium; and
wherein said first mesh material has a pore size that is larger than said first size range, and said second mesh material has a pore size that is larger than said second size range.
2. The application specific matched filter media according to claim 1 , wherein said first and second surface filtration mediums comprise at least a portion of a filter bag.
3. The application specific matched filter media according to claim 1 , wherein n number of layers are included in said first number of layers, and n satisfies the mathematical equation AMR=0.72 n-1 ·p, where AMR is an absolute micron rating of said first number of layers, and p is said first pore size of said first mesh material.
4. The application specific matched filter media according to claim 1 wherein said pore size of said first mesh material is larger than said first predetermined absolute micron filter rating.
5. The application specific matched filter media according to claim 4 , wherein said first predetermined absolute micron filter rating has a value less than or equal to a lowest limit value of a size range of a first type of particles that said first number of layers are designed to filter.
6. The application specific matched filter media according to claim 1 , wherein said second predetermined absolute micron filter rating has a value less than or equal to a lowest limit value of a size range of a second type of particles that said second number of layers are designed to filter.
7. The application specific matched filter media according to claim 1 , wherein a pore size of said first mesh material is larger than a pore size of said second mesh material.