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Compression Ratio Calculator

Calculate your engine's compression ratio from cylinder swept volume and combustion chamber clearance volume. Model the effects of head milling, piston changes, and gasket thickness on compression — critical for engine builders, performance tuners, and automotive engineers.

Compression Ratio Calculator — Pratinjau Rasio Langsung
Compression Ratio
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Proportion Solver
A : B = C : D — Enter any 3 values
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Results
Visual ratio breakdown
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    Ratio Simplifier
    Reduce any ratio to its simplest form
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    Simplified Result
    Reduced to lowest terms
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      Ratio Scaler
      Multiply a ratio by a scale factor
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      Scaled Result
      Ratio after scaling
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        What is Compression Ratio?

        Compression ratio (CR) is the ratio of the total cylinder volume when the piston is at bottom dead center (BDC) to the remaining volume when the piston reaches top dead center (TDC). Expressed as CR:1, it quantifies how much the air-fuel mixture is compressed before ignition. A 10:1 compression ratio means the cylinder's total volume is ten times greater than its clearance volume, compressing the charge to one-tenth its original size.

        Higher compression ratios increase thermodynamic efficiency by extracting more energy from each combustion cycle, producing more power and better fuel economy. However, higher compression requires higher octane fuel to resist pre-ignition (knock). Typical gasoline engines run 9:1 to 13:1, while diesel engines — which ignite fuel through compression alone — operate at 14:1 to 25:1.

        Rumus & Persamaan Yang Digunakan

        Compression Ratio Calculator ini menggunakan 5 persamaan inti:

        1 Compression Ratio ▼
        CR = (Swept Volume + Clearance Volume) / Clearance Volume

        A cylinder with 500cc swept volume and 55cc clearance: CR = (500 + 55) / 55 = 10.09:1.

        2 Swept Volume (Single Cylinder) ▼
        Swept Volume = π/4 × Bore² × Stroke

        Bore = 86mm, Stroke = 86mm: V = 0.7854 × 86² × 86 = 499.6 cc.

        3 Clearance Volume from CR ▼
        Clearance Volume = Swept Volume / (CR - 1)

        To achieve 9.5:1 with 500cc displacement: CV = 500 / (9.5 - 1) = 58.82 cc.

        Explore all calculation options on the Kalkulator Rasio home page.

        Cara Menggunakan Kalkulator Ini

        Untuk menggunakan Kalkulator Rasio ini, ikuti 3 langkah berikut:

        1

        Masukkan Nilai

        Ketik nilai rasio yang diketahui ke dalam bidang input. Biarkan satu bidang kosong — itu adalah nilai tidak diketahui yang diselesaikan oleh Kalkulator Rasio.

        2

        Pilih Mode

        Pilih mode rasio — Pecahkan, Sederhanakan, atau Skala. Setiap mode menerapkan persamaan yang berbeda ke nilai input Anda.

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        Dapatkan Hasil

        Klik Hitung. Layar hasil menampilkan jawaban dengan batang rasio visual, diagram lingkaran, dan rincian solusi langkah-demi-langkah.

        Contoh Masalah & Solusi Langkah-demi-Langkah

        Berikut adalah 3 contoh masalah dengan solusi langkah-demi-langkah menggunakan Kalkulator Rasio ini:

        Input 1 Engine with 600cc displacement and 60cc chamber
        1 Identify swept volume (V_d = 600cc) and clearance volume (V_c = 60cc).
        2 Apply formula: CR = (V_d + V_c) / V_c = (600 + 60) / 60.
        3 Compute: 660 ÷ 60 = 11.0.
        ✓ Compression Ratio is 11.0 : 1
        Input 2 Calculate displacement for 88mm bore, 82mm stroke
        1 Convert dimensions to cm: Bore radius r = 8.8 / 2 = 4.4 cm, Stroke S = 8.2 cm.
        2 Calculate cylinder volume: π × r^2 × S = 3.14159 × 19.36 × 8.2 = 498.7cc per cylinder.
        3 Multiply by 4 cylinders for total displacement: 498.7 × 4 = 1,995cc.
        ✓ Cylinder Volume is 498.7cc (2.0L 4-Cyl Engine)
        Input 3 Find clearance volume for 12:1 CR, 450cc displacement
        1 Rearrange formula: V_c = V_d / (CR - 1).
        2 Substitute values: V_c = 450 / (12 - 1) = 450 / 11.
        3 Compute: 450 ÷ 11 = 40.91cc.
        ✓ Clearance Volume needed is 40.91cc

        Pertanyaan yang Sering Diajukan

        What compression ratio is best for pump gas (87 octane)? ▼

        For 87 octane regular gas, keep static compression at or below 9.5:1. Modern engines with direct injection and variable valve timing can safely run 10:1 to 11:1 on regular fuel due to advanced knock detection and combustion chamber design.

        How does compression ratio affect horsepower? ▼

        Each 1-point increase in compression ratio typically yields 3-4% more power, up to a practical limit. Going from 9:1 to 10:1 might add 10-15 HP on a 300 HP engine. Beyond about 13:1 on pump gas, detonation risk outweighs the diminishing power gains.

        What is the compression ratio of a diesel engine? ▼

        Diesel engines run 14:1 to 25:1 compression ratios. The extreme compression heats intake air to 500°C+, enough to auto-ignite diesel fuel without spark plugs. Modern common-rail diesels typically use 16:1 to 18:1 for an optimal balance of efficiency and emissions.

        How do I measure clearance volume? ▼

        Seal the combustion chamber with the valves closed (use light grease or modeling clay), mount the head with spark plug hole up, and fill with isopropyl alcohol or light oil from a graduated burette. The volume of fluid needed to fill the chamber equals the clearance volume.

        Does milling the head increase compression ratio? ▼

        Yes. Milling (surfacing) the cylinder head removes material from the deck surface, reducing combustion chamber volume and therefore increasing compression ratio. Removing 0.010 inches typically raises CR by 0.1 to 0.2 points, depending on original chamber size.

        What compression ratio do I need for a turbo engine? ▼

        Most turbocharged gasoline engines use 8.5:1 to 9.5:1 static compression, depending on boost pressure and intercooling. Lower compression allows higher boost without detonation. Modern factory turbo engines run up to 10.5:1 with sophisticated knock control and direct injection.

        How does bore size affect compression ratio? ▼

        Boring the cylinders increases swept volume while clearance volume stays the same, raising compression ratio. A 0.030-inch overbore on a 4.000-inch cylinder increases displacement by about 1.5%, raising CR by approximately 0.15 points.

        What is the difference between static and dynamic compression ratio? ▼

        Static CR is calculated from physical volumes (geometric). Dynamic CR accounts for when the intake valve actually closes — if it closes after BDC (common with performance cams), some charge escapes, lowering effective compression. Dynamic CR better predicts actual cylinder pressure and knock tendency.

        Can I increase compression ratio without changing pistons? ▼

        Yes. You can mill the cylinder heads to reduce chamber volume, use a thinner head gasket, or deck the block to bring pistons closer to the head surface. Each method reduces clearance volume without replacing pistons.

        What compression ratio is safe for E85 ethanol? ▼

        E85 has an effective octane rating of about 105, allowing compression ratios of 12:1 to 14:1 for naturally aspirated engines. Turbocharged E85 engines can run 10:1 to 11:1 with significant boost. E85's high octane and cooling effect provide excellent knock resistance.

        How does altitude affect compression ratio requirements? ▼

        At higher altitudes, atmospheric pressure is lower, effectively reducing the charge density entering the cylinder. This allows slightly higher compression ratios without knock. Some mountain-region vehicles run 0.5 to 1.0 CR points higher than sea-level specs safely.

        Pelajari Tentang Rasio

        Apa itu rasio?

        Rasio adalah perbandingan antara dua atau lebih jumlah yang menunjukkan ukuran relatif dari satu terhadap yang lain. Ditulis sebagai A : B, artinya 'untuk setiap A unit dari kuantitas pertama, ada B unit dari yang kedua.' Sebagai contoh, rasio 3 : 4 berarti untuk setiap 3 bagian dari A, ada 4 bagian dari B. Rasio digunakan dalam memasak, konstruksi, keuangan, sains, dan kehidupan sehari-hari.

        Bagaimana cara menyelesaikan proporsi?

        Proporsi adalah persamaan yang menyatakan bahwa dua rasio adalah sama: A : B = C : D. Untuk memecahkan nilai yang hilang, gunakan perkalian silang. Jika D tidak diketahui: D = (B × C) / A. Ini berhasil karena dalam rasio yang sama, hasil kali silang selalu sama: A × D = B × C. Pemecah Proporsi kami melakukan ini secara otomatis — cukup masukkan 3 nilai apa saja dan itu akan menemukan nilai ke-4.

        Bagaimana cara menyederhanakan rasio?

        Untuk menyederhanakan rasio, temukan Faktor Persekutuan Terbesar (FPB) dari kedua angka dan bagi masing-masing angka dengan FPB tersebut. Sebagai contoh, 24 : 36 — FPB dari 24 dan 36 adalah 12. Jadi 24 ÷ 12 = 2 dan 36 ÷ 12 = 3, memberikan rasio yang disederhanakan 2 : 3. Penyederhana kami secara otomatis menemukan FPB dan memperkecil rasio Anda ke bentuk paling sederhana.

        Apa itu penskalaan rasio dan kapan itu berguna?

        Menskalakan rasio berarti mengalikan kedua bagian dengan faktor yang sama untuk membuat rasio yang setara, lebih besar (atau lebih kecil). Misalnya, menskalakan 2 : 5 dengan faktor 3 menghasilkan 6 : 15. Ini sangat berguna untuk resep (meningkatkan resep menjadi tiga kali lipat), konstruksi (menskalakan cetak biru), mencampur larutan, atau skenario apa pun di mana Anda perlu mempertahankan proporsi yang sama pada besaran yang berbeda.

        Apa perbedaan antara rasio dan pecahan?

        Rasio A : B membandingkan dua jumlah satu sama lain (bagian-ke-bagian), sementara pecahan A/B biasanya mewakili hubungan bagian-ke-keseluruhan. Namun, rasio apa pun dapat dinyatakan sebagai pecahan: 3 : 4 setara dengan 3/4 = 0,75. Perbedaan utamanya adalah konteks — rasio membandingkan kuantitas secara berdampingan, sementara pecahan mewakili porsi dari total.